HIV first emerged in the 80's as a deadly disease which now has been made into a much more manageable disease, however like most diseases it is starting to form resistance to certain drugs. If drug resistance develops then researchers need to find new drugs or treatment methods for people with this disease which can be very costly. According to scientists of the American Chemical Society there might be a new method to having affordable drugs that will not allow this disease to form a resistance against them.
In previous studies a drug company was able to develop a compound to inhibit HIV's interaction with the protein CCR5, but they didn't know that the virus could also attack the protein CXCR4. This protein is linked to the body's inflammatory responses so it is hard to develop a drug for this without the person having major side effects. Dennis Liotta wanted to do something about this, so his team and him tried coming up with a drug that would inhibit both these proteins with less side effects. Anthony Prosser, a member of Liotta's team, came up with an inexpensive method to test multiple drugs to do just this. The most effective drugs were found to not only be able to inhibit both these proteins but also the HIV reverse transcriptase. Since this new method is inexpensive it could be the new method for treating HIV that is affordable for everyone. I believe this is a great thing for all those with this disease, for it looks like a promising new treatment method. I am curious to see what future research will bring.
Showing posts with label human immunodeficiency virus (HIV). Show all posts
Showing posts with label human immunodeficiency virus (HIV). Show all posts
Wednesday, April 1, 2015
Friday, January 30, 2015
A possible cure for HIV
HIV
is a Human Immunodeficiency Virus that affects the immune system. It makes
people much more vulnerable to infections and diseases. It is found in the
bodily fluids of an infected person such as through blood. The virus can be
passed from one person to another though blood to blood and sexual contact.
A
recent article on Science Daily discusses HIV and how it can lie dormant in
infected cells for years or even decades. Scientists think unlocking the
secrets of this viral reservoir may make it possible to cure and not just treat
HIV. A team of researchers led by Zanvil A. Cohn and Ralph M. Steinman at
Rockefeller University and their collaborators describe new insights on which
cells likely do and do not harbor this latent virus. These researchers
think the reservoir of latent virus may be hiding out in a type of CD4 T cell:
long-lived memory cells that help the immune system remember particular
pathogens.
I believe that this research
is important and will aid in saving many lives in the future. More than 1.2
million people in the United States are living with HIV infection, and almost 1
in 7 are unaware of their infection. Finding a possible cure for HIV will lower these numbers greatly.
Friday, September 26, 2014
Potential Cure for HIV
According
to the World Health Organization (WHO),
approximately 0.8% of adults between the ages of 15-49 years old are living
with human immunodeficiency virus (HIV) worldwide. Despite the global
prevalence of the virus, there has not yet been a functional
cure. However, recently an HIV-positive patient with leukemia was cured of
the virus. The patient underwent total
body irradiation (TBI) and a bone-marrow transplant. The bone-marrow donor
had a mutation which prevents the function of the CCR5 gene. The CCR5 gene codes for a
protein which allows HIV to enter human cells. The mutation the donor
possessed, however, protects cells against HIV infection.
Experts believe three factors may
have contributed to the cure in the Berlin patient. The first factor which may
have contributed to the patient’s cure is that the removal of blood and immune
cells which occurred after irradiation killed many of the viral reservoir cells. The second
contribution may have been that the CCR5 deletion mutation from the
donor cells protected those cells and their progeny from HIV infection.
The third contribution to the patient’s cure may have been a graft versus
host reaction which resulted in the transplanted cells and their progeny
attacking and eliminating the remaining HIV-positive cells.
In order to further research this potential cure for HIV, a study was conducted involving six rhesus macaques
infected with simian immunodeficiency virus (SIV). The researchers harvested hematopoietic
stem cells from three of the six of the macaques prior to infection with SIV
and treated the macaques with antiretroviral therapy
(ART). They treated the three macaques from which they collected hematopoietic
stem cells with high doses of radiation. The radiation killed 94%-99% of the
monkeys’ CD4-T
cells. The three monkeys then received their own virus-free hematopoietic
stem cells. The viral load rebounded rapidly in the three control group monkeys
and in two of the monkeys who received the transplant. Due to the failure of
the treatment, the researchers suggest that “the use of the CCR5 mutant donor
and/or the presence of graft versus host disease played a significant role” in
the cure of the Berlin patient.
Overall, this potential treatment
for HIV seems to have promise and should definitely be more extensively
researched. This treatment involving ART, irradiation, and a hematopoietic stem
cell transplant is very complex, and there are many aspects of it which should
be thoroughly examined. I found this article extremely interesting because the
graft versus host disease in the Berlin patient seemed to have been a vital
factor in how the patient was cured of HIV. Due to the complexity of the Berlin patient’s
case, the results will be difficult to replicate; however, replication of the
Berlin patient’s results has profound implications in the search for a cure for
HIV.
Subscribe to:
Posts (Atom)
