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    Morphofunctional characteristics of leaves and fruits in Maloideae (Rosaceae): a. Microstructure of surface tissues by T. Kh. Kumachova, A. S. Voronkov, A. V. Babosha, A. S. Ryabchenko

    Published 2019-06-01
    “…Mature leaves and fruits were selected from the middle part of the crown of three model trees of each species. …”
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  5. 2645

    Study on the Mechanism of Organic Matter Enrichment in Early Cambrian Marine Shales in the Lower Yangtze Area, South China: An Example Using Well JXY1 by Sihong Cheng, Bin Li, Kun Zhang, Weiwei Liu, Jun Peng, Mingcai Hou, Ming Wen, Qingsong Xia, Xin Wang, Xiaoxue Liu, Li Zhong, Yizhou Huang, Yongyang Liu, Muhe Yuan, Yue Yao

    Published 2020-01-01
    “…Moreover, the paleoocean in this period between the Yangtze plate and the Cathaysian plate was greatly affected by hydrothermal activities, with temperatures ranging from 90°C to 120°C. Active hydrothermal activities promoted high biological productivity and an anaerobic environment, both of which were conducive to the preservation and enrichment of organic matter, resulting in extremely high TOC content in the Wangyinpu shales (from 6.5% to approximately 16%).…”
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    Low Serum Magnesium Level Is Associated with Microalbuminuria in Chinese Diabetic Patients by Baihui Xu, Jichao Sun, Xinru Deng, Xiaolin Huang, Wanwan Sun, Yu Xu, Min Xu, Jieli Lu, Yufang Bi

    Published 2013-01-01
    “…We concluded that low serum magnesium level was significantly associated with the prevalence of microalbuminuria in middle-aged and elderly Chinese.…”
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    Microglia TRPC1 SUMOylation drives neuroinflammation after stroke by modulating NLRP3 activity via increasing TRPC1 interaction with ARRB2 by Huinan Zhang, Xinzhe Du, Tian Gao, Xing Wang, Huifeng Zhang, Manyang Yu, Jing Huang

    Published 2025-03-01
    “…Additionally, SUMOylated TRPC1 activates the Nod-like receptor protein (NLRP) 3 signaling pathway in microglia and stimulates multiple CC-chemokine ligands and C-X-C motif ligand chemokines after MCAO/R. SUMOylated TRPC1 facilitates the interaction between TRPC1 and β-arrestin2 (ARRB2), a negative regulator of NLRP3 inflammasome, which disrupts the NLPR3/ARRB2 complex and stimulates the activation of the NLPR3 signaling pathway. …”
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