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One or more keywords matched the following items that are connected to Shen, Lin
Item TypeName
Concept HIV
Concept HIV Integrase Inhibitors
Concept HIV Long-Term Survivors
Concept HIV Fusion Inhibitors
Concept HIV Reverse Transcriptase
Concept HIV Infections
Concept HIV Envelope Protein gp41
Concept HIV Long Terminal Repeat
Concept HIV Protease Inhibitors
Concept Anti-HIV Agents
Concept HIV-1
Academic Article A quantitative basis for antiretroviral therapy for HIV-1 infection.
Academic Article A critical subset model provides a conceptual basis for the high antiviral activity of major HIV drugs.
Academic Article Dose-response curve slope is a missing dimension in the analysis of HIV-1 drug resistance.
Academic Article Consistent inhibition of HIV-1 replication in CD4+ T cells by acyclovir without detection of human herpesviruses.
Academic Article Unstimulated primary CD4+ T cells from HIV-1-positive elite suppressors are fully susceptible to HIV-1 entry and productive infection.
Academic Article Achieving a quantitative understanding of antiretroviral drug efficacy.
Academic Article New approaches for quantitating the inhibition of HIV-1 replication by antiviral drugs in vitro and in vivo.
Academic Article A novel method for determining the inhibitory potential of anti-HIV drugs.
Academic Article Isolation of a cellular factor that can reactivate latent HIV-1 without T cell activation.
Academic Article Viral reservoirs, residual viremia, and the potential of highly active antiretroviral therapy to eradicate HIV infection.
Academic Article Preferential cytolysis of peripheral memory CD4+ T cells by in vitro X4-tropic human immunodeficiency virus type 1 infection before the completion of reverse transcription.
Academic Article Dose-response curve slope sets class-specific limits on inhibitory potential of anti-HIV drugs.
Academic Article Decay dynamics of HIV-1 depend on the inhibited stages of the viral life cycle.
Academic Article The HBV drug entecavir - effects on HIV-1 replication and resistance.
Academic Article Discovery of entry inhibitors for HIV-1 via a new de novo protein design framework.
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