Navigating Latency-Inducing Viral Infections: Therapeutic Targeting and Nanoparticle Utilization.

IF 8.1 Q1 ENGINEERING, BIOMEDICAL Biomaterials research Pub Date : 2024-10-16 eCollection Date: 2024-01-01 DOI:10.34133/bmr.0078
Arathy Vasukutty, Yeonwoo Jang, Dongwan Han, Hansoo Park, In-Kyu Park
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Abstract

The investigation into viral latency illuminates its pivotal role in the survival strategies of diverse viruses, including herpesviruses, HIV, and HPV. This underscores the delicate balance between dormancy and the potential for reactivation. The study explores the intricate mechanisms governing viral latency, encompassing episomal and proviral forms, and their integration with the host's genetic material. This integration provides resilience against cellular defenses, substantially impacting the host-pathogen dynamic, especially in the context of HIV, with implications for clinical outcomes. Addressing the challenge of eradicating latent reservoirs, this review underscores the potential of epigenetic and genetic interventions. It highlights the use of innovative nanocarriers like nanoparticles and liposomes for delivering latency-reversing agents. The precision in delivery, capacity to navigate biological barriers, and sustained drug release by these nanocarriers present a promising strategy to enhance therapeutic efficacy. The review further explores nanotechnology's integration in combating latent viral infections, leveraging nanoparticle-based platforms for drug delivery, gene editing, and vaccination. Advances in lipid-based nanocarriers, polymeric nanoparticles, and inorganic nanoparticles are discussed, illustrating their potential for targeted, efficient, and multifunctional antiviral therapy. By merging a deep understanding of viral latency's molecular underpinnings with nanotechnology's transformative capabilities, this review underscores the promise of novel therapeutic interventions. These interventions have great potential for managing persistent viral infections, heralding a new era in the fight against diseases such as neuroHIV/AIDS, herpes, and HPV.

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潜伏诱导型病毒感染的导航:治疗靶向和纳米粒子利用。
对病毒潜伏期的研究揭示了病毒潜伏期在疱疹病毒、艾滋病病毒和人乳头瘤病毒等多种病毒生存策略中的关键作用。这凸显了病毒休眠与潜在再活化之间的微妙平衡。这项研究探索了支配病毒潜伏期的复杂机制,包括外显子和前病毒形式,以及它们与宿主遗传物质的整合。这种整合提供了抵御细胞防御的能力,对宿主与病原体之间的动态关系产生了重大影响,尤其是在艾滋病毒的情况下,对临床结果产生了影响。为了应对根除潜伏病毒库的挑战,本综述强调了表观遗传学和基因干预的潜力。它强调了使用创新的纳米载体(如纳米粒子和脂质体)来递送潜伏逆转剂。这些纳米载体的精确递送、穿越生物屏障的能力以及持续的药物释放为提高疗效提供了一种前景广阔的策略。该综述进一步探讨了纳米技术在抗击潜伏病毒感染方面的整合,利用基于纳米粒子的平台进行药物输送、基因编辑和疫苗接种。文章讨论了脂基纳米载体、聚合物纳米粒子和无机纳米粒子的研究进展,说明了它们在靶向、高效和多功能抗病毒治疗方面的潜力。通过深入了解病毒潜伏的分子基础和纳米技术的变革能力,本综述强调了新型治疗干预措施的前景。这些干预措施在控制持续性病毒感染方面具有巨大潜力,预示着抗击神经性艾滋病毒/艾滋病、疱疹和人乳头瘤病毒等疾病的新时代即将到来。
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