Edagwa Benson, McMillan JoEllyn, Sillman Brady, Gendelman Howard E
a Department of Pharmacology and Experimental Neuroscience , University of Nebraska Medical Center , Omaha , NE , USA.
b Departments of Pharmaceutical Sciences , University of Nebraska Medical Center , Omaha , NE , USA.
Expert Opin Drug Deliv. 2017 Nov;14(11):1281-1291. doi: 10.1080/17425247.2017.1288212. Epub 2017 Feb 6.
Advances in long-acting antiretroviral therapy (ART) can revolutionize current HIV/AIDS treatments. We coined the term 'long-acting slow effective release ART' (LASER ART) to highlight the required formulation properties of slow drug dissolution, poor water-solubility, bioavailability, little-to-no off-target toxicities and improved regimen adherence. Drug carrier technologies characterized by high antiretroviral drug (ARV) payloads in a single carrier improve the pharmacokinetic and pharmacodynamic profiles. The surface modifications of ARV carriers target monocyte-macrophages and facilitate drug transport across physiological barriers and to virus-susceptible CD4 + T cells. Areas covered: The review highlights developments of reservoir-targeted LASER ART for improved therapeutic outcomes. Such nanoART delivery platforms include decorated multifunctional nano- and micro-particles, prodrugs and polymer conjugates. Therapeutic strategies such as gene-editing technologies boost ART effectiveness. Expert opinion: The persistence of HIV-1 in lymphoid, gut and nervous system reservoirs poses a challenge to viral eradication. Emerging slow-release drug carriers can target intracellular pathogens, activate antiviral immunity, promote genome editing, sustain drug depots and combine therapeutics with image contrast agents, and can meet unmet clinical needs for HIV-infected patients. Such efforts will bring the medicines to reservoir sites and accelerate viral clearance.
长效抗逆转录病毒疗法(ART)的进展能够彻底改变当前的艾滋病毒/艾滋病治疗方法。我们创造了“长效缓释抗逆转录病毒疗法”(LASER ART)这一术语,以突出所需的制剂特性,即药物溶解缓慢、水溶性差、生物利用度高、几乎没有脱靶毒性以及改善治疗方案依从性。以单一载体中高抗逆转录病毒药物(ARV)载量为特征的药物载体技术改善了药代动力学和药效学特征。抗逆转录病毒载体的表面修饰靶向单核细胞-巨噬细胞,并促进药物跨生理屏障运输至病毒易感的CD4 + T细胞。涵盖领域:本综述重点介绍了靶向储库的LASER ART的进展,以改善治疗效果。此类纳米ART递送平台包括修饰的多功能纳米和微粒、前药和聚合物缀合物。基因编辑技术等治疗策略可提高ART的有效性。专家观点:HIV-1在淋巴、肠道和神经系统储库中的持续存在对病毒根除构成挑战。新兴的缓释药物载体可靶向细胞内病原体、激活抗病毒免疫、促进基因组编辑、维持药物储库,并将治疗与图像造影剂相结合,可满足艾滋病毒感染患者未满足的临床需求。这些努力将使药物到达储库部位并加速病毒清除。