Li Jiaying, Tang Huan, Zhou Xiaoyi, Ni Zijun, Liang Yuxin, Sun Xinyue, Zhuang Xun
School of Public Health, Nantong Third People's Hospital, Affiliated Nantong Hospital 3 of Nantong University, Nantong University, Nantong, China.
Nantong Center for Disease Control and Prevention, Nantong, China.
Front Immunol. 2025 Sep 1;16:1670423. doi: 10.3389/fimmu.2025.1670423. eCollection 2025.
Acquired Immunodeficiency Syndrome (AIDS), caused by the Human Immunodeficiency Virus (HIV), is a global infectious disease that remains a significant global health challenge. Although antiretroviral therapy (ART) has significantly reduced HIV-1-related morbidity and mortality, it cannot eradicate viral reservoirs latent in host cells and long-term use of ART is also associated with issues such as drug toxicity, drug resistance, and poor patient compliance. Recent achievements in biomaterials have provided new ideas and tools for AIDS prevention, diagnosis, and treatment. Therefore, this review aims to summarize the latest research progress on biomaterials for immune cell functional regulation and immune activation strategies in HIV-1 prevention, control, and treatment. These approaches include enhancing the functions of CD8+ T cells and macrophages and synergizing with the targeted delivery and immunomodulatory capabilities of biomaterials to achieve viral clearance and immune reconstitution. Current challenges and the great potentials of biomaterials in drug delivery, vaccine development, and physical barriers for HIV-1 infection are discussed, along with future perspectives. By systematically reviewing relevant research findings, this review may provide theoretical basis and technical tools for promoting the clinical translation and application of biomaterials for HIV-1 infection.
获得性免疫缺陷综合征(艾滋病)由人类免疫缺陷病毒(HIV)引起,是一种全球性传染病,仍然是全球重大的健康挑战。尽管抗逆转录病毒疗法(ART)显著降低了与HIV-1相关的发病率和死亡率,但它无法根除潜伏在宿主细胞中的病毒储存库,而且长期使用ART还存在药物毒性、耐药性和患者依从性差等问题。生物材料领域的最新进展为艾滋病的预防、诊断和治疗提供了新的思路和工具。因此,本综述旨在总结生物材料在HIV-1预防、控制和治疗中用于免疫细胞功能调节及免疫激活策略的最新研究进展。这些方法包括增强CD8+ T细胞和巨噬细胞的功能,并与生物材料的靶向递送和免疫调节能力协同作用,以实现病毒清除和免疫重建。本文还讨论了生物材料在药物递送、疫苗开发以及HIV-1感染物理屏障方面的当前挑战和巨大潜力,以及未来展望。通过系统回顾相关研究结果,本综述可为推动生物材料在HIV-1感染临床转化和应用提供理论依据和技术工具。