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2
Rabbit as an Animal Model for Pharmacokinetics Studies of Enteric Capsule Contains Recombinant Human Keratinocyte Growth Factor Loaded Chitosan Nanoparticles.兔作为含重组人角质形成细胞生长因子壳聚糖纳米粒肠溶胶囊药代动力学研究的动物模型
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Polymeric microneedles for transdermal protein delivery.聚合物微针用于透皮蛋白递药。
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10
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重组人角质形成细胞生长因子透皮微针的制备与评价

Fabrication and Evaluation of Transdermal Microneedles for a Recombinant Human Keratinocyte Growth Factor.

作者信息

Chellathurai Melbha Starlin, Ling Vivien Wang Ting, Palanirajan Vijayaraj Kumar

机构信息

UCSI University, Faculty of Pharmaceutical Sciences, Department of Pharmaceutical Technology, Kuala Lumpur, Malaysia.

出版信息

Turk J Pharm Sci. 2021 Feb 25;18(1):96-103. doi: 10.4274/tjps.galenos.2020.21033.

DOI:10.4274/tjps.galenos.2020.21033
PMID:33634684
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7957304/
Abstract

OBJECTIVES

Microneedle transdermal patches are a combination of hypodermic needles and transdermal patches used to overcome the individual limitations of both injections and patches. The objective of this study was to design a minimally invasive, biodegradable polymeric recombinant human keratinocyte growth factor (rHuKGF) microneedle array and evaluate the prepared biodegradable microneedles using techniques.

MATERIALS AND METHODS

Biodegradable polymeric microneedle arrays were fabricated out of poly lactic-co-glycolic acid (PLGA) using the micromolding technique under aseptic conditions, and the morphology of the microneedles was characterized using light microscopy. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis was used to rule out drug-polymer interactions. Standard procedures were used to analyze the prepared microneedle arrays for drug release and to perform a microneedle insertion test. Enzyme-linked immunosorbent assay was used to quantify rHuKGF.

RESULTS

The PLGA polymer was safe for use in the fabrication of rHuKGF microneedles as there was no interaction between the drug and the polymer. The fabricated rHuKGF microneedle arrays had fully formed microneedles with a height of 600 µm and a base of 300 µm. The drug from the microneedle patch was released within 30 minutes. The strength of the microneedles in the patch was good, as they were able to reach a depth of 381±3.56 µm into parafilm without any structural change or fracture.

CONCLUSION

Microneedle transdermal patches were successfully prepared for rHuKGF, and their evaluation suggested excellent quality and uniformity of patch characteristics. This can have potential applications in the therapeutic arena, offering advantages in terms of reduced dosing frequency, improved patient compliance, and bioavailability.

摘要

目的

微针透皮贴剂是皮下注射针和透皮贴剂的结合体,用于克服注射和贴剂各自的局限性。本研究的目的是设计一种微创、可生物降解的聚合物重组人角质形成细胞生长因子(rHuKGF)微针阵列,并使用相关技术评估所制备的可生物降解微针。

材料与方法

在无菌条件下,采用微成型技术由聚乳酸-乙醇酸共聚物(PLGA)制备可生物降解的聚合物微针阵列,并用光学显微镜对微针的形态进行表征。采用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳排除药物与聚合物的相互作用。使用标准程序分析所制备的微针阵列的药物释放情况并进行微针插入试验。采用酶联免疫吸附测定法定量rHuKGF。

结果

PLGA聚合物用于制备rHuKGF微针是安全的,因为药物与聚合物之间没有相互作用。所制备的rHuKGF微针阵列具有完全成型的微针,高度为600μm,基部为300μm。微针贴剂中的药物在30分钟内释放。贴剂中微针的强度良好,因为它们能够刺入石蜡膜达381±3.56μm的深度,而没有任何结构变化或断裂。

结论

成功制备了用于rHuKGF的微针透皮贴剂,对其评估表明贴剂特性具有优异的质量和均匀性。这在治疗领域可能具有潜在应用,在降低给药频率、提高患者依从性和生物利用度方面具有优势。