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Tuesday, August 5, 2008

article : Protein that provides innate defense against HIV could lead to new treatments

Scientists have known that most human cells contain a factor that regulates the release of virus particles, but until now they have been uncertain about the factor's identity. Now a research team from Emory University School of Medicine, Vanderbilt University School of Medicine, and Mayo Medical School has identified CAML (calcium-modulating cyclophilin ligand) as the cellular protein that inhibits the release of HIV particles.

CAML works by inhibiting a very late step in the virus lifecycle, leading to the retention of HIV particles on the membrane of the cell. The virus has developed a means of counteracting CAML, through the action of the viral Vpu protein. When Vpu is absent, HIV particles don't detach from the plasma membrane and instead accumulate by a protein tether at the cell surface.

When the research team depleted CAML in human cells in the laboratory, they found that Vpu was no longer required for the efficient exit of HIV-1 particles from the cell. When they expressed CAML in cell types that normally allow particles to exit freely, the particles remained attached to the cell surface.

"This research is important because it identifies CAML as an innate defense mechanism against HIV," says senior author Paul Spearman, professor of pediatrics (infectious diseases) at Emory University School of Medicine. "We are continuing to work on the mechanism that Vpu uses to counteract CAML and on defining exactly how CAML leads to virus particle retention on the infected cell membrane. We hope this will lead us to new treatments."

Source : Emory University

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article : Trial is first to see if HIV prevention gels are safe for pregnant women, their babies

Clinical trials hoping to identify a vaginal microbicide that is both safe and effective against HIV have all but skirted questions befitting the evaluation of an approach intended primarily for sexually active women of childbearing age: What if a woman becomes pregnant while using a product? Can exposure to a product, especially early in pregnancy, pose a risk to the developing fetus? Does pregnancy affect how a particular microbicide is supposed to work?

Researchers from the Microbicide Trials Network (MTN) and the University of Pittsburgh will begin addressing these and other questions in the first clinical trial of a candidate vaginal microbicide in pregnant women. The National Institute of Allergy and Infectious Diseases (NIAID) and the Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD), both components of the U.S. National Institutes of Health, are funding the study.

Women, who represent nearly half of the 33.2 million people living with HIV, are more than twice as likely as men to acquire HIV through sex. Between 70 and 90 percent of all HIV infections in women are acquired during heterosexual intercourse. In the face of these staggering statistics, much research is focusing on the promise of microbicides, products designed to prevent the sexual transmission of HIV when applied topically on the inside of the vagina or rectum.

The trial, known as MTN-002, will enroll 16 healthy HIV-negative women who are scheduled for caesarean delivery at Magee-Womens Hospital of the University of Pittsburgh Medical Center. The women will have a single dose of tenofovir topical gel applied inside the vagina about two hours before giving birth. Tenofovir gel incorporates an antiretroviral drug normally used to treat people with HIV and is among a newer class of candidate microbicides that differ from early types because it has specific activity against HIV.Researchers hope to understand the extent that pregnancy affects how the body absorbs the active drug in the gel and whether the drug can be transferred to the fetus.

"The study of drugs during pregnancy continues to be one of the most neglected areas of biomedical research. As for microbicides, when the very population at risk for HIV is the same population of women most likely to become pregnant, we have a clinical and ethical obligation to pursue studies involving the use and safety of microbicides in pregnancy," said Richard Beigi, M.D., M.Sc., an assistant professor of obstetrics, gynecology and reproductive sciences at the University of Pittsburgh School of Medicine, who is leading the MTN study.

Women in clinical trials of microbicides are typically between the ages of 18 and 40 and required to use effective methods of contraception, in addition to male condoms, for a study's duration. Still, pregnancies are not uncommon, occurring in at least 5 to 10 percent of participants. Because the risks to both women and their babies are not known, women who are found to be pregnant are told to stop using the study product immediately.

"Absent any data, the wisest course of action has been the one we have adopted. But asking women to stop a product is not an approach that would be feasible in a real-world setting, and surely, in the short term, we would do better to have data with which we could inform women in clinical trials," added Dr. Beigi. Dr. Beigi will also lead an MTN registry of women who become pregnant while participating in an HIV prevention trial of either a microbicide or an oral antiretroviral drug, an approach known as pre-exposure prophylaxis, or PrEP; and will include women who have participated in trials like MTN-002. The registry also will help determine the effects, if any, that early exposure to these products may have on fetal and/or neonatal development.

Indeed, a recent Institute of Medicine report on the methodological challenges in HIV prevention trials included among its key recommendations the need to evaluate the potential effects products may have on pregnant women and their fetuses. One argument for such studies is that if a microbicide were to become widely available, pregnant women will be among those using the product. Evaluating safety in this population before any product is marketed is important to ensure that microbicides are used by as many women as can safely benefit. Moreover, studies could also indicate if using microbicides during pregnancy – a time when women may be at even greater risk for acquiring HIV through sexual intercourse – could also help prevent mother-to-child HIV transmission.

Researchers must first understand what happens in pregnancy, when changes in the mother, placenta and the fetus can alter absorption, distribution and elimination of drugs. In MTN-002, researchers will look to see if and how much of the gel's active drug is in the woman's blood and uterus; the placenta and umbilical cord blood; and the amniotic fluid surrounding the baby. Because study gel is being given as one dose right before delivery, just trace amounts of tenofovir, if any, are expected to pass into the bloodstream. Researchers are not sure if the drug goes into the placenta, the amniotic fluid or the baby's blood, which are some of the questions the study seeks to answer.

The active ingredient in tenofovir gel belongs to a class of anti-retroviral (ARV) drugs called nucleotide reverse transcriptase inhibitors. In its pill form, tenofovir is a mainstay of one of the most widely used regimens for treating HIV, and it is increasingly being used during pregnancy. It is also being studied in HIV-infected women late in pregnancy for its potential to prevent mother-to-child transmission of HIV. The topical gel form of tenofovir is an approach being evaluated as a preventive against sexual transmission of HIV. Trials have found it is safe to use by HIV-negative women, but no studies of the gel have been conducted in pregnant women. MTN-002 will include several measures to ensure the safety of the women and their newborns, and it will make use of the resources and expertise of the University of Pittsburgh Obstetric-Fetal Pharmacology Research Unit (OPRU), one of four OPRU sites funded by the NICHD to study the use of pharmacologic agents during pregnancy.

Depending on what is learned in MTN-002, the research team may plan larger trials that will assess repeated tenofovir gel use over longer periods during pregnancy. Demonstrating the safety during pregnancy could potentially allow women who become pregnant during effectiveness trials to remain in the study and continue using the product, say the researchers.

Concurrent with MTN-002, MTN will launch a series of other trials evaluating the safety of and adherence to using tenofovir gel as well as looking at its effectiveness for preventing HIV in nonpregnant women. MTN-001will be the first study directly comparing oral and vaginal gel preparations of tenofovir – looking at differences in drug absorption (systemically and locally) and adherence and acceptability of each approach separately and in combination. The VOICE Study (Vaginal and Oral Interventions to Control the Epidemic) will be the first effectiveness trial evaluating two promising HIV prevention approaches in the same study: tenofovir gel and PrEP, an HIV prevention approach that involves daily use of oral ARVs.

Both oral and topical formulations of tenofovir were developed by Gilead Sciences, Inc., of Foster City, California, which assigned a royalty-free license for the topical gel to the International Partnership for Microbicides of Silver Spring, Maryland, and CONRAD, of Arlington, Virginia, in December 2006. CONRAD is supplying both the gel and gel applicators for MTN-002.

Other microbicide products have been or are currently being tested in clinical trials, although none is yet approved or available for use by women.

Source : University of Pittsburgh


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article : How Know the antiretroviral therapy as HIV prevention strategy

The widespread use of highly active antiretroviral therapy may reduce the incidence of HIV in individuals and populations but has been overlooked by public health as a prevention strategy, write Dr. Julio Montaner and colleagues in CMAJ.

Despite advances in HIV treatment such as topical microbicides, pre- and post-exposure treatment and male circumcision, HIV infections continue to increase worldwide. Dr. Montaner and co-authors argue that "expanded access to highly active antiretroviral therapy for patients with a medical indication will reduce AIDS-related illness and deaths and may reduce HIV incidence."

"At the population level, access to highly active antiretroviral therapy has been temporally associated with substantial reductions in HIV incidence. For example, population-based research in Taiwan found a 53% reduction in new positive HIV test results after the introduction of free access to highly active antiretroviral therapy."

The use of "treatment as an aid to prevention" has been used in public health disease management, with diseases such as tuberculosis and genital herpes. "However, public health policy-makers and program managers have been reluctant to accept this strategy as viable for preventing the growth of the HIV/AIDS epidemic," write the authors.

"Treatment as an aid to prevention should be explored in diverse settings, including in developed and developing countries….Evidence derived from these research efforts will decrease AIDS-related morbidity and mortality and inform policy-makers about the role of treatment as an aid to prevention."

Source : Canadian Medical Association Journal


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article : Infant formula blocks HIV transmission via breastfeeding

Acquired Immune Deficiency Syndrome (AIDS) is a global epidemic threatening the lives of millions of people. Because there is no known cure, prevention of the transmission of the virus that causes AIDS, the Human Immunodeficiency Virus (HIV), is critical for controlling the disease. The transmitting routes of HIV include breastfeeding, which passes the virus from mothers to infants. This is a major problem in many areas of Africa, where HIV-positive mothers have no alternative to breastfeeding. So far, no practical and effective methods are available to prevent HIV transmission by this route.

A team of researchers from Lavax (Palatine, Ill.) and the University of Illinois at Chicago, reporting today during the 86th General Session of the International Association for Dental Research (IADR), is developing a new technology that prevents the infection of HIV by breastfeeding. They have isolated a special strain of probiotic lactobacilli from the human mouth. It belongs to the same species as those found in dairy foods, such as yogurt and kefir. This strain captures the HIV virus by binding to its outer 'envelope'. Because it grows and reproduces itself in milk, once an infant is inoculated with the Lactobacillus, the protection may last until the infant is weaned. This technology offers an easily administered alternative to HIV vaccines, which are currently unavailable. However, the hot climate and the lack of refrigeration in Africa pose a great challenge for the shelf life of lactobacilli. The aim of this study was to develop a lasting formula of lactobacilli for infants to be used as prevention against the transmission of HIV through breastfeeding.

Currently, the best bio-protecting agents for lactobacilli are sucrose and trehalose. These sugars preserve freeze-dried lactobacilli well at 4°C and 20°C. However, at a warmer temperature (33°C), after 4 weeks of storage, all Lactobacillus cells protected with sucrose or trehalose die. By screening a variety of food ingredients for a better protective agent, the investigators have identified a new alternative. This new agent kept the HIV-capturing Lactobacillus strain viable for more than 12 weeks at 33°C. Their analysis showed that, after 12 weeks, the Lactobacillus in the infant formula was as good as fresh Lactobacillus in capturing HIV and blocking the HIV infection of cultured mammalian cells.

In summary, scientists have developed a new preservation method that can maintain HIV-capturing lactobacilli in a hot climate without refrigeration. This method will facilitate the development of a safe and effective prophylactic formula to protect infants from HIV in mother's milk.

Source : International & American Association for Dental Research


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article : How viral complementation allows HIV-1 replication without integration, NYU Dental research shows

Weak HIV viruses piggyback onto stronger ones, raising the possibility that the human body may harbor many more HIV viruses capable of replicating and contributing to the development of AIDS than previously thought, a New York University College of Dentistry AIDS research team has found.

It's widely known that only about one in every 100 HIV viruses can successfully complete the process of integrating its DNA with the DNA of the human cell -- a step that every virus must successfully complete before it can reproduce. But a new study led by Dr. David N. Levy, an Assistant Professor of Basic Science and Craniofacial Biology at the NYU College of Dentistry, has revealed a mechanism that enables some of the other 99 percent of HIV viruses also to replicate and play a potential role in the development of AIDS.

"We've observed a new mode of HIV replication that involves cooperative interaction between viruses," said Dr. Levy, who published his findings today in BioMed Central's open access journal Retrovirology.

According to Dr. Levy, HIV functions as a community, with those viruses that successfully integrate with the DNA in human cells rescuing the viruses that fail to integrate by providing them with the proteins they need to reproduce. In fact, the viruses that were once thought to be lost because they don't integrate may have an advantage over the others because they can skip several steps in their replication cycle and reproduce faster.

"Cooperation between different viruses is yet another one of the many tricks that HIV uses to survive, and raises the possibility that there are more active viruses in the body than was previously thought. Understanding how viruses interact with each other is a key to understanding how HIV evolves and survives the body's immune responses, which we hope could ultimately lead to the development of new ways to treat HIV infection."

Source : New York University


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