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Chuanming Liu

Showing results (21-30 of 28) with videos related to

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Molecular Reproduction and Development|July 1, 2023
Decreased LONP1 expression contributes to DNA damage and meiotic defects in oocytesChuanming Liu, Manlin Xu, Yajie Guan, et al.
Reproductive Biology and Endocrinology : RB&E|November 1, 2023
Decreased HAT1 expression in granulosa cells disturbs oocyte meiosis during mouse ovarian agingBichun Guo, Sainan Zhang, Shanshan Wang, et al.
Aging Cell|January 12, 2026
Decreased PTGES2 Farnesylation in Granulosa Cells Compromises PGE2-Dependent Cumulus Expansion and Oocyte Maturation During Ovarian AgingSainan Zhang, Jiahui Qi, Chuanming Liu, et al.
Angewandte Chemie (International Ed. in English)|May 3, 2024
An In-Situ-Tag-Generation Proximity Labeling Technology for Recording Cellular InteractionsYunyan Yao, Ru Jia, Chuanming Liu, et al.
Nature Communications|December 13, 2023
Selenium-based metabolic oligosaccharide engineering strategy for quantitative glycan detectionXiao Tian, Lingna Zheng, Changjiang Wang, et al.
Nature Aging|August 26, 2025
Mevalonate metabolites boost aged oocyte quality through prenylation of small GTPasesChuanming Liu, Huidan Zhang, Jialian Mao, et al.
Ebiomedicine|January 2, 2022
The mitochondrial protease LONP1 maintains oocyte development and survival by suppressing nuclear translocation of AIFM1 in mammalsXiaoqiang Sheng, Chuanming Liu, Guijun Yan, et al.
Nature Aging|May 15, 2023
Granulosa cell mevalonate pathway abnormalities contribute to oocyte meiotic defects and aneuploidyChuanming Liu, Wu Zuo, Guijun Yan, et al.
Pageof 3

Showing results (21-30 of 28) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 28 results.
Molecular Reproduction and Development|July 1, 2023
Decreased LONP1 expression contributes to DNA damage and meiotic defects in oocytesChuanming Liu, Manlin Xu, Yajie Guan, et al.
Reproductive Biology and Endocrinology : RB&E|November 1, 2023
Decreased HAT1 expression in granulosa cells disturbs oocyte meiosis during mouse ovarian agingBichun Guo, Sainan Zhang, Shanshan Wang, et al.
Aging Cell|January 12, 2026
Decreased PTGES2 Farnesylation in Granulosa Cells Compromises PGE2-Dependent Cumulus Expansion and Oocyte Maturation During Ovarian AgingSainan Zhang, Jiahui Qi, Chuanming Liu, et al.
Angewandte Chemie (International Ed. in English)|May 3, 2024
An In-Situ-Tag-Generation Proximity Labeling Technology for Recording Cellular InteractionsYunyan Yao, Ru Jia, Chuanming Liu, et al.
Nature Communications|December 13, 2023
Selenium-based metabolic oligosaccharide engineering strategy for quantitative glycan detectionXiao Tian, Lingna Zheng, Changjiang Wang, et al.
Nature Aging|August 26, 2025
Mevalonate metabolites boost aged oocyte quality through prenylation of small GTPasesChuanming Liu, Huidan Zhang, Jialian Mao, et al.
Ebiomedicine|January 2, 2022
The mitochondrial protease LONP1 maintains oocyte development and survival by suppressing nuclear translocation of AIFM1 in mammalsXiaoqiang Sheng, Chuanming Liu, Guijun Yan, et al.
Nature Aging|May 15, 2023
Granulosa cell mevalonate pathway abnormalities contribute to oocyte meiotic defects and aneuploidyChuanming Liu, Wu Zuo, Guijun Yan, et al.
Pageof 3