Search This Blog

1

Labels

Cancer (150) Breast (38) Study (38) Health (32) Patients (31) Treatment (27) Could (23) Therapy (19) Research (17) Against (12) Blood (11) Disease (11) linked (11) Diabetes (10) Early (10) Prevent (10) Survival (10) Treatments (7) higher (7) surgery (7) Might (6) Prostate (6) Tumors (6) During (5) Effects (5) Growth (5) Chemotherapy (4) Drinking (4) Prevention (4) Obama (3) Obesity (3) Without (3) associated (3) Experts (2) Important (2) Infection (2) About (1) Analysis (1) Causes (1) Eliminate (1) stroke (1)

AD

Showing posts with label Achieve. Show all posts
Showing posts with label Achieve. Show all posts

Monday, December 2, 2013

Scientists achieve most detailed picture ever of key part of hepatitis C virus

Nov. 28, 2013 — Scientists at The Scripps Research Institute (TSRI) have determined the most detailed picture yet of a crucial part of the hepatitis C virus, which the virus uses to infect liver cells. The new data reveal unexpected structural features of this protein and should greatly speed efforts to make an effective hepatitis C vaccine.

The findings, which appear in the November 29, 2013 issue of the journal Science, focus on a protein known as E2 envelope glycoprotein.

"We're excited by this development," said Ian A. Wilson, the Hansen Professor of Structural Biology at TSRI and a senior author of the new research with TSRI Assistant Professors Mansun Law and Andrew B. Ward. "It has been very hard to get a high resolution structure of E2 and it took years of painstaking work to finally accomplish that."

Any successful hepatitis C vaccine is likely to target the E2 protein. Scientists already have isolated rare antibodies from patients that can bind E2 in ways that neutralize a broad range of viral strains.

"It took our team six years to crack this very difficult scientific problem, but we didn't give up," said Law. "Now that we can visualize the structural details of these binding sites, we can design vaccine molecules that mimic them."

A Silent Killer

There has long been an urgent need for an effective vaccine against hepatitis C virus. Once confined to isolated geographical regions, the virus spread globally during the 20th century, chiefly via blood transfusions, unsterilized medical instruments and re-used hypodermic needles. Although hospitals have screened blood products for hepatitis C virus (HCV) since the early 1990s, as many as 200 million people currently are thought to harbor the virus. These include more than 3 million people in the United States, where the virus is responsible for more deaths each year than HIV.

HCV was able to spread so widely because it typically causes few or no symptoms when it infects someone. In many cases it establishes a long-term infection of the liver, damaging it slowly for decades -- until liver cirrhosis and/or cancer develop. "It's known as a 'silent killer'," said Law. Expensive and risky liver transplantation is often the only way to save a patient's life. Some antiviral drugs are useful in treating and even curing chronic HCV infection, but the more effective ones are extremely expensive -- and most HCV-positive people don't even know that they're infected and need treatment.

An HCV vaccine could put an end to the global pandemic by preventing new infections. "It could be given to people when they're young and healthy, and they'd never have to worry about developing HCV-related liver diseases," said Ward.

However, like HIV and some other viruses, HCV uses several effective countermeasures to evade the immune system. These include fast-mutating regions on the E2 protein, which ensure that antibodies to one HCV strain typically are ineffective against other strains. The E2 protein also coats itself with relatively antibody-proof sugar molecules.

To defeat these viral countermeasures, scientists have wanted to "see" the high-resolution atomic structure of HCV, particularly E2 and its CD81 receptor binding site, which does not vary much from strain to strain. In recent years, Law's laboratory and others have isolated antibodies that manage to grab hold of this relatively conserved region of E2, thereby blocking the infectivity of a large fraction of HCV strains. In principle, a vaccine that prompts the body to make similar antibodies would effectively and cheaply immunize people against most of their risk of HCV infection.

Unruly E2

But precisely mimicking these antibody-binding sites in a vaccine means first determining their high-resolution structures, which has been difficult even to attempt. "Usually if you try to express the E2 protein in cultured cells, you either can't express it in useful quantities or you can but it aggregates and becomes a big mess," said Leopold Kong, a research associate in the Wilson laboratory who was the study's lead author.

Over the past several years, Kong and his colleagues have run dozens of experiments to find the right way to modify E2 -- enough that the protein doesn't aggregate so readily and also so that the antibody-binding sites are maintained. This would enable the protein to be soluble and pure enough to grow crystals to determine its structure by the technique known as X-ray crystallography. "It was a Herculean effort," said Ward. "This is one of the most difficult and unstable viral envelope proteins around."

In the end, the team succeeded, using a slightly altered version of E2 -- the E2 core -- with some of its glycans (sugar molecules) and outer variable and stalk segments removed. The scientists were then able to obtain the high-resolution structure of the protein while it was bound to a known broadly neutralizing antibody developed at TSRI. The scientists then followed up by imaging a more complete version of E2 using electron microscopy to extend the structural model.

When finally revealed, E2's structure surprised the researchers. "It had been thought that HCV's E2 belongs to a family of viral fusion proteins called class 2 fusion proteins, which includes envelope proteins for West Nile and dengue viruses, for example," said Kong. "But we showed that E2 is structurally distinct and probably works differently than what had been widely assumed."

Based on the new structural data, Law and colleagues at TSRI are already designing and testing novel antibody-stimulating components of a future HCV vaccine. "Having the E2 structure has certainly helped us," said Law.


View the original article here

Saturday, November 16, 2013

Clinical trials are not breast cancer high of searches concurrent therapy are required to achieve the pathological histological remission

Concerns can be associated with increased risk of cardiac toxicity as this combination is effective in the treatment of HER-2 positive breast cancer, given the concurrent Trastuzumab and anthracycline. University of Texas MD Anderson Cancer not required because new research from the Alliance in the Center, Department of Oncology, clinical trials for colleagues to achieve a high rate of Pathology histological remission of these agents at the same time shows.

View the original article here

Saturday, September 28, 2013

Joint Statement on accelerating efforts to achieve the health MDGs

We have 829 days to go until the December 2015 MDG deadline. Over the past 12 and a half years, the world has made remarkable progress against the goals, especially the health-related MDGs. Child and maternal deaths have been almost halved from 1990 levels. Malaria deaths have dropped 50%, driven largely by the distribution of over 400 million mosquito nets in the past several years. Over 6 million people, of the 9 million who need TB treatment, are now on treatment. HIV, once a death sentence with virtually no one on treatment, has undergone a dramatic shift with almost 10 million people on treatment today – and if we can finish the job and put everyone on treatment, we will irreversibly halt the AIDS epidemic. These results are unmistakable proof that success is possible.

Now we must come together in one final big push to achieve the health MDGs, and lay the strongest of foundations for a post-2015 world.

We all know that the economic environment has been challenging, but despite that, the pace of our work to end maternal and child deaths, malaria deaths, AIDS-related deaths and eliminating new HIV infections among children has quickened over the past 3 years. This week, an unprecedented US$ 1.15 billion has been freshly mobilized to reach MDGs 4 and 5 – the largest amount ever mobilized for those goals. Funds of this magnitude fill a substantial portion of the remaining financing gap. Last year, at the London FP Summit, some $2.6 billion funds were mobilized for family planning. The Global Fund to Fight AIDS, TB and Malaria is working hard to achieve its replenishment figure of $15 billion.

Global investments in the AIDS response, totaling a US$ 18.9 billion, more than half from domestic sources has been the highest ever, demonstrating shared responsibility and global solidarity in action. Should the replenishment be successful, a significant portion of the funding required to achieve MDG 6 will also have been secured.

Funding will always be a challenge, but the amount we have mobilized - despite difficult economic times - is formidable, and we know we have even more funding to come in the remaining months of this year. We are on the right path - we have identified the life-saving commodities required, the geographic areas where the most deaths occur, and what women and children, in particular, are dying of; we know what interventions work and we know what it costs to prevent them.

It is now time for an unprecedented acceleration of effort to achieve the goals. We know it will take nothing short of a moonshot to accomplish the goals in the time remaining. The lives we must save in this final MDG phase are in the most difficult to reach areas, and are people who are chronically underserved. With a rights-based approach, combined with utilizing the advancements in science (effective antiretroviral therapy, malarial drugs, rapid diagnostics for TB), we can reach more people in need, faster and efficiently. We must do everything we can, to get as far as we can, by December 2015. Anything less will steepen our climb even further post-2015.

We stand together now to accelerate the effort to achieve the goals. We must focus on supporting countries to save 3.5 million more children and 122,000 more women and achieve MDGs 4 and 5; reduce more than a quarter million maternal deaths every year, and bring down the unmet need of millions of women for family planning; end malaria deaths and eliminate new HIV infections among children; provide access to antiretroviral therapy to the more than 28 million people in need of HIV treatment in 2013; and reach all 9 million people in the world who require TB treatment.

We will report to the UN Secretary General by the end of October on progress towards meeting the financial commitments and how they will accelerate actions towards achieving the MDGs.

We will continue to work in earnest with each country in a coordinated manner to support their efforts to achieve these goals. Key interventions exist that can achieve remarkable and rapid impact when scaled up effectively. For example, evidence supports substantially increased investments in community health workers - including midwives - to reach those who are unreached. Results-Based Financing and Conditional Cash Transfers are proving highly effective to eliminate barriers for the poor and underserved. We have determined collectively a list of the highest-impact, but neglected, life-saving commodities that if rolled out could save millions of lives. We have evidence to show that when women and girls are given the means to delay marriage, prevent unwanted pregnancies, and space births, maternal and child deaths can be significantly reduced. Having proven that family planning is the most cost-effective measure to prevent unwanted pregnancies and reduce birth-related deaths, we have further sharpened efforts to reduce the unmet need of 222 million women - increasing commodities demand and strengthening supply, identifying where exactly the burden is and calculating how much it costs to scale up efforts. Antiretroviral therapy now is scientifically proven to not just stop AIDS-related deaths but also stop HIV transmission and reduce new HIV infections. It is now the moment to weave all of these excellent ideas together and intensify our support to countries to execute against them, in support of their own country plans.

Most important to the success of this entire endeavor will be leadership and conviction of member states and communities who are working day in and day out to achieve the goals. While there is more funding to raise, with significant funding now mobilized, our focus now turns fully to implementation and execution.

Next year, even six months from now, will be too late to start accelerating our efforts. Now is the moment to build on our remarkable success and insure that we actually meet the health MDGs in the time left to achieve them.

Please join us in this once in a lifetime opportunity.

For more information please contact:

Gregory Hartl
WHO Media Coordinator
Department of Communications
WHO, Geneva
Mobile: +41 79 203 6715
E-mail: hartlg@who.int


View the original article here