Department of Laboratory Medicine, School of Medicine, Jiangsu University, Zhenjiang 212013, China.
Medical Laboratory Department, Huai'an Second People's Hospital, Huai'an 223022, China.
Molecules. 2023 Feb 24;28(5):2148. doi: 10.3390/molecules28052148.
This study aims to evaluate the effect of berberine-based carbon quantum dots (Ber-CDs) on improving 5-fluorouracil (5-FU)-induced intestinal mucositis in C57BL/6 mice, and explored the mechanisms behind this effect. Thirty-two C57BL/6 mice were divided into four groups: normal control (NC), 5-FU-induced intestinal mucositis model (5-FU), 5-FU + Ber-CDs intervention (Ber-CDs), and 5-FU + native berberine intervention (Con-CDs). The Ber-CDs improved body weight loss in 5-FU-induced mice with intestinal mucositis compared to the 5-FU group. The expressions of IL-1β and NLRP3 in spleen and serum in Ber-CDs and Con-Ber groups were significantly lower than those in the 5-FU group, and the decrease was more significant in the Ber-CDs group. The expressions of IgA and IL-10 in the Ber-CDs and Con-Ber groups were higher than those in the 5-FU group, but the up-regulation was more significant in the Ber-CDs group. Compared with the 5-FU group, the relative contents of Bifidobacterium, Lactobacillus and the three main SCFAs in the colon contents were significantly increased the Ber-CDs and Con-Ber groups. Compared with the Con-Ber group, the concentrations of the three main short-chain fatty acids in the Ber-CDs group were significantly increased. The expressions of Occludin and ZO-1 in intestinal mucosa in the Ber-CDs and Con-Ber groups were higher than those in the 5-FU group, and the expressions of Occludin and ZO-1 in the Ber-CDs group were more higher than that in the Con-Ber group. In addition, compared with the 5-FU group, the damage of intestinal mucosa tissue in the Ber-CDs and Con-Ber groups were recovered. In conclusion, berberine can attenuate intestinal barrier injury and oxidative stress in mice to mitigate 5-fluorouracil-induced intestinal mucositis, moreover, the above effects of Ber-CDs were more significant than those of native berberine. These results suggest that Ber-CDs may be a highly effective substitute for natural berberine.
本研究旨在评估基于小檗碱的碳量子点(Ber-CDs)对改善 C57BL/6 小鼠 5-氟尿嘧啶(5-FU)诱导的肠道黏膜炎的作用,并探讨其作用机制。将 32 只 C57BL/6 小鼠分为四组:正常对照组(NC)、5-FU 诱导的肠道黏膜炎模型组(5-FU)、5-FU+Ber-CDs 干预组(Ber-CDs)和 5-FU+天然小檗碱干预组(Con-CDs)。与 5-FU 组相比,Ber-CDs 改善了 5-FU 诱导的肠道黏膜炎小鼠的体重减轻。Ber-CDs 和 Con-Ber 组小鼠脾脏和血清中 IL-1β 和 NLRP3 的表达明显低于 5-FU 组,且 Ber-CDs 组下降更为明显。Ber-CDs 和 Con-Ber 组小鼠的 IgA 和 IL-10 表达高于 5-FU 组,但 Ber-CDs 组的上调更为明显。与 5-FU 组相比,Ber-CDs 和 Con-Ber 组小鼠结肠内容物中双歧杆菌、乳酸杆菌和三种主要 SCFA 的相对含量明显增加。与 Con-Ber 组相比,Ber-CDs 组三种主要短链脂肪酸的浓度明显增加。Ber-CDs 和 Con-Ber 组小鼠肠黏膜中 Occludin 和 ZO-1 的表达均高于 5-FU 组,且 Ber-CDs 组的表达均明显高于 Con-Ber 组。此外,与 5-FU 组相比,Ber-CDs 和 Con-Ber 组小鼠的肠黏膜组织损伤得到恢复。综上所述,小檗碱可以减轻小鼠肠道屏障损伤和氧化应激,从而减轻 5-氟尿嘧啶诱导的肠道黏膜炎,而且,Ber-CDs 的上述作用明显优于天然小檗碱。这些结果表明,Ber-CDs 可能是天然小檗碱的一种高效替代品。