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991.
NADPH-dependent inhibition of hepatic microsomal carboxylesterase by a derivative of monocrotophos (coded as RPR-5) was studied in rat and Japanese quail as a measure of monooxygenase-catalysed activation of RPR-5. There was NADPH-dependent inhibition of hepatic microsomal α-naphthyl acetate esterase (carboxylesterase) both in rat and quail, indicating monooxygenase-catalysed formation of an oxon that subsequently phosphorylated α-NaE. The pattern of in-vitro metabolism of 14C-labelled RPR-5 by 11000g supernatant (11-S), microsomes and 105000g supernatant (105-S) fractions of rat and quail livers suggested the involvement of microsomal monooxygenases and carboxylesterases. A radiolabelled metabolite (M2) was tentatively identified as an acid produced by carboxyl esterase attack. In rat, metabolism by microsomal and cytosolic (105-S) carboxylesterases appeared to predominate with relatively little oxidative metabolism. In quail, putative microsomal carboxylesterase hydrolysis of RPR-5 was much lower than in the rat with almost neglible hydrolysis by cytosolic fractions. Also, production of M2 by quail microsomes was substantially reduced after addition of NADPH, suggesting inhibition of a carboxyl esterase by the oxon of RPR-5. Differences in this detoxification of RPR-5 between rat and quail may be an important factor in determining selective toxicity and the results underline the importance of relating metabolism to toxicity when selecting animal models for toxicity testing. 相似文献
992.
993.
饥饿及再投喂对日本囊对虾蛋白质代谢的影响 总被引:2,自引:2,他引:0
研究了体重为(13.08±2.40)g、体长为(10.37±0.73)cm的日本囊对虾Marsupenaeus ja-ponicus在饥饿和再投喂状态下蛋白质代谢的变化。对照组C连续饱食投喂10 d,试验组S10、S15、S25分别饥饿10、15、25 d后再恢复饱食投喂10 d。结果表明:在饥饿状态下,日本囊对虾肌肉中蛋白质的含量在饥饿前15 d迅速上升,饥饿第15~25 d趋于平稳,肝胰脏中蛋白质的含量则一直较稳定;恢复投喂后,肌肉中蛋白质的含量下降,而肝胰脏中蛋白质的含量上升。血浆中蛋白质的含量在饥饿前期(0~5 d)保持平稳,但在之后的第5~15 d则迅速下降,最后又恢复至最初水平;恢复投喂后,除S25组外其余各组血浆中蛋白质的含量都呈上升趋势,且试验组显著高于对照组(P<0.05)。肌肉中RNA/DNA的值在饥饿初期(0~5 d)略有下降,之后保持稳定,肝胰脏中RNA/DNA的值则在短期下降后有所上升;恢复投喂后,肌肉中RNA/DNA的值除S25组外其余各组均呈上升趋势,而肝胰脏中RNA/DNA的值除C组外其余各组均显著上升(P<0.05)。 相似文献
994.
为分析发酵乳对肥胖小鼠肝脂代谢和肠道菌群的影响,本研究将60只C57BL/6小鼠随机分为5组:正常对照组(CON)、模型组(MD)、易善复组(YG)、低浓度发酵乳干预组(LFG)和高浓度发酵乳干预组(HFG)。肥胖模型造模成功后进行为期6周的灌胃,试验结束测量小鼠的空腹体重和身长,计算LEE’S指数,采血检测生化指标,采集肝脏组织观察病理变化;采集小鼠盲肠内容物进行肠道菌群测序。结果表明:1)与CON相比,MD小鼠体重、LEE’S指数、ALT和AST均极显著提升(P<0.01),表明肥胖模型建立成功。2)与MD相比,发酵乳干预组小鼠体重、LEE’S指数、ALT和TC均极显著下降(P<0.01),其中AST和TG显著下降(P<0.05),同时发酵乳和易善复组小鼠肝组织脂肪变性有明显好转,基本没有明显的脂肪空泡。表明发酵乳可以抑制肥胖小鼠体重的增加,改善肥胖小鼠的肝脂代谢功能。3)与MD相比干预组小鼠肠道菌群的多样性水平有一定程度的恢复,尤其是厚壁菌门和拟杆菌门。表明发酵乳对于小鼠肠道菌群多样性的恢复有一定的作用。综上,本研究阐明了发酵乳对肥胖小鼠肝脂代谢和肠道菌群的影响,为功能型发酵乳的开发提供理论依据。 相似文献
995.
Butyrolactone I (BTL-I) is a butanolide isolated from the deep-sea-derived fungus, Aspergillus sp. It provides a potential new target for the prevention and treatment of food allergies. This study aimed to investigate the metabolic and pharmacokinetic profile of BTL-I in rats. The metabolic profiles were obtained by UHPLC–Q-TOF-MS. As a result, eleven metabolites were structurally identified, and the proposed metabolic pathways of BTL-I were characterized. The main metabolites were the oxidative and glucuronidative metabolites. In addition, a sensitive UHPLC–MS/MS method was established for the quantitation of BTL-I in rat plasma (LOQ = 2 ng/mL). The method was fully validated and successfully applied to the pharmacokinetic study of BTL-I in rats after oral administration or intravenous administration. The oral bioavailability was calculated as 6.29%, and the maximum plasma concentrations were 9.85 ± 1.54 ng/mL and 17.97 ± 1.36 ng/mL for intravenous and intragastric dosing groups, respectively. 相似文献
996.
Jian Li Jun-Hui Cheng Zhao-Jie Teng Xia Zhang Xiu-Lan Chen Mei-Ling Sun Jing-Ping Wang Yu-Zhong Zhang Jun-Mei Ding Xin-Min Tian Xi-Ying Zhang 《Marine drugs》2022,20(1)
Although the S8 family in the MEROPS database contains many peptidases, only a few S8 peptidases have been applied in the preparation of bioactive oligopeptides. Bovine bone collagen is a good source for preparing collagen oligopeptides, but has been so far rarely applied in collagen peptide preparation. Here, we characterized a novel S8 gelatinase, Aa2_1884, from marine bacterium Flocculibacter collagenilyticus SM1988T, and evaluated its potential application in the preparation of collagen oligopeptides from bovine bone collagen. Aa2_1884 is a multimodular S8 peptidase with a distinct domain architecture from other reported peptidases. The recombinant Aa2_1884 over-expressed in Escherichia coli showed high activity toward gelatin and denatured collagens, but no activity toward natural collagens, indicating that Aa2_1884 is a gelatinase. To evaluate the potential of Aa2_1884 in the preparation of collagen oligopeptides from bovine bone collagen, three enzymatic hydrolysis parameters, hydrolysis temperature, hydrolysis time and enzyme-substrate ratio (E/S), were optimized by single factor experiments, and the optimal hydrolysis conditions were determined to be reaction at 60 ℃ for 3 h with an E/S of 400 U/g. Under these conditions, the hydrolysis efficiency of bovine bone collagen by Aa2_1884 reached 95.3%. The resultant hydrolysate contained 97.8% peptides, in which peptides with a molecular weight lower than 1000 Da and 500 Da accounted for 55.1% and 39.5%, respectively, indicating that the hydrolysate was rich in oligopeptides. These results indicate that Aa2_1884 likely has a promising potential application in the preparation of collagen oligopeptide-rich hydrolysate from bovine bone collagen, which may provide a feasible way for the high-value utilization of bovine bone collagen. 相似文献
997.
为研究红壤微生物丰度和群落组成对不同调酸剂的响应,分析影响碳/氮关键代谢过程微生物的变化,通过盆栽实验,设置不施肥(CK)、钙镁复合剂(L)、钙镁复合剂配施猪粪(ML)和钙镁复合剂配施秸秆(SL)4个处理,采用宏基因组测序技术,分析土壤细菌、真菌和古菌以及碳/氮代谢关键过程微生物。结果表明:L、ML和SL处理显著提高土壤pH值和交换性钙/镁,显著降低土壤交换性酸。调酸剂增加了细菌优势菌中的变形菌门相对丰度,降低了绿弯菌门和酸杆菌门相对丰度;降低了真菌优势菌中的毛霉菌门相对丰度;增加了古菌优势菌中的广古菌门和深古菌门的相对丰度,降低了奇古菌门的相对丰度。冗余分析结果显示,速效钾是影响土壤细菌和真菌群落结构的主要环境因子,土壤pH和有机碳是影响土壤真菌和古菌群落结构组成的关键因子。碳代谢过程的贡献度方面,变形菌门的贡献度在SL处理中最高,放线菌门和芽单胞菌门的贡献度在ML处理中最高。氮代谢过程中,各处理绿弯菌门对硝化作用的贡献率均超过80%。调酸降低了绿弯菌门和酸杆菌门在反硝化与硝酸盐异化还原过程中的贡献度,L与SL处理的变形菌门贡献度低于ML处理,而ML处理的放线菌门贡献度高于L与SL处... 相似文献
998.
Marine organisms harbor numerous bioactive substances that can be utilized in the pharmaceutical and cosmetic industries. Scientific research on various applications of collagen extracted from these organisms has become increasingly prevalent. Marine collagen can be used as a biomaterial because it is water soluble, metabolically compatible, and highly accessible. Upon review of the literature, it is evident that marine collagen is a versatile compound capable of healing skin injuries of varying severity, as well as delaying the natural human aging process. From in vitro to in vivo experiments, collagen has demonstrated its ability to invoke keratinocyte and fibroblast migration as well as vascularization of the skin. Additionally, marine collagen and derivatives have proven beneficial and useful for both osteoporosis and osteoarthritis prevention and treatment. Other bone-related diseases may also be targeted by collagen, as it is capable of increasing bone mineral density, mineral deposition, and importantly, osteoblast maturation and proliferation. In this review, we demonstrate the advantages of marine collagen over land animal sources and the biomedical applications of marine collagen related to bone and skin damage. Finally, some limitations of marine collagen are briefly discussed. 相似文献
999.
1000.
不同浓度玉米生长调节剂对玉米氮代谢的影响 总被引:2,自引:0,他引:2
采用田间小区试验,研究了不同浓度新型玉米生长调节剂对玉米氮代谢的影响.结果表明,不同浓度玉米生长调节剂对灌浆期玉米功能叶、茎秆中氮素的转运,功能叶硝酸还原酶与蛋白水解酶活性,功能叶和籽粒的谷氨酰胺合成酶与转化酶活性均有明显的促进作用,显著增加玉米产量、籽粒蛋白质含量及籽粒蛋白质产量.在调节剂的3个浓度中,以PGRCl较合理.PGRCl处理玉米籽粒的蛋白氮含量比对照提高0.83g/kg,籽粒产量比对照增加13.18%,籽粒蛋白质产量比对照增加19.59%. 相似文献