Li Jingyuan, Xiang Hong, Zhang Qian, Miao Xiaoqing
Marine College, Shandong University, Weihai 264209, China.
SDU-ANU Joint Science College, Shandong University, Weihai 264209, China.
Pharmaceuticals (Basel). 2022 May 14;15(5):602. doi: 10.3390/ph15050602.
Materials derived from natural plants and animals have great potential for transdermal drug delivery. Polysaccharides are widely derived from marine, herbal, and microbial sources. Compared with synthetic polymers, polysaccharides have the advantages of non-toxicity and biodegradability, ease of modification, biocompatibility, targeting, and antibacterial properties. Currently, polysaccharide-based transdermal drug delivery vehicles, such as hydrogel, film, microneedle (MN), and tissue scaffolds are being developed. The addition of polysaccharides allows these vehicles to exhibit better-swelling properties, mechanical strength, tensile strength, etc. Due to the stratum corneum's resistance, the transdermal drug delivery system cannot deliver drugs as efficiently as desired. The charge and hydration of polysaccharides allow them to react with the skin and promote drug penetration. In addition, polysaccharide-based nanotechnology enhances drug utilization efficiency. Various diseases are currently treated by polysaccharide-based transdermal drug delivery devices and exhibit promising futures. The most current knowledge on these excellent materials will be thoroughly discussed by reviewing polysaccharide-based transdermal drug delivery strategies.
源自天然植物和动物的材料在经皮给药方面具有巨大潜力。多糖广泛来源于海洋、草药和微生物。与合成聚合物相比,多糖具有无毒、可生物降解、易于改性、生物相容性、靶向性和抗菌特性等优点。目前,正在开发基于多糖的经皮给药载体,如水凝胶、薄膜、微针(MN)和组织支架。多糖的加入使这些载体表现出更好的溶胀性能、机械强度、拉伸强度等。由于角质层的阻力,经皮给药系统无法如预期那样高效地递送药物。多糖的电荷和水合作用使其能够与皮肤发生反应并促进药物渗透。此外,基于多糖的纳米技术提高了药物利用效率。目前,基于多糖的经皮给药装置可治疗多种疾病,并展现出广阔前景。通过回顾基于多糖的经皮给药策略,将全面讨论关于这些优异材料的最新知识。