Suppr超能文献

通过冻融法制备的用于蛋白质/肽类药物递送的聚乙烯醇纳米颗粒。

Poly(vinyl alcohol) nanoparticles prepared by freezing-thawing process for protein/peptide drug delivery.

作者信息

Li J K, Wang N, Wu X S

机构信息

Division of Pharmaceutics and Industrial Pharmacy, Arnold and Marie Schwartz College of Pharmacy and Health Sciences, Long Island University, Brooklyn, New York 11201, NY, USA.

出版信息

J Control Release. 1998 Dec 4;56(1-3):117-26. doi: 10.1016/s0168-3659(98)00089-3.

Abstract

Poly(vinyl alcohol) (PVA) hydrogel nanoparticles have been prepared by using a water-in-oil emulsion technology plus cyclic freezing-thawing process. The PVA hydrogel nanoparticles prepared by this method are suitable for protein/peptide drug delivery since formation of the hydrogel does not require crosslinking agents or other adjuvants and does not involve any residual monomer. Particularly, there is no emulsifier involved in this new method. Bovine serum albumin (BSA), as a model protein drug, is incorporated into the PVA hydrogel nanoparticles. The PVA hydrogel nanoparticles possess a skewed or log-normal size distribution. The average diameter of the PVA hydrogel nanoparticles is 675.5+/-42.7 nm. Protein drug loading efficiency in the PVA hydrogel nanoparticles is 96.2+/-3.8%. The PVA hydrogel nanoparticles swell in an aqueous solution and the swelling degree increases with the increase of temperature. In vitro release studies show that the BSA release from the nanoparticles can be prolonged to 30 h. The BSA release follows a diffusion-controlled mechanism. The number of freezing-thawing cycle and release temperature both influence BSA release rate considerably. Less freezing-thawing cycle or higher release temperature leads to faster drug release. The BSA is stable during preparation of the PVA hydrogel nanoparticles.

摘要

采用油包水乳液技术结合循环冻融工艺制备了聚乙烯醇(PVA)水凝胶纳米粒。通过该方法制备的PVA水凝胶纳米粒适用于蛋白质/肽类药物递送,因为水凝胶的形成不需要交联剂或其他佐剂,且不涉及任何残留单体。特别地,这种新方法不涉及乳化剂。将牛血清白蛋白(BSA)作为模型蛋白药物载入PVA水凝胶纳米粒中。PVA水凝胶纳米粒具有偏态或对数正态尺寸分布。PVA水凝胶纳米粒的平均直径为675.5±42.7nm。PVA水凝胶纳米粒中蛋白质药物的载药效率为96.2±3.8%。PVA水凝胶纳米粒在水溶液中会溶胀,且溶胀度随温度升高而增加。体外释放研究表明,纳米粒中BSA的释放可延长至30小时。BSA的释放遵循扩散控制机制。冻融循环次数和释放温度均对BSA的释放速率有显著影响。冻融循环次数越少或释放温度越高,药物释放越快。在PVA水凝胶纳米粒的制备过程中,BSA是稳定的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验