Carbon dots induce pathological damage to the intestine via causing intestinal flora dysbiosis and intestinal inflammation

Author:

Jia Mengmeng,Yi Bingcheng,Chen Xian,Xu Yongzhi,Xu Xinkai,Wu Zhaoxu,Ji Jing,Tang Jinglong,Yu Dianke,Zheng Yuxin,Zhou Qihui,Zhao Yanjie

Abstract

Abstract Background Carbon dots (CDs), as excellent antibacterial nanomaterials, have gained great attention in treating infection-induced diseases such as periodontitis and stomatitis. Given the eventual exposure of CDs to the intestine, elucidating the effect of CDs on intestinal health is required for the safety evaluation of CDs. Results Herein, CDs extracted from ε-poly-l-lysine (PL) were chosen to explore the modulation effect of CDs on probiotic behavior in vitro and intestinal remodeling in vivo. Results verify that PL-CDs negatively regulate Lactobacillus rhamnosus (L. rhamnosus) growth via increasing reactive oxygen species (ROS) production and reducing the antioxidant activity, which subsequently destroys membrane permeability and integrity. PL-CDs are also inclined to inhibit cell viability and accelerate cell apoptosis. In vivo, the gavage of PL-CDs is verified to induce inflammatory infiltration and barrier damage in mice. Moreover, PL-CDs are found to increase the Firmicutes to Bacteroidota (F/B) ratio and the relative abundance of Lachnospiraceae while decreasing that of Muribaculaceae. Conclusion Overall, these evidences indicate that PL-CDs may inevitably result in intestinal flora dysbiosis via inhibiting probiotic growth and simultaneously activating intestinal inflammation, thus causing pathological damage to the intestine, which provides an effective and insightful reference for the potential risk of CDs from the perspective of intestinal remodeling.

Funder

National Natural Science Foundation of China

Innovation and technology program for the excellent youth scholars of higher education of Shandong province

Traditional Chinese Medicine Science and Technology Project of Shandong province

Open Fund of Tianjin Enterprise Key Laboratory for Application Research of Hyaluronic Acid

Zhejiang Engineering Research Center for Tissue Repair Materials

Publisher

Springer Science and Business Media LLC

Subject

Pharmaceutical Science,Applied Microbiology and Biotechnology,Biomedical Engineering,Molecular Medicine,Medicine (miscellaneous),Bioengineering

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