Dynamic models for estimating the effect of HAART on CD4 in observational studies: Application to the Aquitaine Cohort and the Swiss HIV Cohort Study.

Prague, Mélanie; Commenges, Daniel; Gran, Jon Michael; Ledergerber, Bruno; Young, Jim; Thiébaut, Rodolphe; Furrer, Hansjakob (2017). Dynamic models for estimating the effect of HAART on CD4 in observational studies: Application to the Aquitaine Cohort and the Swiss HIV Cohort Study. Biometrics, 73(1), pp. 294-304. The International Biometric Society 10.1111/biom.12564

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Highly active antiretroviral therapy (HAART) has proved efficient in increasing CD4 counts in many randomized clinical trials. Because randomized trials have some limitations (e.g., short duration, highly selected subjects), it is interesting to assess the effect of treatments using observational studies. This is challenging because treatment is started preferentially in subjects with severe conditions. This general problem had been treated using Marginal Structural Models (MSM) relying on the counterfactual formulation. Another approach to causality is based on dynamical models. We present three discrete-time dynamic models based on linear increments models (LIM): the first one based on one difference equation for CD4 counts, the second with an equilibrium point, and the third based on a system of two difference equations, which allows jointly modeling CD4 counts and viral load. We also consider continuous-time models based on ordinary differential equations with non-linear mixed effects (ODE-NLME). These mechanistic models allow incorporating biological knowledge when available, which leads to increased statistical evidence for detecting treatment effect. Because inference in ODE-NLME is numerically challenging and requires specific methods and softwares, LIM are a valuable intermediary option in terms of consistency, precision, and complexity. We compare the different approaches in simulation and in illustration on the ANRS CO3 Aquitaine Cohort and the Swiss HIV Cohort Study.

Item Type:

Journal Article (Original Article)

Division/Institute:

04 Faculty of Medicine > Department of Haematology, Oncology, Infectious Diseases, Laboratory Medicine and Hospital Pharmacy (DOLS) > Clinic of Infectiology

UniBE Contributor:

Furrer, Hansjakob

Subjects:

600 Technology > 610 Medicine & health

ISSN:

0006-341X

Publisher:

The International Biometric Society

Language:

English

Submitter:

Annelies Luginbühl

Date Deposited:

19 Mar 2018 14:44

Last Modified:

05 Dec 2022 15:10

Publisher DOI:

10.1111/biom.12564

PubMed ID:

27461460

Uncontrolled Keywords:

Dynamic mechanistic models Linear increment models (LIM) Marginal structural models (MSM) Non-linear mixed effect models (NLME) Observational study Ordinary differential equation (ODE)

BORIS DOI:

10.7892/boris.110636

URI:

https://boris.unibe.ch/id/eprint/110636

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