hiv screening and care: clinical outcomes, transmission and cost a. david paltiel, phd yale...
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HIV Screening and Care:
Clinical Outcomes, Transmission and Cost
A. David Paltiel, PhDYale University School of Medicine
May 9, 2007National Institute on Drug Abuse
Bethesda, MD
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• Common misconceptions about cost-effectiveness analysis
• Findings from recent evaluations
• Findings on the survival benefits of AIDS treatments in the United States
Road Map
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Cost-effectiveness: Common Misconception #1
“Cost-Effective” = “Cheap”
“Cost-Effective” = “Saves Money”
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• comparative assessment of “worth” or “return on investment”
• the cost effectiveness ratio:
Cost-effectiveness is about Value for Money
Net Change in Cost ($)
Net Change in Health Effect (LY; QALY)
• can be employed to compare competing claims on scarce resources
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Cost-effectiveness of Chronic Disease Screening
C-E ratioScreening Program ($/QALY) Reference
Hypertension $80,400 Littenberg asymptomatic men >20 y/o Ann Intern Med 1990
Diabetes Mellitus, Type 2 $70,000 CDC C-E Study Grp. fasting plasma glucose, adults >25 y/o JAMA 1998
Colon cancer $57,700 Frazier FOBT + SIG q5y, adults 50–85 y/o JAMA 2000
Breast cancer $57,500 Salzmann annual mammogram, women 50–69 y/o Ann Intern Med 1997
HIV $50,000 Paltiel routine, rapid testing in health settings Ann Intern Med 2006
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Cost-effectiveness: Common Misconception #2
If an intervention is cost-effective, providers should be willing to pay for it.
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Cost-effectiveness does not address the question of who should pay
• Cost-effectiveness analysis is typically performed from a societal perspective
• Accounts for all costs and benefits, regardless of who incurs or enjoys them.
• Cost-effective from the societal perspective does not imply cost-effective from the hospital (or individual or provider) perspective.
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Cost-effectiveness: Common Misconception #3
Cost-effectiveness geeks like Paltiel think they have the right answer. *
* This may not be a misconception.
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C-E: Only one of many criteria for judging the appropriateness of screening
1) Important health problem.
2) Natural history well understood.3) Detectable early stage.
4) More benefit from early treatment.
5) Acceptable test.
6) Intervals for repeating the test determined.
7) Adequate health service provision made for the extra clinical workload resulting from screening.
8) Physical/psychological risks less than benefits.
9) Costs balanced against the benefits.
Wilson JM, Jungner G. Principles and practice of screening for disease. Geneva: World Health Organization, 1968.
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• Common misconceptions about cost-effectiveness analysis
• Findings from recent evaluations
• Findings on the survival benefits of AIDS treatments in the United States
Road Map
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Acknowledgments
Rochelle Walensky, MD, MPHBruce Schackman, PhD,
George Seage, DSc, MPHSue Goldie, MD
Milton Weinstein, PhDDouglas Owens, MDGillian Sanders, PhDElena Losina, PhD
Kenneth Freedberg, MD, MSc
NIDA Grant R01-DA015612Making Better Decisions: Policy Modeling for AIDS & Drug Abuse
Project Officer: Peter Hartsock, PhD
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A model-based approach*
• Computer simulations of the natural history and detection of HIV disease.
• Capture effects of CD4, HIV-RNA, OI incidence, and the impact of ART and other therapies.
• Assemble data from observational cohorts, clinical trials, cost surveys, and other published sources.
• Project outcomes: life expectancy, quality-adjusted life-expectancy, cost, cost-effectiveness.
* So many assumptions/limitations, so little time…
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C-E ratioScreening Program ($/QALY) Reference
Inpatient antibody testing $38,600 Walensky Am J Med 2005
“Routine” standard antibody testing in populations with prevalence = 1% $41,700 Sanders NEJM 2005
“One-time” rapid antibody testing in populations with prevalence = 0.2% $50,000 Paltiel Ann Intern Med
2006
Standard antibody test, every 5 years, in high-risk populations $50,000 Paltiel NEJM 2005
Routine HIV screening is cost effective, even in very low-risk populations
Routine HIV screening is cost effective, even in very low-risk populations
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Why HIV screening is cost-effective
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0%
10%
20%
30%
40%
50%
60%
70%
80%
90%
100%
CurrentPractice
CurrentPractice
and Single Rapid
CurrentPractice
and RapidEvery 5 Years
CurrentPractice
and RapidEvery 3 Years
CurrentPractice
and Annual Rapid
Mechanism of Detection
Background screen
Screening
Never detected
OI Presentation
1. It changes the mechanism of HIV detection
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2. It results in earlier detection of illness
Paltiel, NEJM, 2005
CurrentPractice
CurrentPractice
& One-Time EIA
CurrentPractice
& EIA Every 5 Years
CurrentPractice
& EIA Every 3 Years
CurrentPractice
&Annual EIA
CD4 Count at Detection Prevalent Cases 154 210 211 213 227
Incident Cases 347 347 397 421 473
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3. Earlier detection improves survival
Paltiel, NEJM, 2005
CurrentPractice
CurrentPractice
& One-Time EIA
CurrentPractice
& EIA Every 5 Years
CurrentPractice
& EIA Every 3 Years
CurrentPractice
&Annual EIA
CD4 Count at Detection Prevalent Cases 154 210 211 213 227
Incident Cases 347 347 397 421 473
Discounted Survival (months) 254.41 254.88 256.17 256.66 257.41
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4. And while it does increase costs…
Paltiel, NEJM, 2005
CurrentPractice
CurrentPractice
& One-Time EIA
CurrentPractice
& EIA Every 5 Years
CurrentPractice
& EIA Every 3 Years
CurrentPractice
&Annual EIA
CD4 Count at Detection Prevalent Cases 154 210 211 213 227
Incident Cases 347 347 397 421 473
Discounted Survival (months) 254.41 254.88 256.17 256.66 257.41
Per Person, Discounted Lifetime Costs ($)32,700 33,800 37,300 38,900 41,700
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CurrentPractice
CurrentPractice
& One-Time EIA
CurrentPractice
& EIA Every 5 Years
CurrentPractice
& EIA Every 3 Years
CurrentPractice
&Annual EIA
CD4 Count at Detection Prevalent Cases 154 210 211 213 227
Incident Cases 347 347 397 421 473
Discounted Survival (months) 254.41 254.88 256.17 256.66 257.41
Per Person, Discounted Lifetime Costs ($)32,700 33,800 37,300 38,900 41,700
Cost-effectiveness ($/QALY) --- 36,000 50,000 63,000 100,000
4. …it’s worth it!
Paltiel, NEJM, 2005
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$30,000
$40,000
$50,000
$60,000
$70,000
$80,000
$90,000
0.1 1 10 100
Prevalence (%)
CE
Ra
tio (
$/Q
AL
Y)
Test Cost = $104Test Cost = $52
Baseline: Test Cost = $26 Test Cost = $1
Walensky, Am J Med 2005
Insensitivity to both undetected prevalence and the cost of the test
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What about the secondary transmission benefits of HIV screening?
Paltiel, Ann Int Med, 2006
• Population-level effects are comparatively small.
• The principal costs and benefits of HIV screening are those that accrue to the infected individual.
• Individual-level outcomes alone justify expansion of HIV screening in all but the lowest-risk populations.
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Implicit Assumption:Adequate linkage to lifesaving care
1) Important health problem.
2) Natural history well understood.
3) Detectable early stage.
4) More benefit from early treatment.
5) Acceptable test.
6) Intervals for repeating the test determined.
7) Adequate health service provision made for the extra clinical workload resulting from screening.
8) Physical/psychological risks less than benefits.
9) Costs balanced against the benefits.
Wilson JM, Jungner G. Principles and practice of screening for disease. Geneva: World Health Organization, 1968.
![Page 23: HIV Screening and Care: Clinical Outcomes, Transmission and Cost A. David Paltiel, PhD Yale University School of Medicine May 9, 2007 National Institute](https://reader035.vdocuments.mx/reader035/viewer/2022062407/56649dc75503460f94abbf98/html5/thumbnails/23.jpg)
• Common misconceptions about cost-effectiveness analysis
• Findings from recent evaluations
• Findings on the survival benefits of AIDS treatments in the United States
Road Map
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Why bother testing?
Walensky, J Infect Dis 2006
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Timeline of Major HIV Interventions
0
1
2
3
4
5
6
7
1989
1990
1991
1992
1993
1994
1995
1996
1997
1998
1999
2000
2001
2002
2003
PCP Prophylaxis
MAC Prophylaxis
pMTCT
ART Era 1
ART Era 2
ART Era 3
ART Era 4
Walensky, J Infect Dis 2006
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0%
10%
20%
30%
40%
50%
60%
70%
80%
90%
100%
0 5 10 15 20 25 30 35 40
Years from treatment start
% A
liv
e
Untreated HIV/AIDS
1989 - PCP
1993 - PCP/MAC
1996 - PCP/MAC + ART 1
1998 - PCP/MAC + ART 2
2000 - PCP/MAC + ART 3
2003 - PCP/MAC + ART 4
AIDS Survival by Era
Walensky, J Infect Dis 2006
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Survival Gains Compared withVarious Disease Interventions
0
20
40
60
80
100
120
140
160
Chemotherapy Adjuvantchemotherapy
Acute MI BMT OI Proph ART
Non-small-celllung cancer
Node + breastcancer
Coronaryartery disease
Relapsed non-Hodgkinslymphoma
AIDS
Pe
r P
ers
on
Su
rviv
al G
ain
s (m
on
ths)
7
29
50
92
3
160
Walensky, J Infect Dis 2006
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“A celebration with challenges” – Sten Vermund
• At least 3 million years of life have been saved in the US as a direct result of AIDS patient care
• An additional 740,000 years of life might have been saved, had all patients with AIDS received appropriate treatment on diagnosis.
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Not every one has shared equally in the gains
0
1
2
3
4
5
6
7
Whitewomen
Whitemen
Blackmen
Hispanicmen
Blackwomen
Hispanicwomen
Yea
rs o
f li
fe lo
st
Late initiationPremature discontinuation
Losina, CROI 2006
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Conclusions
• HIV screening delivers better value than many other diagnostic tests in routine use.
• Our findings support the CDC recommendation of routine HIV testing for all adults in all health care setting in the US.
• Not all Americans share equally in the huge survival benefits of AIDS therapy. Women from racial and ethnic minorities are at particular risk.
• Effective HIV testing programs must be accompanied by a simultaneous commitment to improved linkage to care and to paying for that care.