Chronic and recurrent inflammatory disorders of the gastrointestinal tract caused by a complex interplay between genetics and intestinal dysbiosis are called inflammatory bowel disease.As a result of the interaction b...Chronic and recurrent inflammatory disorders of the gastrointestinal tract caused by a complex interplay between genetics and intestinal dysbiosis are called inflammatory bowel disease.As a result of the interaction between the liver and the gut microbiota,bile acids are an atypical class of steroids produced in mammals and traditionally known for their function in food absorption.With the development of genomics and metabolomics,more and more data suggest that the pathophysiological mechanisms of inflammatory bowel disease are regulated by bile acids and their receptors.Bile acids operate as signalling molecules by activating a variety of bile acid receptors that impact intestinal flora,epithelial barrier function,and intestinal immunology.Inflammatory bowel disease can be treated in new ways by using these potential molecules.This paper mainly discusses the increasing function of bile acids and their receptors in inflammatory bowel disease and their prospective therapeutic applications.In addition,we explore bile acid metabolism and the interaction of bile acids and the gut microbiota.展开更多
Immune checkpoint inhibitors(ICIs)have significantly improved outcomes for patients with advanced driver-negative non-small cell lung cancer(NSCLC).However,targeted therapy remains the preferred treatment for advanced...Immune checkpoint inhibitors(ICIs)have significantly improved outcomes for patients with advanced driver-negative non-small cell lung cancer(NSCLC).However,targeted therapy remains the preferred treatment for advanced driver-positive NSCLC,including cases with epidermal growth factor receptor(EGFR)mutations.Con-sidering the variability in EGFR-mutant NSCLC,including expression levels of programmed cell death ligand 1(PD-L1),tumor mutation burden(TMB),and other immunological features,the application of immunotherapy in this group is still a subject of investigation.Therefore,we have summarized and analyzed the immunological characteristics and regulatory mechanisms of different EGFR mutations in NSCLC,as well as the current clinical application of immunotherapy in the EGFR-mutant population,to provide a reference for future research.展开更多
Summary: The mechanisms of increased expression of toll-like receptor 4 (TLR-4) during the formation of foam cells were explored. Low density lipoprotein (LDL) was prepared by density gradient ultracentrifugation...Summary: The mechanisms of increased expression of toll-like receptor 4 (TLR-4) during the formation of foam cells were explored. Low density lipoprotein (LDL) was prepared by density gradient ultracentrifugation and oxidized by incubation with CuClz. The human monocytic leukemia cell line (THP-1) was cultured in RPMI1640. The differentiation of THP-1 cells into macrophages (MPs) was induced by using myristate acetate (PMA) for 48 h. The macrophages were then incubated with oxidized LDL (ox-LDL) to generate foam cells (FCs). The mRNA and protein expression levels of human TLR-4 were detected by immunocytochemistry, Western blotting and reverse transcription polymerase chain reaction (RT-PCR). The results showed that the TLR-4 mRNA and the protein expression levels were significantly increased during the differentiation of monocytes into macrophages (P〈0. 05) as well as during the formation of lipid-laden foam cells (P〈0.05). It was concluded that the upregulation of human TLR-4 gene expression during the differentiation of monocytes into macrophages and the differentiation of macrophages into foam cells could increase TLR-4 protein synthesis dramatically, which may enhance the ability of foam cells inflammation reaction in atherosclerosis.展开更多
基金National Natural Science Foundation of China,No.81900466and Hunan Provincial Natural Science Foundation of China,No.2020JJ5307.
文摘Chronic and recurrent inflammatory disorders of the gastrointestinal tract caused by a complex interplay between genetics and intestinal dysbiosis are called inflammatory bowel disease.As a result of the interaction between the liver and the gut microbiota,bile acids are an atypical class of steroids produced in mammals and traditionally known for their function in food absorption.With the development of genomics and metabolomics,more and more data suggest that the pathophysiological mechanisms of inflammatory bowel disease are regulated by bile acids and their receptors.Bile acids operate as signalling molecules by activating a variety of bile acid receptors that impact intestinal flora,epithelial barrier function,and intestinal immunology.Inflammatory bowel disease can be treated in new ways by using these potential molecules.This paper mainly discusses the increasing function of bile acids and their receptors in inflammatory bowel disease and their prospective therapeutic applications.In addition,we explore bile acid metabolism and the interaction of bile acids and the gut microbiota.
基金supported by the Natural Science Foundation of Hubei Province of China(grant number:2022CFB114).
文摘Immune checkpoint inhibitors(ICIs)have significantly improved outcomes for patients with advanced driver-negative non-small cell lung cancer(NSCLC).However,targeted therapy remains the preferred treatment for advanced driver-positive NSCLC,including cases with epidermal growth factor receptor(EGFR)mutations.Con-sidering the variability in EGFR-mutant NSCLC,including expression levels of programmed cell death ligand 1(PD-L1),tumor mutation burden(TMB),and other immunological features,the application of immunotherapy in this group is still a subject of investigation.Therefore,we have summarized and analyzed the immunological characteristics and regulatory mechanisms of different EGFR mutations in NSCLC,as well as the current clinical application of immunotherapy in the EGFR-mutant population,to provide a reference for future research.
文摘Summary: The mechanisms of increased expression of toll-like receptor 4 (TLR-4) during the formation of foam cells were explored. Low density lipoprotein (LDL) was prepared by density gradient ultracentrifugation and oxidized by incubation with CuClz. The human monocytic leukemia cell line (THP-1) was cultured in RPMI1640. The differentiation of THP-1 cells into macrophages (MPs) was induced by using myristate acetate (PMA) for 48 h. The macrophages were then incubated with oxidized LDL (ox-LDL) to generate foam cells (FCs). The mRNA and protein expression levels of human TLR-4 were detected by immunocytochemistry, Western blotting and reverse transcription polymerase chain reaction (RT-PCR). The results showed that the TLR-4 mRNA and the protein expression levels were significantly increased during the differentiation of monocytes into macrophages (P〈0. 05) as well as during the formation of lipid-laden foam cells (P〈0.05). It was concluded that the upregulation of human TLR-4 gene expression during the differentiation of monocytes into macrophages and the differentiation of macrophages into foam cells could increase TLR-4 protein synthesis dramatically, which may enhance the ability of foam cells inflammation reaction in atherosclerosis.