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纤维素纳米纤维改善了用于5-氨基水杨酸结肠特异性递送的回生淀粉/果胶微粒的性能。

Cellulose Nanofibers Improve the Performance of Retrograded Starch/Pectin Microparticles for Colon-Specific Delivery of 5-ASA.

作者信息

Meneguin Andréia Bagliotti, Sábio Rafael Miguel, de Souza Maurício Palmeira Chaves, Fernandes Richard Perosa, de Oliveira Anselmo Gomes, Chorilli Marlus

机构信息

Department of Drugs and Medicines, School of Pharmaceutical Sciences, São Paulo State University (UNESP), Araraquara 14800-903, Brazil.

出版信息

Pharmaceutics. 2021 Sep 19;13(9):1515. doi: 10.3390/pharmaceutics13091515.

Abstract

Cellulose nanofibers (CNF) were employed as the nanoreinforcement of a retrograded starch/pectin (RS/P) excipient to optimize its colon-specific properties. Although starch retrogradation ranged from 32 to 73%, CNF addition discretely disfavored the RS yield. This result agrees with the finding that in situ CNF reduces the presence of the RS crystallinity pattern. A thermal analysis revealed that the contribution of pectin improves the thermal stability of the RS/CNF mixture. Through a complete factorial design, it was possible to optimize the spray-drying conditions to obtain powders with high yield (57%) and low moisture content (1.2%). The powders observed by Field Emission Gum Scanning Electron Microscopy (FEG-SEM) had 1-10 µm and a circular shape. The developed methodology allowed us to obtain 5-aminosalicilic acid-loaded microparticles with high encapsulation efficiency (16-98%) and drug loading (1.97-26.63%). The presence of CNF in RS/P samples was responsible for decreasing the burst effect of release in simulated gastric and duodenal media, allowing the greatest mass of drug to be targeted to the colon. Considering that spray-drying is a scalable process, widely used by the pharmaceutical industry, the results obtained indicate the potential of these microparticles as raw material for obtaining other dosage forms to deliver 5-ASA to the distal parts of gastrointestinal tract, affected by inflammatory bowel disease.

摘要

纤维素纳米纤维(CNF)被用作回生淀粉/果胶(RS/P)辅料的纳米增强剂,以优化其结肠特异性特性。尽管淀粉回生率在32%至73%之间,但添加CNF会不利地降低RS产率。这一结果与原位CNF会降低RS结晶模式的存在这一发现一致。热分析表明,果胶的作用提高了RS/CNF混合物的热稳定性。通过完全析因设计,能够优化喷雾干燥条件,以获得高产率(57%)和低水分含量(1.2%)的粉末。用场发射胶扫描电子显微镜(FEG-SEM)观察到的粉末粒径为1-10 µm,呈圆形。所开发的方法使我们能够获得具有高包封效率(16-98%)和载药量(1.97-26.63%)的载5-氨基水杨酸微粒。RS/P样品中CNF的存在有助于降低在模拟胃液和十二指肠介质中的释放突释效应,使最大量的药物靶向结肠。考虑到喷雾干燥是制药行业广泛使用的可扩展工艺,所获得的结果表明这些微粒作为获得其他剂型以将5-ASA递送至受炎症性肠病影响的胃肠道远端部位的原料的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e180/8466724/a518a951b43a/pharmaceutics-13-01515-g001.jpg

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