jueves, 1 de diciembre de 2016

The HIV treatment cascade and care continuum: updates, goals, and recommendations for the future | AIDS Research and Therapy | Full Text

Biomed Central
The HIV treatment cascade and care continuum: updates, goals, and recommendations for the future | AIDS Research and Therapy | Full Text

AIDS Research and Therapy

The HIV treatment cascade and care continuum: updates, goals, and recommendations for the future

  • Emma Sophia KayEmail author,
  • D. Scott Batey and
  • Michael J. Mugavero
AIDS Research and Therapy201613:35
DOI: 10.1186/s12981-016-0120-0
Received: 22 July 2016
Accepted: 31 October 2016
Published: 8 November 2016

Abstract

The HIV care continuum is a framework that models the dynamic stages of HIV care. The continuum consists of five main steps, which, at the population level, are depicted cross-sectionally as the HIV treatment cascade. These steps include diagnosis, linkage to care (LTC), retention in care (RiC), adherence to antiretroviral therapy (ART), and viral suppression. Although the HIV treatment cascade is represented as a linear, unidirectional framework, persons living with HIV (PLWH) often experience the care continuum in a less streamlined fashion, skip steps altogether, or even exit the continuum for a period of time and regress to an earlier stage. The proportion of PLWH decreases at each successive step of the cascade, beginning with an estimated 86% who are diagnosed and dropping dramatically to approximately 30% of PLWH who are virally suppressed in the United States (US). In this current issues review, we describe each step in the cascade, discuss targeted interventions that address weak points in the continuum, review domestic and international policies that help shape and direct HIV care strategies, and conclude with recommendations and future directions for HIV providers and policymakers. While we primarily examine issues related to domestic HIV care in the US, we also discuss international applications of the continuum in order to provide broader context.

Keywords

HIV continuum HIV treatment cascade Diagnosis Retention Linkage to care Adherence Viral suppression

The potential to expand antiretroviral therapy by improving health facility efficiency: evidence from Kenya, Uganda, and Zambia | BMC Medicine | Full Text

The potential to expand antiretroviral therapy by improving health facility efficiency: evidence from Kenya, Uganda, and Zambia | BMC Medicine | Full Text
Biomed Central

BMC Medicine

The potential to expand antiretroviral therapy by improving health facility efficiency: evidence from Kenya, Uganda, and Zambia

  • Laura Di Giorgio,
  • Mark W. Moses,
  • Nancy Fullman,
  • Alexandra Wollum,
  • Ruben O. Conner,
  • Jane Achan,
  • Tom Achoki,
  • Kelsey A. Bannon,
  • Roy Burstein,
  • Emily Dansereau,
  • Brendan DeCenso,
  • Kristen Delwiche,
  • Herbert C. Duber,
  • Emmanuela Gakidou,
  • Anne Gasasira,
  • Annie Haakenstad,
  • Michael Hanlon,
  • Gloria Ikilezi,
  • Caroline Kisia,
  • Aubrey J. Levine,
  • Mashekwa Maboshe,
  • Felix Masiye,
  • Samuel H. Masters,
  • Chrispin Mphuka,
  • Pamela Njuguna,
  • Thomas A. Odeny,
  • Emelda A. Okiro,
  • D. Allen Roberts,
  • Christopher J. L. Murray and
  • Abraham D. FlaxmanEmail author
Contributed equally
BMC Medicine201614:108
DOI: 10.1186/s12916-016-0653-z
Received: 31 March 2016
Accepted: 6 July 2016
Published: 20 July 2016

Abstract

Background

Since 2000, international funding for HIV has supported scaling up antiretroviral therapy (ART) in sub-Saharan Africa. However, such funding has stagnated for years, threatening the sustainability and reach of ART programs amid efforts to achieve universal treatment. Improving health system efficiencies, particularly at the facility level, is an increasingly critical avenue for extending limited resources for ART; nevertheless, the potential impact of increased facility efficiency on ART capacity remains largely unknown. Through the present study, we sought to quantify facility-level technical efficiency across countries, assess potential determinants of efficiency, and predict the potential for additional ART expansion.

Methods

Using nationally-representative facility datasets from Kenya, Uganda and Zambia, and measures adjusting for structural quality, we estimated facility-level technical efficiency using an ensemble approach that combined restricted versions of Data Envelopment Analysis and Stochastic Distance Function. We then conducted a series of bivariate and multivariate regression analyses to evaluate possible determinants of higher or lower technical efficiency. Finally, we predicted the potential for ART expansion across efficiency improvement scenarios, estimating how many additional ART visits could be accommodated if facilities with low efficiency thresholds reached those levels of efficiency.

Results

In each country, national averages of efficiency fell below 50 % and facility-level efficiency markedly varied. Among facilities providing ART, average efficiency scores spanned from 50 % (95 % uncertainty interval (UI), 48–62 %) in Uganda to 59 % (95 % UI, 53–67 %) in Zambia. Of the facility determinants analyzed, few were consistently associated with higher or lower technical efficiency scores, suggesting that other factors may be more strongly related to facility-level efficiency. Based on observed facility resources and an efficiency improvement scenario where all facilities providing ART reached 80 % efficiency, we predicted a 33 % potential increase in ART visits in Kenya, 62 % in Uganda, and 33 % in Zambia. Given observed resources in facilities offering ART, we estimated that 459,000 new ART patients could be seen if facilities in these countries reached 80 % efficiency, equating to a 40 % increase in new patients.

Conclusions

Health facilities in Kenya, Uganda, and Zambia could notably expand ART services if the efficiency with which they operate increased. Improving how facility resources are used, and not simply increasing their quantity, has the potential to substantially elevate the impact of global health investments and reduce treatment gaps for people living with HIV.

Keywords

Antiretroviral therapy HIV/AIDS Efficiency Sub-Saharan Africa

HIV and Zika: When will we be able to end these epidemics? | Retrovirology | Full Text

HIV and Zika: When will we be able to end these epidemics? | Retrovirology | Full Text
Biomed Central

Retrovirology

 
OPEN ACCESS

HIV and Zika: When will we be able to end these epidemics?

Retrovirology201613:80
DOI: 10.1186/s12977-016-0315-4
Received: 9 November 2016
Accepted: 9 November 2016
Published: 15 November 2016
It seems that a year cannot go by without some new emergent infectious disease stealing away headlines from the HIV epidemic, even though the latter continues to kill several million people each year. For example, there was justifiable concern that the recent Ebola epidemic would become more widespread than it did [1]. Fortunately, Ebola seems to have receded, at least for now, the epidemic being declared over in January 2016, although precautions must continue to be taken to ensure that it does not again become a threat.
This year, the world has been thrown into panic by Zika virus that has caused hundreds of infants to be born with a condition termed microcephaly. The reasons for this terrible birth defect are not well understood and it seems that it is the northeast area of Brazil that has been most prone to this devastating complication. Hopefully, new epidemiological data will shed light on the reasons that microcephaly has not occurred to nearly the same extent in other parts of Brazil or in Colombia and other countries where transmission of Zika has taken place on a large scale.
We need to be justly concerned about the mosquito-borne transmission of flaviviruses in general and of Zika, dengue, and Chikungunya viruses in particular, since the latter are now endemic in many parts of the Caribbean, Africa, India, and elsewhere. And we should also hope that the novel hormonally-based strategies aimed at sterilization of the Aedes aegypti mosquitos that transmit these viruses will be successful.
Perhaps it is not surprising, given their transmission routes and acuity compared to HIV, that multiple differences exist between the flaviviruses and HIV in terms of strategies aimed at control of these diseases. The most important medical advances in regard to HIV have undoubtedly been in the area of antiretroviral (ARV) drug development, and there is little doubt that the ARVs have saved the lives of millions of people around the world [2]. At the same time ARVs have also proven useful in pre-exposure prophylaxis (PrEP), which is a concept whereby the same drugs that work in treatment can also be used to reduce the likelihood of infection [34]. Furthermore, the development of ARVs has also spawned the principle known as Treatment as Prevention, whereby it is hoped that the successful treatment of HIV-infected persons will lower their levels of plasma viremia to non-detectability, with the consequence that successfully-treated persons will no longer be infectious for their sexual contacts [5]. These advances have even propelled the World Health Organization to propose a plan termed ‘90–90–90’ aimed at ending the HIV epidemic by the year 2030. This concept articulates that we will identify 90% of the world’s HIV infected population, and then go on to use ARVs to treat 90% of those who test positive, and thereby successfully reduce viral load to non-detectability in 90% of the latter.
Although most observers agree that these are laudable goals, they question whether the identification of 90% of the world’s HIV infected subjects will be possible when estimates suggest that 40% of infected people are unaware of their HIV status and it is known, for example, that many persons who are at high risk for acquisition of HIV are often themselves reluctant to take an HIV test. Perhaps we will need to find ways of incentivizing people to be tested for HIV if we are to achieve the first 90 in the WHO scheme [6]. It will probably also be necessary to find ways of incentivizing care-givers as well so that they routinely offer the test and “insist” that it be used.
In contrast, most observers agree that the best way to control Zika, dengue and Chikungunya probably revolves around the development of safe and effective preventive vaccines. For example, how could we contemplate using a potential new anti-Zika drug to treat infected pregnant women, if we did not know with certainty that such a drug did not itself cause birth defects? The same can probably be said for drugs that might block the replication of dengue and Chikungunya, although there might be rationale for the use of such products in non-pregnant populations, and, of course, the use of antiviral compounds might help to limit transmission from humans to Aedes aegypti mosquitos and help to break the chain of epidemic transmission. Hopefully, vaccines and related approaches such as the use of passively transfused antibodies will soon be available to help control Zika infection. Thus, the approaches that need to be developed to arrest flavivirus transmission may differ significantly from those that have been used to interfere with transmission of HIV.
The tragedy of Zika for a pregnant mother, her affected infant and the wider family is not something to dismiss lightly. It is good news that this is a relatively uncommon complication but it is no less terrible for that. At the same time, we should not lose sight of the fact that the worldwide burden of HIV disease continues to expand, in part because so many people have been saved by ARVs. It is estimated that as many as 38 million people worldwide are now living with HIV. Sadly, a number almost equal to this are thought to already have died of HIV infection, making the epidemic one of the worst to have ever affected humankind. There are still several million new HIV cases occurring annually, and the problem of HIV drug-resistance in developing country settings is on the rise and poses a real threat to the success of the WHO 90–90–90 goal to end the epidemic. On World AIDS Day, December 1, let us turn our attention with renewed energy toward finding ways of ending the HIV epidemic as well as other infectious diseases that continue to take a horrible toll, often of the most vulnerable and disadvantaged.

Declarations

Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.

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World AIDS Day at BioMed Central || BioMed Central

BioMed Central – The Open Access Publisher
World AIDS Day 2016
Thursday 1st December

Dear Prof CERASALE MORTEO,

BioMed Central is pleased to support World AIDS Day. Despite much progress being made in recent years, according to UNAIDS and the WHO:
There were 2.1 million new HIV infections worldwide in 2015
1.8 million children are living with HIV/AIDS globally
An estimated 54% of those infected with HIV do not know their status

As the original open access publisher, we are proud to have made crucial HIV/AIDS research freely available to the public for more than 15 years. Visit our World AIDS Day homepage to view our essential articles, relevant journals, thematic series, and other resources. We are also sharing a selection of hand-picked articles and an invitation to submit to a new series below.



Call for Papers: Substance use and the HIV care continuum
Addiction Science & Clinical Practice invites you to submit to a new thematic series: Substance use and the HIV care continuum. Edited by Dr P. Todd Korthuis and Dr Jennifer Edelman, the series seeks manuscripts that address the impact of drug and/or alcohol use on the HIV care cascade and specifically the role of substance use disorder screening and treatment as a means of meeting the 90-90-90 goal.
This collection is sponsored by the NIH which is covering all article-processing charges for accepted articles. Read more...

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11/30/2016 04:55 PM EST

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