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Polymeric nanoparticles-based topical delivery systems for the treatment of dermatological diseases

机译:基于聚合物纳米粒子的局部给药系统,用于治疗皮肤病

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Human skin not only functions as a permeation barrier (mainly because of the stratum corneum layer) but also provides a unique delivery pathway for therapeutic and other active agents. These compounds penetrate via intercellular, intracellular, and transappendageal routes, resulting in topical delivery (into skin strata) and transdermal delivery (to subcutaneous tissues and into the systemic circulation). Passive and active permeation enhancement methods have been widely applied to increase the cutaneous penetration. The pathology, pathogenesis, and topical treatment approaches of dermatological diseases, such as psoriasis, contact dermatitis, and skin cancer, are then discussed. Recent literature has demonstrated that nanoparticles-based topical delivery systems can be successful in treating these skin conditions. The studies are reviewed starting with the nanoparticles based on natural polymers especially chitosan, followed by those made of synthetic, degradable (aliphatic polyesters), and nondegradable (polyacrylates) polymers; emphasis is given to nanospheres made of polymers derived from naturally occurring metabolites, the tyrosine-derived nanospheres (TyroSpheres?). In summary, the nanoparticles-based topical delivery systems combine the advantages of both the nanosized drug carriers and the topical approach, and are promising for the treatment of skin diseases. For the perspectives, the penetration of ultra-small nanoparticles (size smaller than 40 nm) into skin strata, the targeted delivery of the encapsulated drugs to hair follicle stem cells, and the combination of nanoparticles and microneedle array technologies for special applications such as vaccine delivery are discussed.
机译:人体皮肤不仅充当渗透屏障(主要是由于角质层),而且还为治疗和其他活性剂提供了独特的传递途径。这些化合物通过细胞间,细胞内和跨阑尾途径渗透,导致局部递送(进入皮肤层)和透皮递送(进入皮下组织并进入全身循环)。被动和主动渗透增强方法已被广泛应用于增加皮肤渗透。然后讨论了诸如牛皮癣,接触性皮炎和皮肤癌等皮肤病的病理,发病机理和局部治疗方法。最近的文献表明,基于纳米粒子的局部递送系统可以成功治疗这些皮肤病。从基于天然聚合物尤其是壳聚糖的纳米颗粒开始,然后是由合成的,可降解的(脂肪族聚酯)和不可降解的(聚丙烯酸酯)聚合物制成的纳米颗粒开始对研究进行综述。重点介绍了由天然代谢产物衍生的聚合物制成的纳米球,即酪氨酸衍生的纳米球(TyroSpheres?)。总之,基于纳米颗粒的局部递送系统结合了纳米级药物载体和局部方法的优点,并有望用于治疗皮肤疾病。从角度来看,超小纳米颗粒(尺寸小于40 nm)渗透到皮肤层中,将包封的药物靶向递送至毛囊干细胞,以及纳米颗粒和微针阵列技术的结合,可用于疫苗等特殊应用交付进行了讨论。

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