Showing posts with label IN. Show all posts
Showing posts with label IN. Show all posts

Friday, September 1, 2017

BIOCHEMISTS SOLVE ADDRESS PROBLEM IN CELLS THAT LEADS TO LETHAL KIDNEY DISEASE




Research by UCLA biochemists may lead to a new treatment -- or even a cure -- for PH1, a rare and potentially deadly genetic kidney disease that afflicts children. Their findings also may provide important insights into treatments for Parkinson's disease, Alzheimer's disease and other degenerative diseases.
Led by Carla Koehler, a professor of chemistry and biochemistry in the UCLA College, the researchers identified a compound called dequalinium chloride, or DECA, that can prevent a metabolic enzyme from going to the wrong location within a cell. Ensuring that the enzyme -- called alanine: glyoxylate aminotransferase, or AGT -- goes to the proper "address" in the cell prevents PH1.
The findings were published online in the Proceedings of the National Academy of Sciences and will appear later in the journal's print edition.
In humans, AGT is supposed to go to an organelle inside the cell called the peroxisome, but for people with a particular genetic mutation, the enzyme mistakenly goes instead to the mitochondria -- tiny power generators in cells that burn food and produce most of the cells' energy -- which causes PH1.
Koehler's team demonstrated that adding small amounts of DECA, which is FDA-approved, to cells in a Petri dish prevents AGT from going to the mitochondria and sends it to its proper destination, the peroxisome.
"In many mutations that cause diseases, the enzyme doesn't work," Koehler said. "In PH1 the enzyme does work, but it goes to the wrong part of the cell. We wanted to use DECA in a cell model to block AGT from going to the wrong address and send it back to the right address. DECA blocks the mitochondria 'mailbox' and takes it to the peroxisome address instead."
How often did it work?
"All the time," said Koehler, a member of UCLA's Jonsson Comprehensive Cancer Center, Molecular Biology Institute and Brain Research Institute.
For people with the mutation, the correct peroxisome address is present in AGT, but it is ignored because it is accompanied by the address of the mitochondria, which the cell reads first, Koehler said.
Koehler, who also is a member of the scientific and medical advisory board of the United Mitochondrial Disease Foundation, hopes to find out whether a similar "correct address" strategy can slow cancer down. Her laboratory has identified approximately 100 other small molecules, which she calls MitoBloCKs, that she and her colleagues are testing for their ability to combat Parkinson's, Alzheimer's and other diseases.
PH1 -- short for primary hyperoxaluria 1 -- starts at birth and is usually fatal for patients who do not receive both kidney and liver transplants. Approximately half of those with the disease have kidney failure by age 15. Koehler has presented her findings to the Oxalosis and Hyperoxaluria Foundation, which provides support for PH1 patients and their families.
Scientists' ability to diagnose rare diseases has improved in recent years because technological advances in genomics have made it easier to identify more genetic mutations, Koehler said.
According to Koehler, to treat diseases, scientists must first understand how proteins like AGT move inside the cell. Her research, which encompasses biochemistry, genetics and cell biology, studies how mitochondria are assembled and function, how proteins enter the mitochondria and reach the right location inside cells, and how mitochondria communicate with the rest of the cell.
Her laboratory uses model systems that enable them to study the biochemistry in a way that is not possible with humans. Much of the work is conducted in yeast.
"It's exciting that our studies in baker's yeast, a typical laboratory model, might be able to help kids with a complicated disease," Koehler said.


Tuesday, August 29, 2017

HOMOEOPATHIC REMEDIES FOR PUS CELLS IN URINE


Presence of pus cells in urine is a definite indication of some type of infection. Pus is a whitish or yellowish or slightly green substance which is thick like glue. Pus in urine signifies that the body is fighting an infection in the lower or upper urinary tract.  Pus contains dead skin cells, bacteria and white blood cells. The medical term for the pus in urine condition is known as Pyuria and it is a common symptom for various medical conditions. The most common reason for Pyuria is the existence of urinary tract infection.  Women are more prone to urinary tract infections. The condition can be quite severe if it affects a man.  The urinary tract infections are caused by bacteria entering the urinary tract. The tract consists of the kidneys, urinary bladder, ureters and urethra. The infection can occur at any part of the tract and commonly infections occur in the lower portions such as the urethra and urinary bladder.
Causes-The two most common causes for the presence of pus cells in urine are
·        Urinary tract infection or UTI
·        Sexually transmitted diseasesSome of the other causes for pus seen in urine are
  • Viral infections
  • Anaerobic bacterial infection
  • Fungal infections
  • Chemical poisoning
  • Kidney stones
  • Fastidious bacteria
  • Tuberculosis of the urinary tract
  • Infection in prostate glands in men
  • Cancer of the urinary organs or genital organs
  • Sometimes pus cells in urine also result from old age and pregnancy. Certain medications also cause the condition of pus in urine.

Symptoms-- Sometimes there won’t be any symptoms of urinary tract infection or the presence of pus in the urine. When the symptoms occur they are as follows
·        Foul smelling urine
·        Cloudy urine
·        Fever
·        Frequent urination
·        Pain or discomfort while urinating
·        Vomiting
·        Abdominal cramps
If the pus in urine is caused by UTI the pain may be felt deep inside the bladder or at the tip of the urethra through which the pus cells exits the body.  If the pus is formed by STD’s, there will be fever, weakness and there will be an overall feeling of being ill.
HOMOEOPATHIC REMEDIES
CANTHARIS VESICATORIA 30-Cantharis Vesicatoria is one of the top Homeopathic medicines for pus cells in urine. Burning during urination is a sure sign that Cantharis Vesicatoria is the ideal choice among Homeopathic medicines for pus cells in urine. The burning may continue after urination. In some cases, burning in urethra before urination may also be felt. This is attended with a constant desire to urinate. Tenesmus of bladder is marked.  Urine passing drop by drop is also a sure indication of  Cantharis Vesicatoria .

APIS MELLIFICA 30-Apis mellifica is prescribed when  burning, scalding sensation in urethra while passing the last drops of urine is present.  Urine flow is slow. Stinging pain in urethra while passing urine is another key symptom guiding use of Apis Mellifica . Urgency to pass urine is also marked.

BAROSMA CRENATA Q- Barosma crenata has marked action on genito urinary system. Urine contains more pus. Irritable bladder, with vesical catarrh.

BERBERIS VULGARIS Q-Berberis Vulgaris is prescribed when  burning in urethra  is present even when not urinating. Along with this, pain in kidney region and thighs may also be present. Constant urge to urinate, with scanty urine, is another indication that Homeopathic medicine . There is the sensation of some urine remaining in the bladder after urinating. Cramping or aching pain in the bladder while urinating is another symptom showing Berberis Vulgaris .

EQUISETUM Q—Equisetum is a near specific for UTI. There is frequent and intolerable urge to urinate.Dull pain in the bladder is constantly present.There is a shrap cutting burning sensation in the urethra when urinating.Much pus and albumin in urine.

COPAIVA OFF Q- Copaiva is an effective remedy for pus in urine. Urine has a bad smell. Discharge of a greenish , turbid colour with a pungent odour. Painful urination, urine passes by drop by drop.

CHIMAPHILA  UMBELLATA Q-In Chimaphila umbellate urine is turbid , offensive , containing ropy or bloody mucus and depositing a copious sediment. Burning and scalding during urination and straining afterwards .

SARASAPARILLA 30-Sarasaparilla is indicated when  the person experiences severe pain at the conclusion of urination.  Pain in urethra may extend to abdomen. Painful distension and tenderness in bladder may also be present. Urine stream is also feeble and thin. Sarsaparilla Officinalis is also the most suitable among Homeopathic medicines for pus cells in urine among children. The child screams from pain before and while passing urine in such cases.

CLEMATIS ERECTA 30--Clemetis Erecta is very effective for UTI in patients who have suffered from Sexual transmitted disesaes . It is indicated when the symptoms are – Frequent scanty urine with burning at the orifice of urethra. The patient has an unusual desire to pass urine , urine is passed drop by drop , dribbling of urine even after passing of urine.Urine is mixed with pus.

MERC COR. 30--Merc Cor is an  effective remedy  for pus in urine due to UTI.  This medicine can be thought of in cases where the patient  is unable to pass urine or has to put in a lot of effort  for the same. The urine is very little and most often the patient passes dark flesh like pieces of mucus in the urine. The urine is very hot and passes drop by drop and with great pain. Another feature of a Merc cor patient is that he/she experiences a lot  of sweating  immediately after passing urine. This usually happens because the patient has to strain a lot to pass urine.    This medicine can also be expected to give good results in recurrent UTIs in advanced stages of pregnancy.

SOLIDAGO VIRGA Q-Solidago is another effective drug for pus in urine.  Albumin , blood and pus in  urine. Pain in kidney extend to abdomen and bladder.

NITRIC ACID 30-Nitric Acid is an excellent remedy   for pus cells in urine where the urine passed is very offensive. The urine is also scanty and dark in colour. It may also be turbid or cloudy in some cases. Burning and stinging sensation on passing urine may be present.

PAREIRA BRAVA 3-Pareira brava is very effective for UTI. The leading symptoms are—constant urging to urinate , great straining . Pain down thighs during efforts to urinate. Urine is black, bloody with thick pus. Urine is passed with great difficulty. In worst cases urine is passed only by going on hand and knees position.

UVA URSI 3X-Uva Ursi is another remedy   for pus cells where blood is passed along with pus cells in urine. Urine may also contain tenacious mucus. There is frequent urging for urination. Irritation in the bladder is observed. Cutting pain in the urethra may also be present along with the above features.

COLI BACILLINUM 30-- Coli Bacillinum is a near specific medicine for treating e-coli infection. It helps in treating the recurrence of E coli Infection. There is pain and burning while urination.







Sunday, August 27, 2017

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Saturday, August 26, 2017

GENE RESPONSIBLE FOR TRAITS INVOLVED IN DIABETES DISCOVERED




A collaborative research team led by Medical College of Wisconsin (MCW) scientists has identified a new gene associated with fasting glucose and insulin levels in rats, mice and in humans. The findings are published in the September issue of Genetics.

Leah Solberg Woods, Ph.D., associate professor of pediatrics at MCW and a researcher in the Children's Hospital of Wisconsin Research Institute, led the study and is the corresponding author of the paper.
The authors of the paper identified a gene called Tpcn2 in which a variant was associated with fasting glucose levels in a rat model. Studies in Tpcn2 knockout mice also demonstrated the difference in fasting glucose levels as well as insulin response between the knockout animals and regular mice. Finally, Dr. Woods' team identified variants within Tpcn2 associated with fasting insulin in humans. Tpcn2 is a lysosomal calcium channel that likely plays a role in insulin signaling. Glucose tolerance, insulin resistance and beta cell dysfunction are key underlying causes of type 2 diabetes.
"Genome-wide association studies in humans have identified 60+ genes linked to type 2 diabetes; however, these genes explain only a small portion of heritability in diabetes studies. As we continue to identify genes and variants of interest, we will evaluate them in multiple models to understand the mechanism of disease," said Dr. Solberg Woods.
According to the American Diabetes Association, 29 million Americans have diabetes -- more than nine percent of the total population. It is the 7th leading cause of death, and experts estimate diabetes is an underreported cause of death because of the comorbidities and complications associated with the disease.



Friday, August 25, 2017

Limited Modern Drugs Determine Neuropathy In S African Kids


Today's post from aidsmap.com (see link below) highlights a problem that just doesn't seem to go away and is based on the lack of financial resources. The fact is that many HIV+ children in Africa are still being given older HIV drugs to control the virus; the result being consistently high numbers of kids suffering terribly from neuropathy brought about from the drugs themselves. The older drugs are cheaper; the pharmaceutical companies refuse to lower the prices of modern drugs sufficiently and the incidence of neuropathy therefore remains stable but never reduces. It's scandalous in today's world that children have to suffer from nerve damage symptoms purely because of arguments over the costs of drugs suppressing the HIV virus they carry. Drug companies must bear a large percentage of the blame!

Peripheral neuropathy in South African children highlights limited ARV choices
Carole Leach-Lemens Published: 23 July 2012

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Look out for peripheral nerve damage; "talk to the child", advises researcher
Reference
Further information

Look out for peripheral nerve damage; "talk to the child", advises researcher

Peripheral neuropathy was identified in one-in-four children on HIV treatment in rural Mopani District, one of the poorest and least well-resourced areas in South Africa, Dr Remco Peters reported today at the 19th International AIDS Conference (AIDS 2012) in Washington, DC.

The findings underline the importance of improving paediatric antiretroviral formulations suitable for use in sub-Saharan Africa.

In this cross-sectional study of 182 children, aged from 5 to 15, 86% were receiving an antiretroviral (ART) regimen that included d4T (stavudine, Zerit).

Among HIV-infected adults, peripheral neuropathy is common and well recognised. It affects between 30 and 60% of people with HIV and may be related to HIV infection and/or the drugs used to treat HIV. Few studies have been able to distinguish between peripheral neuropathy as a result of HIV itself and neuropathy as a side-effect of ART. Other contributing factors include vitamin and mineral deficiencies and autoimmune effects.

Peripheral nerves are responsible for sensation-pain, pressure, heat sensation (sensory nerves) movement (motor nerves) and automatic bodily functions such as breathing, heartbeat, sweating and emptying of the stomach (autonomic nerves). Damage to these nerves is called neuropathy.

In most people with HIV, nerve damage usually starts in the hands or feet (hence the term 'peripheral' neuropathy), affecting both sides of the body and involving multiple nerves. It can range from mild numbness or pain to debilitating pain. Other symptoms include increased sensitivity to touch, diminished reflexes and weakness. It can severely affect quality of life.

Stavudine (d4T) and didanosine (ddI, Videx, Videx EC) are two of the anti-HIV drugs known as dideoxynucleoside reverse transcriptase inhibitors or ‘d-drugs’, which can cause peripheral neuropathy.

The World Health Organization (WHO), concerned about the side effects of d4T (principally abnormal body fat loss, or lipoatrophy, and peripheral neuropathy in adults) has urged national treatment programmes – wherever affordable – to drop d4T and move to tenofovir- (Viread) or AZT-based treatment regimens in adults.

The findings of the study presented today are likely to reinforce calls for access to paediatric formulations of abacavir (Ziagen) in settings where d4T is the only current alternative. Abacavir is already available for paediatric use in southern Africa, and is recommended by the World Health Organization as a component of first-line paediatric treatment, but remains substantially more expensive than stavudine.

A powder version of tenofovir suitable for use in children aged two to five years is licensed for use in the United States, but safety studies have not been carried out in children in sub-Saharan Africa to evaluate any potential risk of kidney toxicity or decreased bone mineral density. The South African HIV Clinicians Society has suggested that tenofovir should be used with caution in young children until further safety data are available.

In June of this year, WHO issued guidance on the best use of tenofovir in adolescents and children over two years of age The recommended dose is 8 mg/kg body weight (up to a maximum of 300 mg), administered once daily using either an oral powder formulation or low-strength tablets. Caution is needed nonetheless since tenofovir in combination with ddI increases the risk of ddI-related toxicities, including peripheral neuropathy.

Peripheral neuropathy is diagnosed based on symptoms and is more difficult to diagnose in children. Few tools exist for clinical screening for peripheral neuropathy in children. Children may find it difficult to describe their symptoms.

Few data exist on the extent, symptoms or causes of peripheral neuropathy among HIV-positive children in sub-Saharan Africa, where d4T is in common use. Among the estimated 2.3 million HIV-positive children, between 2008 and 2009, approximately 90% were on an ART regimen containing d4T.

The researchers chose to use neuropathy symptom score (NSS) and neuropathy disability score (NDS) to screen for peripheral neuropathy in this cohort of children.

NSS, a subjective assessment tool, includes a series of questions about location and severity of pain and pain relief (for example, does sitting help?) in the feet and legs. Each response is given a score of 0, 1 or 2. Total scores of 3, 5 and 7 indicate mild, moderate and severe neuropathy, respectively.

The NDS, an objective assessment tool, looks at ankle reflex (0, 1 or 2), vibration perception (0 or 1), pin-prick perception (0 or 1) and temperature perception (0 or 1) and scored. A reflex hammer, cotton swabs, a toothpick and cold water are all that is needed to carry out the test.

An NSS score equal to or above 3 or an NDS score equal to or above 2 was used as a definitive diagnosis of peripheral neuropathy. Dr Remco noted these were conservative cut-off points.

In total, 96% (174/182) of this cohort of children, all collecting ART from nurse-managed treatment programmes, completed screening for peripheral neuropathy. This included a questionnaire, physical exam, NSS and NDS scores.

The median age was 9.2 years with median time on ART of two years (2 months to 6.4 years).

Forty-nine children (27%) reported symptoms related to neuropathy, while 25 children (14%) met the NDS criteria. Overall, 43 children (25%) were identified as having peripheral neuropathy. Examples of children's descriptions of symptoms included:
“My feet are burning, I must take off my shoes in class otherwise I can’t concentrate.”
“I can’t sleep at night because of the tingling in my feet; I’m tired during the day.”

Dr Remco noted that, while the cause of peripheral neuropathy was not addressed in depth, being on ART for a longer period of time (p=0.06) was a major contributor.

Dr Remco concluded that, in this region, peripheral neuropathy among children is common and often goes undiagnosed. Simple and easy to use, the NSS and NDS are valuable tools for assessing peripheral neuropathy in a resource-poor and skills-limited setting.

The most important lesson learned is “quite simply, to talk to the child”, he added. In these settings, “We [healthcare workers] do not talk to the children, we will talk to the mother or caregiver about the child but never directly to the child.” 


Reference

van Ramshorst R et al. Clinical screening shows high prevalence of peripheral neuropathy in children taking antiretroviral therapy in rural South Africa. 19th International Conference on AIDS, abstract MOAB0205, Washington, DC, July 2012.

http://www.aidsmap.com/Peripheral-neuropathy-in-South-African-children-highlights-limited-ARV-choices/page/2448363/

Thursday, August 24, 2017

Dangers Of Neuropathy In Rwanda


Today's post from allafrica.com (see link below) shows that developed countries don't have a monopoly on neuropathic problems and especially those caused by diabetes. Neuropathy is a huge problem in many parts of Africa too, especially amongst the HIV population. However, diabetes too is not exclusive to the rich over-eaters in the developed world and is an increasing problem in Africa. This article looks at the situation in Rwanda and gives some good advice and information to potential patients especially regarding the possibility of autonomic neuropathy affecting the involuntary functions of the body.


Rwanda: Know the Dangers of Diabetic Neuropathy
By Dr Rachna Pande, 13 April 2014 
 
Diabetes is a condition of elevation of blood sugar levels above normal. Over the years diabetes is known to cause damage to the target organs of the body. These are eyes, kidneys, brain, peripheral blood vessels and nervous system. Complications appear early and are more if not controlled.

Affliction of the peripheral nervous system is well known, which is manifested by tingling, numbness and or burning sensation in hands and feet. But involvement of autonomic nervous system (system responsible for involuntary functions like heart beat, intestinal movements, among others) is more subtle and less known.

This may be associated with other diabetic complications or can occur independently. As the intestinal motility is affected, a person may develop chronic diarrhea. Stasis of food in intestines due to constipation leads to overgrowth of bacteria, which results into recurrent infections and diarrhea with or without abdominal pain.

Absorption of food as well as that of anti-diabetic medication is impaired due to reduced intestinal motility. As a result, the body gets deprived of necessary nutrients over a period of time. Blood glucose levels are deranged leading to sudden low or high levels.

A person starts suffering from low blood pressure, because of affliction of autonomic nervous system. The blood pressure falls and becomes very low as one stands up from sitting or lying down position. Because of this, one tends to feel giddy while standing or walking. Heart rate also tends to be disturbed because of disturbance of autonomic nervous system. This is because heart fails to adjust its rate according to the stress. This also contributes to fainting. Urinary system is also affected. There is difficult to pass urine leading to retention in extreme cases, as the nervous control over bladder is damaged.

Stasis of urine even in small quantities becomes a source for germs to grow causing recurrent urinary tract infections. Infection is further aggravated due to high blood glucose levels. Due to infection of the urinary tract, one suffers from increased frequency of urination. Impotence is the most troublesome problem in autonomic neuropathy. Diabetic neuropathy is the most common organic cause for erectile dysfunction in men.

Alcohol intake and smoking further aggravate these complications caused due to diabetic autonomic neuropathy. Many times, diabetes is diagnosed when a person develops any of these complications. A sufferer may develop one or more features of autonomic neuropathy.

A high index of suspicion is needed to diagnose diabetes in face of autonomic neuropathy.

Unfortunately once autonomic nervous system is damaged there is no medicine to revert it. Drugs such as gabba pentin, B Complex, among others, are used but only provide transient relief. Avoiding standing for long time and sitting with legs spread in front can reduce postural hypotension. Use of elastic stockings or crepe bandage while standing or walking also helps in minimising postural hypotension.

To prevent such troublesome complications it is imperative that diabetes should be diagnosed at the earliest. Screening all middle aged persons for diabetes is a good strategy. A good control of diabetes by means of diet restriction and anti diabetic drugs can delay or minimise the development of complications including neuropathy. Avoidance of alcohol and smoking is helpful in reducing the suffering.

Dr Rachna Pande is a specialist in internal medicine at

Ruhengeri Hospital

http://allafrica.com/stories/201404140027.html

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Wednesday, August 23, 2017

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Monday, August 21, 2017

Do You Have Neuropathy In Your Feet


Because neuropathy is generally not well known as a disease, most people really aren't sure what's happening to them in the beginning. Today's useful, basic article from articlesnatch.com (see link below) helps explain whether what you're feeling is neuropathy or not. Even after reading this, you should get confirmation from a doctor, or better still a neurologist. There are many forms of neuropathy and also many causes. It's important to get an accurate diagnosis on both counts. Finally, the remedies mentioned here are just a few of the many possibilities available and again, doctor's advice is very important.

Do I Have Neuropathy In My Feet?
By: Brandt R Gibson DPM - a foot and ankle specialist with special interest in neuropathy and the new treatments.

Often, I see patients in our office concerned about strange feelings to their feet. Many are found to have neuropathy (or peripheral neuropathy). Neuropathy is the poor functioning of nerves and can lead to significant abnormalities in the feet and legs. Do you have neuropathy? Some simple questions are:

- Are your feet numb or do your feet feel dead? - When you injure your feet, do you feel pain? - When walking on your feet, do you have difficulty feeling the feet or do you trip regularly because you can't feel your feet? - Can you feel heat or cold in my feet or hands? - Do your feet tingle? - Do you have regular "pins and needles" sensation to your feet? - Do you have burning, stabbing, shooting or electrical shock pains in your feet? - Are your feet overly sensitive to touch, including pain from bed sheets or other items that shouldn't hurt? - Do you feel like there is cotton, leather, or sock on your foot, even when there isn't? - Do your feet hurt significantly at night and keep you awake?

An abnormal answer to any of these questions usually indicates neuropathy. Neuropathy can be a complex problem with multiple possible causes including diabetes, AIDS or HIV, toxins and metallic poisons, certain chemicals, alcoholism, vitamin deficiencies or nutritional imbalances, it may also occur from systemic diseases (kidney failure, liver disease, rheumatoid arthritis, abnormal blood proteins, cancer especially with chemotherapy, leukemia and shingles). Entrapment may also lead to the symptoms of neuropathy. Diabetes is the most common, however in the United States.

There are multiple theories on the cause of neuropathy, but the most common theories included blood flow interruption to the nerves or nerve fiber damage (or a combination of these). Therefore, for many years it was thought nothing could be done to improve neuropathy. You may have been told this about your discomfort. That is no longer the case. Many new treatments are coming that may help neuropathy.

The most common natural substances to improve neuropathy are B complex vitamins: B1 (thiamine), B6, B12 and folic acid. Many of the over-the-counter vitamins that contain these products, however, are in a form that are not as easily absorbed or utilized by the body. In our research, we have found two products that provide the vitamins in a form that are beneficial and easily utilized by the body.

1. Metanx - A prescription item that contains L-methoylfolate, Pyridoxal 5'-phosphate and Methylcobalamin (all natural forms of folic acid, B6 and B12 respectively). These products work together to produce increased blood flow to the nerves and assist in nerve repair. Many people are encountering improved feeling in their feet and decrease of their symptoms. It usually will require treatment for at least 4-6 months to insure it has sufficient time to help repair nerves.

2. Neuremedy - A over-the-counter item that contains a form of B1 (benfotiamine) that is absorbed and modified by the body to the active form of B1 (thiamine). Most forms of this vitamin fail to be absorbed in the body, but the benfotiamine of Neuremedy is easily absorbed and utilized by the body. It has been shown to nourish dysfunctional nerves and allow them to conduct impulses more normally. It has been utilized since the early 1960s in Europe and Asia on thousands of patients.

So, neuropathy although a common problem doesn't need to continue to cause problems in your life. It can be treated often very effectively through the use of one of these two options. Many other options are also in the works.

Copyright (c) 2009 Mountain West Foot & Ankle Institute

http://www.articlesnatch.com/Article/Do-I-Have-Neuropathy-In-My-Feet-/774206

New Drugs To Be Targeted At Pain Receptors Deep In The Nerve Cell


Today's post from sciencedaily.com (see link below) may at first sight seem a little difficult to understand but basically, when the body experiences pain, there are pain receptors on the surface of nerve cells that identify it and transmit the information further and let you feel that pain. If the pain is extreme, sometimes these pain receptors retreat to the nucleus of the cell, as if it's 'safer' there. Pain relieving drugs are designed to block the pain signals in the receptors at the surface of the cell but if the receptors have migrated to the nucleus then the drugs don't have any effect. This knowledge enables researchers to design pain-relieving drugs that can penetrate the nerve cell to the nucleus and thus block the signals from reaching the receptors. They can then 'safely' return to the surface of the cell. At least that's the theory and although it may seem like double-dutch to most of us, sometimes it's interesting to know in which direction the scientists are going.
 


Location may be key to effectively controlling pain
Date:February 3, 2016 Source:McGill University
 
In real estate, location is key. It now seems the same concept holds true when it comes to stopping pain. New research published in Nature Communications indicates that the location of receptors that transmit pain signals is important in how big or small a pain signal will be -- and therefore how effectively drugs can block those signals.

Blocking pain receptors in the nucleus of spinal nerve cells could more effectively control pain than interfering with the same type of receptors located on cell surfaces. The scientists also found that when spinal nerve cells encounter a painful stimulus, some of the receptors will migrate from the cell surface into the nucleus.

A team of researchers led by McGill University's Director of Anesthesia Research Terence Coderre and Karen O'Malley at Washington University in St. Louis, found that rats treated with investigational drugs to block the activity of the receptors in the nucleus soon began behaving in ways that led them to believe the animals had gotten relief from neuropathic pain. According to Prof. Coderre, "drugs that penetrate the spinal nerve cells to block receptors at the nucleus were effective at relieving pain, while those that don't penetrate the nerve cells were not. Rats with nerve injuries had less spontaneous pain and less pain hypersensitivity after blocking receptors at the nucleus, while the pain sensitivity of normal rats was not affected."

Location is key
Scientists have been studying glutamate receptors in the pain pathway for decades. What's new, Coderre explained, is that these most recent experiments -- in cell cultures and rats -- demonstrate that the location of the receptor in the cell has a major effect on the cell's ability to transmit pain signals.

The researchers focused mainly on nerve cells in the spinal cord, an important area for transmitting pain signals coming from all parts of the body.

"We'll now focus our research at determining what events cause the glutamate receptors to migrate to the nucleus, and how to produce drugs that more specifically block glutamate receptors only at the nucleus," added Coderre.

Story Source:

The above post is reprinted from materials provided by McGill University. The original item was written by Cynthia Lee. Note: Materials may be edited for content and length.

Journal Reference:
Kathleen Vincent, Virginia M. Cornea, Yuh-Jiin I. Jong, André Laferrière, Naresh Kumar, Aiste Mickeviciute, Jollee S. T. Fung, Pouya Bandegi, Alfredo Ribeiro-da-Silva, Karen L. O’Malley, Terence J. Coderre. Intracellular mGluR5 plays a critical role in neuropathic pain. Nature Communications, 2016; 7: 10604 DOI: 10.1038/NCOMMS10604


http://www.sciencedaily.com/releases/2016/02/160203111018.htm

Sunday, August 20, 2017

SENSE OF PURPOSE IN LIFE LINKED TO LOWER MORTALITY AND CARDIOVASCULAR RISK


People who have a higher sense of purpose in life are at lower risk of death and cardiovascular disease, reports a pooled data analysis inPsychosomatic Medicine: Journal of Biobehavioral Medicine, the official journal of the American Psychosomatic Society
"Possessing a high sense of purpose in life is associated with a reduced risk for mortality and cardiovascular events," according to the study by Drs. Randy Cohen and Alan Rozanski and colleagues at Mt. Sinai St. Luke's-Roosevelt Hospital, New York. While the mechanisms behind the association remain unclear, the findings suggest that approaches to strengthening a sense of purpose might lead to improved health outcomes.
How Does Purpose in Life Affect Health and Mortality Risks?
Using a technique called meta-analysis, the researchers pooled data from previous studies evaluating the relationship between purpose in life and the risk of death or cardiovascular disease. The analysis included data on more than 136,000 participants from ten studies -- mainly from the United States or Japan. The US studies evaluated a sense of purpose or meaning in life, or "usefulness to others." The Japanese studies assessed the concept of ikigai, translated as "a life worth living."
The study participants, average age 67 years, were followed up for an average of seven years. During this time, more than 14,500 participants died from any cause while more than 4,000 suffered cardiovascular events (heart attack, stroke, etc).
The analysis showed a lower risk of death for participants with a high sense of purpose in life. After adjusting for other factors, mortality was about one-fifth lower for participants reporting a strong sense of purpose, or ikigai.
A high sense of purpose in life was also related to a lower risk of cardiovascular events. Both associations remained significant on analysis of various subgroups, including country, how purpose in life was measured, and whether the studies included participants with pre-existing cardiovascular disease..
There is a well-documented link between "negative psychosocial risk factors" and adverse health outcomes, including heart attack, stroke, and overall mortality. "Conversely, more recent study provides evidence that positive psychosocial factors can promote healthy physiological functioning and greater longevity," according to the authors.
The new analysis assembles high-quality data from studies assessing the relationship between purpose life and various measures of health and adverse clinical outcomes. The researchers write, "Together, these findings indicate a robust relationship between purpose in life and mortality and/or adverse cardiovascular outcomes."
While further studies are needed to determine how purpose in life might promote health and deter disease, preliminary data suggest a few basic mechanisms. The association might be explained physiologically, such as by buffering of bodily responses to stress; or behaviorally, such as by a healthier lifestyle.
"Of note, having a strong sense of life purpose has long been postulated to be an important dimension of life, providing people with a sense of vitality motivation and resilience," Dr. Rozanski comments. "Nevertheless, the medical implications of living with a high or low sense of life purpose have only recently caught the attention of investigators. The current findings are important because they may open up new potential interventions for helping people to promote their health and sense of well-being."


Friday, August 18, 2017

LIVING NEAR MAJOR ROADS MAY INCREASE SUDDEN CARDIAC DEATH IN WOMEN



Living close to a major road may increase women's risk of dying from sudden cardiac death, according to new research in the American Heart Association journal Circulation.

 
"It's important for healthcare providers to recognize that environmental exposures may be under-appreciated risk factors for diseases such as sudden cardiac death and fatal coronary heart disease," said Jaime E. Hart, Sc.D., study lead author and an instructor in medicine at Brigham and Women's Hospital and Harvard Medical School in Boston, Massachusetts. "On a population level, living near a major roadway was as important a risk factor as smoking, diet or obesity."
While researchers previously found a modest increase in coronary heart disease risk among people who live near major roadways, the new study may be the first to examine the impact of roadway proximity to the risk of sudden cardiac death. Researchers note that roadway proximity could be a marker for exposure to air pollution.
The researchers studied data from 107,130 women (predominately white, average age 60) who were part of the Nurses' Health Study from 1986-2012. Calculating residential distance to roadways and after adjusting for a large number of other factors including age, race, calendar time, cigarette smoking, physical activity, and diet, researchers found:
In 523 cases of sudden cardiac death, living within 50 meters (164 feet) of a major road increased the risk of sudden cardiac death by 38 percent, compared to living at least 500 meters (.3 miles) away.
Each 100 meters (328 feet) closer to roadways was associated with a 6 percent increased risk for sudden cardiac death.
In the 1,159 cases of fatal coronary heart disease, risk increased 24 percent.
The public's exposure to major roadways is comparable to major sudden cardiac death risk factors, researchers said.
Researchers weren't able to measure all possible risk factors associated with living near a major road. They also said more research is needed among men and among women of different ages, races and income levels because nearly all participants were middle-age to elderly, white and of middle- to upper-socioeconomic class.
The Environmental Protection Agency estimated that 35 million people in the United States lived within 300 meters (984 feet) of a major road in 2009, and a growing number lived in close proximity to major roads worldwide.
"Regardless of where you live, adopting heart-healthy habits, such as maintaining a healthy weight, being physically active, eating nutritious foods, quitting smoking, and managing stress, can help decrease your risk of heart and blood vessel disease," said Hart, who is also an instructor at the Harvard School of Public Health.
"Our next step is to try to determine what specific exposures, such as air pollution, are driving the association between heart disease and major roadway proximity."