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用于封装和递送生物药物的聚合物纳米材料策略:方法之间需考虑的要点。

Polymeric nanomaterial strategies to encapsulate and deliver biological drugs: points to consider between methods.

作者信息

Chen Xiangxun, Wu Yuao, Dau Van Thanh, Nguyen Nam-Trung, Ta Hang Thu

机构信息

School of Environment and Science, Griffith University, Nathan Campus, Brisbane, Queensland 4111, Australia.

Queensland Micro- and Nanotechnology Centre, Griffith University, Nathan Campus, Brisbane, Queensland 4111, Australia.

出版信息

Biomater Sci. 2023 Mar 14;11(6):1923-1947. doi: 10.1039/d2bm01594c.

Abstract

Biological drugs (BDs) play an increasingly irreplaceable role in treating various diseases such as cancer, and cardiovascular and neurodegenerative diseases. The market share of BDs is increasingly promising. However, the effectiveness of BDs is currently limited due to challenges in efficient administration and delivery, and issues with stability and degradation. Thus, the field is using nanotechnology to overcome these limitations. Specifically, polymeric nanomaterials are common BD carriers due to their biocompatibility and ease of synthesis. Different strategies are available for BD transportation, but the use of core-shell encapsulation is preferable for BDs. This review discusses recent articles on manufacturing methods for encapsulating BDs in polymeric materials, including emulsification, nanoprecipitation, self-encapsulation and coaxial electrospraying. The advantages and disadvantages of each method are analysed and discussed. We also explore the impact of critical synthesis parameters on BD activity, such as sonication in emulsifications. Lastly, we provide a vision of future challenges and perspectives for scale-up production and clinical translation.

摘要

生物药物在治疗各种疾病(如癌症、心血管疾病和神经退行性疾病)中发挥着越来越不可替代的作用。生物药物的市场份额越来越可观。然而,由于高效给药和递送方面的挑战以及稳定性和降解问题,目前生物药物的有效性受到限制。因此,该领域正在利用纳米技术来克服这些限制。具体而言,聚合物纳米材料因其生物相容性和易于合成而成为常见的生物药物载体。生物药物运输有不同的策略,但对于生物药物来说,采用核壳封装更为可取。本综述讨论了近期有关将生物药物封装在聚合物材料中的制造方法的文章,包括乳化、纳米沉淀、自封装和同轴电喷雾。分析并讨论了每种方法的优缺点。我们还探讨了关键合成参数对生物药物活性的影响,如乳化过程中的超声处理。最后,我们展望了扩大生产规模和临床转化方面未来的挑战和前景。

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