New non-drug fix for HIV?

June 30th, 2009

The Scientist Magazine
By Alison McCook
30th June 2009

Researchers are slowly establishing a connection between an extremely rare genetic disease and HIV — and homing in on a safe, non-prescription compound that could treat both.

Recently, James Hildreth at the Meharry Medical College School of Medicine in Nashville, Tenn., and his colleagues found that cells affected by Niemann-Pick Type C (NPC), which disrupts cholesterol trafficking, were unable to release HIV, suggesting these cells would not spread the virus.

These findings, published May 27 in the Journal of Virology, are rooted in a hypothesis Hildreth has explored for a long time: that “cholesterol is somehow essential” to HIV, he said. For instance, HIV-1 relies on specialized structures known as lipid rafts, which are rich in cholesterol, to infect new cells.

That line of thinking has led him to investigate whether a compound widely employed by the food and chemical industries (and used as a drug solubilizer) which depletes cells of cholesterol could serve as a preventative agent — or even a treatment — for HIV. And his growing body of evidence is suggesting the compound, known as cyclodextrin, might do just that.

“There are very few [compounds] that rival the safety profile” of cyclodextrin, said Hildreth. If further research confirms it has an effect on a disease that affects millions of people worldwide, that would be a major advance, he noted. “It’s been exciting for me from the beginning.”

Cyclodextrin appears to also show some benefit in NPC, pointing further to a connection between HIV and the rare genetic disease. Indeed, a family with identical 5-year-old twins with NPC recently received permission from the US Food and Drug Administration to give the girls regular infusions of cyclodextrin. NPC leads to marked abnormalities in the liver and brain and is invariably fatal.

“You have no idea what a relief it is to have something to try,” said Chris Hempel, mother to Addi and Cassi. The girls have so far received several infusions, starting with one continuous 4-day infusion, and are now getting a series of 8-hour weekly infusions of increasing doses. Hempel said the girls improved remarkably after the first 4-day infusion, showing better control of their head and neck and better balance, and were more affectionate and responsive to people. These improvements waned a bit once the girls switched to weekly doses, but seem to be returning as the doses increase.

In a previous experiment, Hildreth and his colleagues found that adding cyclodextrin to uninfected cells to deplete cellular cholesterol warded off HIV infection. Restoring normal cholesterol levels removed that protection. In a mouse model of HIV, cyclodextrin prevented vaginal transmission of the virus by infected cells.

In a primate model, the data were somewhat less promising. When macaques received topical cyclodextrin before being exposed to the virus, the treatment appeared to prevent infection initially, but offered little protection upon re-exposure to SIV, again following cyclodextrin prophylaxis.

Hildreth said that may be because the animals received a massive dose of the virus — “way more than you?d ever see in seminal fluid in a natural setting” — and the batches of cyclodextrin used for the repeated doses were not of the same quality. He said he is now repeating the study using a “physiologically relevant” amount of the virus. “We’re pretty confident.”

Hildreth explained that NPC is likely disrupting HIV transmission by affecting the trafficking of the viral protein Gag. “The very dramatic thing in NPC cells is the Gag protein seems to never make it to the plasma membrane.”

Currently, Hildreth is developing cyclodextrin as a microbicide against HIV. He has filed an investigational new drug application with the FDA, and is investigating whether the compound could serve as a therapeutic.

Steven Walkley, who studies lysosomal storage disorders such as NPC at Albert Einstein College of Medicine in New York, said his own data show cyclodextrin has a “remarkable” effect on mice with NPC. “They’re living literally twice as long as they would otherwise, ” he said. “We were very surprised, to say the least.” (He and his colleagues have submitted their findings for publication.)

Walkley noted that his mice receive 4000 milligrams per kilogram of cyclodextrin — 10 times a recent dose the Hempel girls received — and he hasn?t noticed any side effects. However, it’s still unclear how exactly cyclodextrin is warding off NPC, which means there could be some side effects scientists have not yet discovered, he added. “Maybe there’s something going on and we just haven’t found it yet.”

Peter Pentchev, a retired scientist who worked with NPC for decades at the National Institutes of Health, echoed Walkley’s opinion about the promise of cyclodextrin in NPC, dubbing it the “perfect drug” for the disease. He cautioned, though, that “we know what [cyclodextrin] does, but we don’t know why or how.” But scientists are working on those questions, he added. “In the next year, I’d be really surprised if we don’t get some answers.”

Hempel, too, has failed to notice a single side effect since her girls began cyclodextrin infusions. “We’re proving the safety of this compound,” she said. “I definitely feel like Addi and Cassi are leading the way here, not only for NPC kids, but potentially for AIDS patients.”

A Promising Compound That Could Stop HIV AIDS. Why Is It Not Being Supported?

June 5th, 2009

In chapter 18 of a book by Stefano Bertozzi referenced by famous health economist Robert H. Topel in his article in the Journal of Political Economy, several insightful comments about HIV research funding and needs for prevention in the face of a rapidly increasing HIV infection rate are highlighted.

The points made by Bertozzi et all about the lack of funding for research into preventive treatments for HIV are directly applicable to the difficulties I am facing obtaining funding and support from for a cheap sugar compound called cyclodextrin that has great potential to help stop the spread of HIV/AIDS.

red-ribbon-aids

Even though the U.S. President’s Emergency Plan for AIDS Relief and the Gates Foundation are funneling a  great deal of money into AIDS research, introduction of ameliorative therapy projects based on simple and available non toxic compounds such as hydroxypropyl beta cyclodextrin have not gotten past the initial screener. Why is further research into this simple sugar compound being held back?

Bertozzi et al attribute such resistance to compounds like cyclodextrin to the perception that preventive research is viewed as “less innovative scientifically” and “typically less experimental” by funding organizations.  They suggest earmarking such ameliorative therapy approaches to redress this imbalance.

The ameliorative therapy approach with hydroxypropel beta cyclodextrin also addresses the cited need for well-defined control or comparison groups necessary to measure the effectiveness of this preventive therapy.

It’s also interesting that a ready-to-use cheap formulation of cyclodextrin that would cost 10 cents per dose to deploy into Africa (!) and simply needs quick re-packaging doesn’t interest the funding organizations or the NIH.  It would seem that immediate relief for people and saving lives is far less exciting than the thought of basic research and making money.

It is hard to believe that a compound promising a stop to the method of transmission responsible for 80% of the HIV infections around the world does not create a compelling reason for funding and testing.   It would only cost $500,000 dollars to test cyclodextrin, the cost of caring for approximately one AIDS patient over their lifetime.  Surely Mr. Gates could direct $500,000 dollars at this sugar compound to see if it works before spending millions on something less effective?

Finally, there is money in cyclodextrin and very smart people are researching it.  The ability for HIV AIDS to assemble in the human body is directly tied to the Niemann Pick Type C cholesterol gene on Chromosome 18, one of the most important genes in the body (this gene is now tied to obesity!).   And look what hydroxy propel beta cyclodextrin is doing for my 5 year old twins, Addi and Cassi, who suffer from one of the worst cholesterol diseases on the planet.

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