Fazal Tanzeela, Murtaza Bibi Nazia, Shah Mazloom, Iqbal Shahid, Rehman Mujaddad-Ur, Jaber Fadi, Dera Ayed A, Awwad Nasser S, Ibrahium Hala A
Department of Chemistry, Abbottabad University of Science and Technology Pakistan
Department of Zoology, Abbottabad University of Science and Technology Pakistan.
RSC Adv. 2023 Jul 31;13(33):23087-23121. doi: 10.1039/d3ra03369d. eCollection 2023 Jul 26.
Targeted delivery of drug molecules to diseased sites is a great challenge in pharmaceutical and biomedical sciences. Fabrication of drug delivery systems (DDS) to target and/or diagnose sick cells is an effective means to achieve good therapeutic results along with a minimal toxicological impact on healthy cells. Biopolymers are becoming an important class of materials owing to their biodegradability, good compatibility, non-toxicity, non-immunogenicity, and long blood circulation time and high drug loading ratio for both macros as well as micro-sized drug molecules. This review summarizes the recent trends in biopolymer-based DDS, forecasting their broad future clinical applications. Cellulose chitosan, starch, silk fibroins, collagen, albumin, gelatin, alginate, agar, proteins and peptides have shown potential applications in DDS. A range of synthetic techniques have been reported to design the DDS and are discussed in the current study which is being successfully employed in ocular, dental, transdermal and intranasal delivery systems. Different formulations of DDS are also overviewed in this review article along with synthesis techniques employed for designing the DDS. The possibility of these biopolymer applications points to a new route for creating unique DDS with enhanced therapeutic qualities for scaling up creative formulations up to the clinical level.
将药物分子靶向递送至病变部位是制药和生物医学领域面临的巨大挑战。制备能够靶向和/或诊断病变细胞的药物递送系统(DDS)是实现良好治疗效果同时对健康细胞产生最小毒理学影响的有效手段。生物聚合物因其生物可降解性、良好的相容性、无毒性、无免疫原性、较长的血液循环时间以及对大分子和小分子药物分子的高载药率,正成为一类重要的材料。本综述总结了基于生物聚合物的DDS的最新趋势,预测了它们在未来广泛的临床应用。纤维素、壳聚糖、淀粉、丝素蛋白、胶原蛋白、白蛋白、明胶、藻酸盐、琼脂、蛋白质和肽已在DDS中显示出潜在应用。据报道,一系列合成技术可用于设计DDS,本文对此进行了讨论,这些技术已成功应用于眼部、牙科、透皮和鼻内给药系统。本文还概述了DDS的不同制剂以及用于设计DDS的合成技术。这些生物聚合物应用的可能性为创建具有增强治疗特性的独特DDS指明了一条新途径,以便将创新制剂扩大到临床水平。