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February 21, 2026The Brazilian Journal of Infectious Diseases0 citationsOpen Access

Molecular factors associated with lung cancer in people living with HIV

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IBIvonne Denisse Bautista-RojasJFJesus Figueroa-NavarreteDRDiana Laura Reyes-Hernandez

Key Points

  • This research aims to uncover molecular factors contributing to the risk of lung cancer in people living with HIV.
  • Analyzed the impact of HIV proteins on cellular processes like apoptosis and immune evasion.
  • Investigated persistent HIV reservoirs in lung tissue and their effects on immune dysregulation.
  • Explored the role of extracellular vesicles in activating oncogenic pathways.
  • Examined the disruption of tumor suppressor genes and epigenetic changes.
  • Identified HIV proteins that affect cell cycle control and promote a pro-tumorigenic environment.
  • Demonstrated that HIV integration compromises tumor suppressor genes such as PTEN.
  • Found that HIV-resident cells contribute to sustained inflammation and dysregulation in lung tissue.
  • Recognized the potential for early biomarker discovery and targeted interventions in lung cancer prevention.

Abstract

Lung cancer is the most common Non-AIDS-Defining Cancer (NADC) and a leading cause of cancer-related death in People Living With HIV (PLWH). Despite antiretroviral therapy, PLWH are at higher risk of developing cancer compared to the general population. This increased susceptibility reflects a combination of immunosuppression, chronic inflammation, smoking, and direct oncogenic effects of HIV proteins. Tat, gp120, and Nef modulate cell cycle control, apoptosis, epithelial-mesenchymal transition, angiogenesis, and immune evasion. Persistent HIV reservoirs in lung tissue (mainly effector memory CD4⁺ T-cells and alveolar macrophages) sustain local immune dysregulation. Extracellular vesicles carrying viral proteins or nucleic acids activate oncogenic pathways, while HIV integration disrupts tumor suppressor genes such as PTEN and induces epigenetic silencing of regulators like P16 INK4a . These alterations, together with oxidative stress, promote a pro-tumorigenic microenvironment. A deeper understanding of these mechanisms may enable early biomarker identification and the design of targeted preventive and therapeutic strategies for lung cancer in PLWH.

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Cite This Study

Bautista-Rojas et al. (2026) studied this question.

synapsesocial.com/papers/69994c80873532290d020ffchttps://doi.org/10.1016/j.bjid.2026.105791
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