Centre for Virus and Vaccine Research, School of Medical and Life Sciences, Sunway University, 5, Jalan Universiti, Selangor 47500, Bandar Sunway, Malaysia.
Pharm Res. 2023 Mar;40(3):617-632. doi: 10.1007/s11095-023-03486-0. Epub 2023 Mar 3.
Peptides are a rapid-growing class of therapeutics with unique and desirable physicochemical properties. Due to disadvantages such as low membrane permeability and susceptibility to proteolytic degradation, peptide-based drugs have limited bioavailability, a short half-life, and rapid in vivo elimination. Various strategies can be applied to improve the physicochemical properties of peptide-based drugs to overcome limitations such as limited tissue residence time, metabolic instability, and low permeability. Applied strategies including backbone modifications, side chain modifications, conjugation with polymers, modification of peptide termini, fusion to albumin, conjugation with the Fc portion of antibodies, cyclization, stapled peptides, pseudopeptides, cell-penetrating peptide conjugates, conjugation with lipids, and encapsulation in nanocarriers are discussed.
肽是一类快速发展的治疗药物,具有独特且理想的理化特性。由于膜通透性低和易被蛋白水解降解等缺点,基于肽的药物生物利用度有限,半衰期短,体内消除迅速。可以应用各种策略来改善基于肽的药物的理化性质,以克服组织停留时间有限、代谢不稳定和通透性低等限制。应用的策略包括主链修饰、侧链修饰、与聚合物缀合、修饰肽末端、与白蛋白融合、与抗体的 Fc 部分缀合、环化、订书肽、假肽、穿透肽缀合物、与脂质缀合以及纳米载体包封。