基于生物聚合物的纳米凝胶的合成、表征和稳定性,用于多柔比星的封装和输送

Q3 Materials Science Macromolecular Symposia Pub Date : 2024-08-16 DOI:10.1002/masy.202400114
Karla Gricelda Fernández-Solís, Guillermo Toriz González, Edgar Benjamín Figueroa Ochoa, Julien Rosselgong, Eduardo Mendizabal Mijares, Lourdes Mónica Bravo-Anaya
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引用次数: 0

摘要

纳米凝胶是一种尺寸在纳米级内的纳米结构,由交联聚合物通过其官能团组成。纳米凝胶对 pH 值或温度等刺激具有敏感性。这一特性已被用于设计运输和释放活性成分的新平台。基于生物聚合物的纳米凝胶因其生物降解性、生物相容性、无毒性等优点而备受关注。在本项目中,利用两种安全、生物相容性好且容易获得的多糖,即壳聚糖(CS)和麦芽糊精(MD),通过一种新方法合成了 pH 响应纳米凝胶。通过 CS 与部分氧化的 MD 之间的还原胺化反应,可合成 MD/CS 纳米凝胶,其尺寸范围为 90 ± 5 至 194 ± 40 nm,胶体稳定性可达 7 周。研究发现,纳米凝胶尺寸和电荷的变化取决于 CS 浓度、分子量、pH 值以及 MD 的氧化百分比。作为纳米凝胶对 pH 值敏感的证据,pH 值降低会导致尺寸和ζ电位增加。尺寸增大的原因是纳米凝胶在 pH 值变化时发生了膨胀。最后,多柔比星被封装在 MD/CS 纳米凝胶中,负载能力高达 57%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Biopolymer-Based Nanogels Synthesis, Characterization, and Stability for Doxorubicin Encapsulation and Delivery

Nanogels are nanostructures with dimensions within the nanoscale, composed of crosslinked polymers through their functional groups. Nanogels can display sensitiveness to stimuli, such as pH or temperature. This characteristic has been used in the design of new platforms for the transport and release of active ingredients. Biopolymer-based nanogels are of great interest due to their biodegradability, biocompatibility, nontoxicity, and among others. In this project, pH-responsive nanogels are synthesized through a novel methodology, using two polysaccharides classified as safe, biocompatible, and easily accessible materials, i.e., chitosan (CS) and maltodextrin (MD). A reductive amination reaction between CS and partially oxidized MDs allows to synthesized MD/CS nanogels with sizes ranging from 90 ± 5 to 194 ± 40 nm and with a colloidal stability up to 7 weeks. It is found that the variation of nanogels size and charge depends on CS concentration, molecular weight, and pH, as well as on the % oxidation of the MD. As evidence of nanogels pH-responsiveness, an increase of size and ζ-potential is observed by decreasing the pH. This size increase is attributed to the swelling of the nanogels upon a change in pH. Finally, doxorubicin is encapsulated in MD/CS nanogels, with a loading capacity up to 57%.

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来源期刊
Macromolecular Symposia
Macromolecular Symposia Materials Science-Polymers and Plastics
CiteScore
1.50
自引率
0.00%
发文量
226
期刊介绍: Macromolecular Symposia presents state-of-the-art research articles in the field of macromolecular chemistry and physics. All submitted contributions are peer-reviewed to ensure a high quality of published manuscripts. Accepted articles will be typeset and published as a hardcover edition together with online publication at Wiley InterScience, thereby guaranteeing an immediate international dissemination.
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