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用于细菌疗法的新兴多尺度生物制造方法

Emerging Multiscale Biofabrication Approaches for Bacteriotherapy.

作者信息

Rovelli Roberta, Cecchini Beatrice, Zavagna Lorenzo, Azimi Bahareh, Ricci Claudio, Esin Semih, Milazzo Mario, Batoni Giovanna, Danti Serena

机构信息

Department of Civil and Industrial Engineering, University of Pisa, 56122 Pisa, Italy.

PEGASO Doctoral School of Life Sciences, University of Siena, 53100 Siena, Italy.

出版信息

Molecules. 2024 Jan 22;29(2):533. doi: 10.3390/molecules29020533.

Abstract

Bacteriotherapy is emerging as a strategic and effective approach to treat infections by providing putatively harmless bacteria (i.e., probiotics) as antagonists to pathogens. Proper delivery of probiotics or their metabolites (i.e., post-biotics) can facilitate their availing of biomaterial encapsulation via innovative manufacturing technologies. This review paper aims to provide the most recent biomaterial-assisted strategies proposed to treat infections or dysbiosis using bacteriotherapy. We revised the encapsulation processes across multiscale biomaterial approaches, which could be ideal for targeting different tissues and suit diverse therapeutic opportunities. Hydrogels, and specifically polysaccharides, are the focus of this review, as they have been reported to better sustain the vitality of the live cells incorporated. Specifically, the approaches used for fabricating hydrogel-based devices with increasing dimensionality (D)-namely, 0D (i.e., particles), 1D (i.e., fibers), 2D (i.e., fiber meshes), and 3D (i.e., scaffolds)-endowed with probiotics, were detailed by describing their advantages and challenges, along with a future overlook in the field. Electrospinning, electrospray, and 3D bioprinting were investigated as new biofabrication methods for probiotic encapsulation within multidimensional matrices. Finally, examples of biomaterial-based systems for cell and possibly post-biotic release were reported.

摘要

细菌疗法正在成为一种治疗感染的战略有效方法,通过提供被认为无害的细菌(即益生菌)作为病原体的拮抗剂。益生菌或其代谢产物(即后生元)的适当递送可以通过创新制造技术促进其对生物材料封装的利用。这篇综述旨在提供最近提出的利用细菌疗法治疗感染或生态失调的生物材料辅助策略。我们修订了跨多尺度生物材料方法的封装过程,这对于靶向不同组织和适应不同治疗机会可能是理想的。水凝胶,特别是多糖,是本综述的重点,因为据报道它们能更好地维持所掺入活细胞的活力。具体而言,通过描述其优点和挑战以及该领域的未来展望,详细介绍了用于制造具有增加维度(D)的基于水凝胶的装置的方法,即0D(即颗粒)、1D(即纤维)、2D(即纤维网)和3D(即支架),并赋予其益生菌。静电纺丝、电喷雾和3D生物打印被研究作为在多维基质中封装益生菌的新生物制造方法。最后,报告了基于生物材料的细胞和可能的后生元释放系统的实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e29/10821506/8a67c051584f/molecules-29-00533-g001.jpg

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