Department of Pharmaceutical Chemistry & Quality Assurance, SVKM's Dr. Bhanuben Nanavati College of Pharmacy, Vile Parle (W), Mumbai 400056, Maharashtra, India.
C.U. Shah College of Pharmacy, SNDT Women's University, Santacruz (W), Mumbai 400049, Maharashtra, India.
Crit Rev Ther Drug Carrier Syst. 2023;40(2):43-82. doi: 10.1615/CritRevTherDrugCarrierSyst.2022041853.
Unmodified nanocarriers used in the chemotherapy of cancers and various infectious diseases exhibit prolonged blood circulation time, prevent enzymatic degradation and increase chemical stability of encapsulated therapeutics. However, off-target effect and lack of specificity associated with unmodified nanoparticles (NPs) limit their applications in the health care system. Mannose (Man) receptors with significant overexpression on antigen-presenting cells and macrophages are among the most admired targets for cancer and anti-infective therapeutics. Therefore, development of Man functionalized nanocarriers targeting Man receptors, for target specific drug delivery in the chemotherapy have been extensively studied. Present review expounds diverse Man-conjugated NPs with their potential for targeted drug delivery, improved biodistribution profiles and localization. Additionally, the review gives detailed account of the interactions of mannosylated NPs with various biological systems and their characterization not discussed in earlier published reports is discussed.
未修饰的纳米载体在癌症和各种传染病的化学疗法中表现出延长的血液循环时间,防止酶降解并增加包裹治疗剂的化学稳定性。然而,与未修饰的纳米颗粒(NPs)相关的非靶向效应和缺乏特异性限制了它们在医疗保健系统中的应用。在抗原呈递细胞和巨噬细胞上高度表达的甘露糖(Man)受体是癌症和抗感染治疗的最受关注的目标之一。因此,已经广泛研究了针对 Man 受体的 Man 功能化纳米载体的开发,用于化疗中的靶向药物递送。本综述阐述了各种具有靶向药物递送、改善生物分布谱和定位潜力的 Man 缀合 NPs。此外,该综述详细介绍了甘露糖化 NPs 与各种生物系统的相互作用及其特征,这些内容在以前发表的报告中没有讨论。