Showing posts with label Away!. Show all posts
Showing posts with label Away!. Show all posts

Monday, August 14, 2017

Pain pain go away!


This is a case story and article from the hepatitis section of the POZ.com site (see link below) which refers specifically to neuropathy as being one of the chief causes of chronic pain these days for HIV patients.

Pain, Pain, Go Away by Tim Murphy June 23, 2010

It’s a challenge for some people with HIV. But there’s help for conquering—or at least managing—chronic pain.

Betsy Luz Correa, 43 and diagnosed with HIV in 1993, is no slacker. The Weathersfield, Connecticut, resident has been a staffer at local Latino and LGBT agencies (“I’m not LGBT, but I’m an ally,” she says), works on social-justice causes and once loved to dance salsa, bachata and cumbia. Recently, she chatted with POZ by phone while a friend pedicured her. “She’s painting my nails bright red,” Correa reported. “I call them puta red!”

But Correa won’t be wearing her sexy open-toed heels to show off those hot 
toenails. Chronic leg pain during the past 15 years rules out such footwear. The distress has also forced her to take a leave from work and devote much of her time to finding the source of the pain, or simply staying comfortable. “It started in my legs,” she says. “If I tried to squat, they’d buckle. I needed somebody to help me get off the floor, out of a chair or in or out of bed.” Then the pain spread to her abdomen. Now, it resides in her back and below her rib cage.

Correa says she’s been to every kind of specialist and had every kind of test to determine the pain’s source, HIV-related or not. “EMGs, CT scans, MRIs, ultrasounds, you name it,” she says. “It’s all come out normal.” (Her HIV has always been well controlled, she says, adding that she recently tried a break from treatment to see if her HIV meds were causing the pain; apparently, they weren’t.) While Correa continues her efforts to pinpoint the pain, she tries to alleviate it with everything from meditation and massage to qigong (Chinese movement and breathing) and light stretching.

About 70 million Americans live with chronic pain. Now that HIV meds can conquer many infections and disorders that once caused physical misery, fewer HIV-positive people live in pain. But the rate is still high. There are no recent studies tracking HIV pain rates, but Mark Cichocki, RN, at the University of Michigan’s HIV/AIDS Treatment Program and the author of Living With HIV: A Patient’s Guide, says that 3 in 10 of the program’s roughly 600 patients live with pain. The single greatest source, he says, is HIV-related neuropathy—a nerve damage, usually in hands and feet, that causes tingling, numbness and burning pain and is related to HIV itself, certain HIV meds or both. Other common causes of ongoing discomfort include nerve pain from herpes or shingles; abdominal pain from pancreatitis, liver disease or acid reflux; migraines; and muscle or bone pain (research suggests that more people with HIV experience bone loss than do their negative peers).

“The big thing,” Cichocki says, “is to get to the root of the pain.” Although it might require special doctors and tests, finding and treating the problem often tames the pain. But if a diagnosis is not fast in coming, don’t stop there. “Pain should not be ignored or accepted,” says David Simpson, MD, who heads the Neuro-AIDS program at the Mount Sinai School of Medicine in New York City. “If your doctor won’t deal with it, find someone who will.”

Long-term pain is harmful. It weakens everything from your organs and immune system to your overall mood and energy level—even your exercise and eating habits. “You just don’t have to live with it,” says Diane Meier, MD, who heads Mount Sinai’s Center to Advance Palliative Care. (She stresses that palliative, or comfort-oriented care, isn’t just for those approaching death but for anyone living with such chronic disorders as pain, depression or fatigue.) “Pain can be treated effectively with standard analgesic [pain-quelling] regimens,” she says, “but you have to be prepared for a period of trial and error to find the right mix of meds—and a doctor willing to work with you until you get adequate relief.”

Pain is measured from 0 (none) to 10 (worst pain possible). So lowering your everyday pain level from, say, 8 down to somewhere between 2 and 5 is a goal. There are myriad pharmaceutical relievers (far too many to list all here), including non-opioids for mild pain (Tylenol, Advil, Motrin and steroids), weak opioids for moderate pain (codeine, Vicodin) and strong opioids for severe pain (morphine, fentanyl, methadone, Oxycontin). Antidepressants (like Cymbalta), anticonvulsants (like Neurontin) and topical or injectable anesthetics (like Lidocaine) can also be used. One new anesthetic, pioneered by Simpson and just approved by the FDA for herpes-related pain but also available for neuropathy, is Qutenza, a patch containing capsaicin, a chemical from the chili pepper. The patch is applied at the doc’s office and can lessen pain for up to three months.

But there are pitfalls. Opioids, for example, can be addictive. “You need to be honest with your doctor about any [substance use] history you have,” says Meier, adding that just because you have, or had, a substance problem doesn’t mean you shouldn’t take pain meds—only that you may need to sign a “pain agreement” with your doctor, promising to take only meds prescribed by him or her, as directed, and to be completely honest about any non-prescription substance use. Worried about addiction, some doctors avoid prescribing opioids. “You have to balance the risks and benefits of opioids, and doctors who don’t understand [the balance] should not be prescribing,” insists Russell Portenoy, MD, head of pain medicine and palliative care at Beth Israel Medical Center in New York City and coauthor of a recent Mayday Fund report urging better pain-management training for doctors.

Beyond meds—or in their place if, like Correa, you’re drug-averse—alternative strategies might help: acupuncture, massage, electrical spinal-cord stimulation, physical therapy and various forms of movement and meditation. “In the brain, the pain pathways are closely connected to the pathways that govern emotion,” Simpson says. “When you experience pain, there’s an emotional response, and conversely, depression can manifest as pain symptoms.” So don’t rule out therapy or support groups, either.

It’s all about learning to subdue and live with pain while aggressively seeking to lessen or eliminate it long-term. As for Correa, she’s still working on that diagnosis. She’s having a second MRI and consulting a pain specialist. Meanwhile, she gets relief from a chiropractor and from her meditation and breathing exercises. “I know how to breathe into the pain and keep my wits about me,” she says, referring to a technique that can lower her pain level from a 9 to a 6. Plus, she says, hot showers and hot tea help. “Keep it in perspective,” she advises others living with chronic misery. “Don’t get desperate and let it be the be-all, end-all of your life.”
http://www.hepmag.com/articles/Pain_Away_HIV_2501_18629.shtml

Saturday, July 1, 2017

Damaged Mitochondria Lead To Nerve Pain Repair Them And The Pain Goes Away!



Today's post from the ever-informative, sciencedaily.com (see link below) delves deep into the cellular behaviour of nerve cells but comes out with a potential benefit for us all in the future. If you feel this is all beyond you on a lazy Sunday morning, don't be put off; read on, because science daily nearly always delivers text that we can all follow. In this case it concerns the energy drivers of nerve cells and they are mitochondria. If the mitochondria are damaged or inhibited in some way then neuropathy is most often the result because if the neurons are deprived of the energy they generate then they just give up the ghost and start short-circuiting in the ways we feel every day. Basically, scientists have found that if the mitochondria are damaged, they can regenerate themselves if the protein that is blocking them, is disabled and that's apparently possible...in the ever-suffering mice in the test labs. Too molecular for you? Well yes but we must take heart that scientists are learning so much more every year and this is leading to improved treatments...however long it takes.


Mobilizing mitochondria may be key to regenerating damaged neurons 
Date:June 7, 2016 Source:Rockefeller University Press

Researchers at the National Institute of Neurological Disorders and Stroke have discovered that boosting the transport of mitochondria along neuronal axons enhances the ability of mouse nerve cells to repair themselves after injury. The study, "Facilitation of axon regeneration by enhancing mitochondrial transport and rescuing energy deficits," which has been published in The Journal of Cell Biology, suggests potential new strategies to stimulate the regrowth of human neurons damaged by injury or disease.

Neurons need large amounts of energy to extend their axons long distances through the body. This energy -- in the form of adenosine triphosphate (ATP) -- is provided by mitochondria, the cell's internal power plants. During development, mitochondria are transported up and down growing axons to generate ATP wherever it is needed. In adults, however, mitochondria become less mobile as mature neurons produce a protein called syntaphilin that anchors the mitochondria in place. Zu-Hang Sheng and colleagues at the National Institute of Neurological Disorders and Stroke wondered whether this decrease in mitochondrial transport might explain why adult neurons are typically unable to regrow after injury.

Sheng and his research fellow Bing Zhou, the first author of the study, initially found that when mature mouse axons are severed, nearby mitochondria are damaged and become unable to provide sufficient ATP to support injured nerve regeneration. However, when the researchers genetically removed syntaphilin from the nerve cells, mitochondrial transport was enhanced, allowing the damaged mitochondria to be replaced by healthy mitochondria capable of producing ATP. Syntaphilin-deficient mature neurons therefore regained the ability to regrow after injury, just like young neurons, and removing syntaphilin from adult mice facilitated the regeneration of their sciatic nerves after injury.

"Our in vivo and in vitro studies suggest that activating an intrinsic growth program requires the coordinated modulation of mitochondrial transport and recovery of energy deficits. Such combined approaches may represent a valid therapeutic strategy to facilitate regeneration in the central and peripheral nervous systems after injury or disease," Sheng says.

Story Source:

The above post is reprinted from materials provided by Rockefeller University Press. Note: Materials may be edited for content and length.

Journal Reference:
Bing Zhou, Panpan Yu, Mei-Yao Lin, Tao Sun, Yanmin Chen, Zu-Hang Sheng. Facilitation of axon regeneration by enhancing mitochondrial transport and rescuing energy deficits. The Journal of Cell Biology, 2016; jcb.201605101 DOI: 10.1083/jcb.20160510


 https://www.sciencedaily.com/releases/2016/06/160607151233.htm