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3D 打印螺旋管状纤维素支架用于益生菌的口服递送。

3D printed spiral tube-like cellulose scaffold for oral delivery of probiotics.

机构信息

Laboratory for Biomaterial and Immunoengineering, Institute of Functional Nano and Soft Materials (FUNSOM), Soochow University, Suzhou, Jiangsu 215123, China.

The Second Affiliated Hospital of Soochow University, Suzhou, Jiangsu 215123, China.

出版信息

Sci Adv. 2024 Aug 23;10(34):eadp3654. doi: 10.1126/sciadv.adp3654.

Abstract

Introducing specific strains of probiotics into the gut microbiome is a promising way to modulate the intestinal microbiome to treat various health conditions clinically. However, oral probiotics typically have a temporary or limited impact on the gut microbiome and overall health benefits. Here, we reported a 3D printed cellulose-derived spiral tube-like scaffold that enabled high efficacy of the oral delivery of probiotics. Benefiting from the unique surface pattern, this system can effectively extend the retention time of loaded probiotics in the gut without invading nearby tissues, provide a favorable environment for the survival and long-term colonization of loaded probiotics, and influence the intestinal ecosystem as a dietary fiber after degradation. We demonstrate -loaded scaffold exerts noticeable impacts on the regulation of the gut microbiome to treat various gut-related diseases, including obesity and inflammatory bowel disease; thus, we provide a universal platform for oral delivery of probiotics.

摘要

向肠道微生物组中引入特定的益生菌菌株是一种很有前途的方法,可以调节肠道微生物组,从而在临床上治疗各种健康状况。然而,口服益生菌通常对肠道微生物组和整体健康益处的影响是暂时的或有限的。在这里,我们报告了一种 3D 打印的纤维素衍生的螺旋管状支架,它能够实现益生菌口服递送的高效性。得益于独特的表面图案,该系统可以有效地延长负载益生菌在肠道中的停留时间,而不会侵犯附近的组织,为负载益生菌的生存和长期定植提供有利的环境,并在降解后作为膳食纤维影响肠道生态系统。我们证明负载益生菌的支架对调节肠道微生物组以治疗各种肠道相关疾病(包括肥胖和炎症性肠病)有明显的作用;因此,我们为益生菌的口服递送提供了一个通用平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/999f/11343031/4b3fbd4d7a6d/sciadv.adp3654-f1.jpg

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