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血清胆汁酸在素食与糖代谢指标间的中介效应分析
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作者 姚蝶 鲁大璐 +2 位作者 宋芳芳 钱林溪 沈秀华 《中国食物与营养》 2024年第7期72-77,共6页
目的:探究素食者和杂食者血清胆汁酸水平的差异,并分析其在素食饮食与糖代谢指标之间的中介效应。方法:纳入前期招募的222对性别年龄相匹配的成年健康素食者和杂食者,采用超高效液相色谱串联质谱法靶向定量血清中48种胆汁酸及衍生物浓... 目的:探究素食者和杂食者血清胆汁酸水平的差异,并分析其在素食饮食与糖代谢指标之间的中介效应。方法:纳入前期招募的222对性别年龄相匹配的成年健康素食者和杂食者,采用超高效液相色谱串联质谱法靶向定量血清中48种胆汁酸及衍生物浓度。通过正交偏最小二乘法-判别OPLS-DA分析和Wilcoxon符号秩检验筛选出可能的差异胆汁酸,进一步采用多元线性回归确定差异胆汁酸并探讨其与糖代谢指标空腹血糖(FG)、空腹胰岛素(FI)、胰岛素抵抗指数(HOMA-IR)之间的关系。通过bootstrap法探索差异胆汁酸在素食与糖代谢指标间的中介效应。结果:检测到23种血清胆汁酸及衍生物浓度,其中甘氨石胆酸-3-硫酸(GLCA-3S)、甘氨猪胆酸、甘氨鹅去氧胆酸(GCDCA)、甘胆酸(GCA)在素食者和杂食者之间存在显著差异,且都在素食组内水平上升。校正BMI等混杂因素后发现,GLCA-3S与FG、FI、HOMA-IR显著负相关,对于素食降低FI、HOMA-IR起中介作用;GCA、GCDCA与FI、HOMA-IR显著正相关,对于素食降低FI、HOMA-IR起遮掩作用。结论:胆汁酸GLCA-3S、GCDCA和GCA可能在素食饮食对糖代谢的影响中发挥重要作用。 展开更多
关键词 素食 胆汁酸 糖代谢 中介作用
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Effect of dihydrofolate reductase gene knock-down on the expression of heart and neural crest derivatives expressed transcript 2 in zebrafish cardiac development 被引量:7
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作者 SUN Shu-na GUI Yong-hao +4 位作者 WANG Yue-xiang qian lin-xi JIANG Qiu LIU Dong SONG Hou-yan 《Chinese Medical Journal》 SCIE CAS CSCD 2007年第13期1166-1171,共6页
Background Folic acid is very important for embryonic development and dihydrofolate reductase is one of the key enzymes in the process of fotic acid performing its biological function. Therefore, the dysfunction of di... Background Folic acid is very important for embryonic development and dihydrofolate reductase is one of the key enzymes in the process of fotic acid performing its biological function. Therefore, the dysfunction of dihydrofolate reductase can inhibit the function of folic acid and finally cause the developmental malformations. In this study, we observed the abnormal cardiac phenotypes in dihydrofolate reductase (DHFR) gene knock-down zebrafish embryos, investigated the effect of DHFR on the expression of heart and neural crest derivatives expressed transcript 2 (HAND2) and explored the possible mechanism of DHFR knock-down inducing zebrafish cardiac malformations. Methods Morpholino oligonucleotides were microinjected into fertilized eggs to knock down the functions of DHFR or HAND2. Full length of HAND2 mRNA which was transcribed in vitro was microinjected into fertilized eggs to overexpress HAND2. The cardiac morphologies, the heart rates and the ventricular shortening fraction were observed and recorded under the microscope at 48 hours post fertilization. Whole-mount in situ hybridization and real-time PCR were performed to detect HAND2 expression. Results DHFR or HAND2 knock-down caused the cardiac malformation in zebrafish. The expression of HAND2 was obviously reduced in DHFR knock-down embryos (P〈0.05). Microinjecting HAND2 mRNA into fertilized eggs can induce HAND2 overexpression. HAND2 overexpression rescued the cardiac malformation phenotypes of DHFR knock-down embryos. Conclusions DHFR plays a crucial role in cardiac development. The down-regulation of HAND2 caused by DHFR knock-down is the possible mechanism of DHFR knock-down inducing the cardiac malformation. 展开更多
关键词 folic acid heart and neural crest derivatives expressed transcript 2 protein HEART development ZEBRAFISH
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