1.Single center standardized procedure of laparoscopic anterior approach for right hepatectomy
Guangtao LI ; Feng FANG ; Ping CHEN ; Xiaochen MA ; Qingli LI ; Yangfan ZHANG ; Shaohua REN ; Yayue LIU ; Tianqiang SONG
Chinese Journal of Hepatobiliary Surgery 2020;26(11):864-866
With the development of technology and instruments, more and more giant liver tumors have been resected under laparoscopy. Compared with traditional approach hepatectomy, anterior hepatectomy is more suitable for laparoscopic resection of huge liver tumors, and it is also more in line with the " tumor-free principle" when it is used in the resection of liver malignant tumors. Our team summarized the experiences and lessons of laparoscopic hepatectomy and communicated with domestic and foreign experts to form a set of single center standardized process of laparoscopic anterior right hepatectomy, which is summarized as follows.
2.A new benzaldehyde from the coral-derived fungus Aspergillus terreus C23-3 and its anti-inflammatory effects via suppression of MAPK signaling pathway in RAW264.7 cells.
Minqi CHEN ; Jinyue LIANG ; Yuan WANG ; Yayue LIU ; Chunxia ZHOU ; Pengzhi HONG ; Yi ZHANG ; Zhong-Ji QIAN
Journal of Zhejiang University. Science. B 2022;23(3):230-240
Marine fungi are important members of the marine microbiome, which have been paid growing attention by scientists in recent years. The secondary metabolites of marine fungi have been reported to contain rich and diverse compounds with novel structures (Chen et al., 2019). Aspergillus terreus, the higher level marine fungus of the Aspergillus genus (family of Trichocomaceae, order of Eurotiales, class of Eurotiomycetes, phylum of Ascomycota), is widely distributed in both sea and land. In our previous study, the coral-derived A. terreus strain C23-3 exhibited potential in producing other biologically active (with antioxidant, acetylcholinesterase inhibition, and anti-inflammatory activity) compounds like arylbutyrolactones, territrems, and isoflavones, and high sensitivity to the chemical regulation of secondary metabolism (Yang et al., 2019, 2020; Nie et al., 2020; Ma et al., 2021). Moreover, we have isolated two different benzaldehydes, including a benzaldehyde with a novel structure, from A. terreus C23-3 which was derived from Pectinia paeonia of Xuwen, Zhanjiang City, Guangdong Province, China.
Acetylcholinesterase/metabolism*
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Animals
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Anthozoa/microbiology*
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Anti-Inflammatory Agents/pharmacology*
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Aspergillus/chemistry*
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Benzaldehydes/pharmacology*
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Mice
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RAW 264.7 Cells
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Signal Transduction