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- Human Immunodeficiency Virus Model
Human Immunodeficiency Virus Model
Visualization of the enveloped, spherical human immunodeficiency virus (HIV) with surface glycoproteins.
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Description
Rendered as an enveloped, roughly spherical virion, HIV is presented with a lipid bilayer studded by prominent surface glycoprotein spikes corresponding to Env trimers (gp120 externally with gp41 as the transmembrane stalk). Beneath the envelope, the matrix layer (p17) would sit immediately deep to the membrane, lining the inner surface. Deeper still, a conical capsid (p24) encloses two copies of positive-sense single-stranded RNA and the associated nucleocapsid proteins, with viral enzymes (reverse transcriptase, integrase, protease) packaged within the core. Spikes dominate the silhouette. That surface architecture is the point of entry. gp120 binding to CD4 followed by co-receptor engagement (CCR5 in early infection, often shifting toward CXCR4 in later disease) drives gp41-mediated fusion, a sequence that maps directly to where broadly neutralizing antibodies must land and where entry inhibitors act. For teaching, this model helps clarify why the virion’s envelope is fragile in the environment yet immunologically formidable in vivo, given glycan shielding and conformational masking on Env. Use it in virology and immunology lectures when introducing retroviral structure, replication, and antiretroviral drug targets (reverse transcriptase, integrase, protease, and fusion/attachment steps), or in infectious disease texts discussing transmission biology and why sterilizing immunity has been difficult to achieve. It also fits pharmaceutical and public health materials that need a recognizable HIV particle without tying the concept to a specific host body region. Anatomical accuracy verified by SciePro's Medical Advisory Board.