a Department of Biomedical Engineering , Tufts University , Medford , MA , USA.
Expert Opin Drug Deliv. 2019 Jul;16(7):741-756. doi: 10.1080/17425247.2019.1635116. Epub 2019 Jul 1.
Silk is a promising biomaterial for controlled delivery of therapeutics and has a unique protein chemistry that can be tuned to form different carrier formats. The protein has been studied for sustained release depot systems for the targeted or localized delivery of drugs.
An overview of natural silk proteins for controlled delivery of therapeutics is provided, with a focus on the features of silk proteins that allow them to be useful tools for controlled delivery. Recent applications of natural silk proteins as controlled delivery systems are also summarized.
The versatility of silk proteins makes them desirable biomaterials for a broad range of applications for controlled delivery of both small and large molecules. Further, the degradation profile leading to peptides and amino acids provides compatibility with pH-sensitive therapeutics. While silk sericin and spider silks are under study, silk fibroin extracted from silkworms (e.g. dominates pharmaceutical studies with silk. Silk fibroin can be formed into drug delivery tools for systemic or local injections, topical and transdermal applications, and implantation; depending on the target disease and therapeutic molecule. to correlations and scale-up needs are the next steps towards clinical applications.
丝绸是一种很有前途的生物材料,可用于控制药物的释放,其独特的蛋白质化学性质可被调整为不同的载体形式。该蛋白质已被研究用于形成持续释放的储存系统,以实现药物的靶向或局部递送。
本文概述了天然丝蛋白在药物控制释放中的应用,重点介绍了丝蛋白的特性,使其成为控制释放的有用工具。还总结了天然丝蛋白作为控制释放系统的最新应用。
丝蛋白的多功能性使它们成为控制小分子和大分子药物释放的各种应用中理想的生物材料。此外,导致肽和氨基酸的降解谱与 pH 敏感的治疗药物具有兼容性。虽然丝胶和蜘蛛丝正在研究中,但从蚕中提取的丝素(例如 主导着与丝素相关的药物研究。丝素可被制成用于全身或局部注射、局部和透皮应用以及植入的药物递送工具;具体取决于目标疾病和治疗分子。从实验室到临床试验的相关性和放大需求是下一步的临床应用。