Mechanism underlying carbon tetrachloride-inhibited protein synthesis in liver
Xiaowen, Li, Rong Rong, Zhu, Bo Bo, Мэй, Zhou, Qing-Jian, Sheng, Ye-Peng, Yang, Nan-Yin, Han Han, Zaiquan
Abstract
Xiaowen, Li, Rong Rong, Zhu, Bo Bo, Мэй, Zhou, Qing-Jian, Sheng, Ye-Peng, Yang, Nan-Yin, Han Han, Zaiquan
Abstract
AIM: To study the mechanism underlying carbon tetrachloride (CCl4)-induced alterations of protein synthesis in liver. METHODS: Male Sprague-Dawley rats were given CCl4 (1 mL/100 g body weight) and 3H-leucine incorporation. Malondialdehyde (MDA) level in the liver, in vitro response of hepatocyte nuclei nucleotide triphosphatase (NTPase) to free radicals, and nuclear export of total mRNA with 3'-poly A+ were measured respectively. Survival response of HepG2 cells to CCl4 treatment was assessed by methyl thia...
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AIM: To study the mechanism underlying carbon tetrachloride (CCl4)-induced alterations of protein synthesis in liver. METHODS: Male Sprague-Dawley rats were given CCl4 (1 mL/100 g body weight) and 3H-leucine incorporation. Malondialdehyde (MDA) level in the liver, in vitro response of hepatocyte nuclei nucleotide triphosphatase (NTPase) to free radicals, and nuclear export of total mRNA with 3'-poly A+ were measured respectively. Survival response of HepG2 cells to CCl4 treatment was assessed by methyl thia...
Key concepts: Carbon tetrachloride, CCL4, Malondialdehyde, Chemistry, Hepatocyte, Leucine, Biochemistry, In vitro