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The mononuclear phagocyte system in hepatocellular carcinoma 被引量:1
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作者 Duan-Rui Qiao Guan-Yue Shan +3 位作者 Shuai Wang Jun-Ya Cheng Wei-Qun Yan Hai-Jun Li 《World Journal of Gastroenterology》 SCIE CAS 2022年第45期6345-6355,共11页
The mononuclear phagocyte system(MPS)consists of monocytes,dendritic cells and macrophages,which play vital roles in innate immune defense against cancer.Hepatocellular carcinoma(HCC)is a complex disease that is affec... The mononuclear phagocyte system(MPS)consists of monocytes,dendritic cells and macrophages,which play vital roles in innate immune defense against cancer.Hepatocellular carcinoma(HCC)is a complex disease that is affected or initiated by many factors,including chronic hepatitis B virus infection,hepatitis C virus infection,metabolic disorders or alcohol consumption.Liver function,tumor stage and the performance status of patients affect HCC clinical outcomes.Studies have shown that targeted treatment of tumor microenvironment disorders may improve the efficacy of HCC treatments.Cytokines derived from the innate immune response can regulate T-cell differentiation,thereby shaping adaptive immunity,which is associated with the prognosis of HCC.Therefore,it is important to elucidate the function of the MPS in the progression of HCC.In this review,we outline the impact of HCC on the MPS.We illustrate how HCC reshapes MPS cell phenotype remodeling and the production of associated cytokines and characterize the function and impairment of the MPS in HCC. 展开更多
关键词 mononuclear phagocyte system Hepatocellular carcinoma MONOCYTE Dendritic cell MACROPHAGE
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Ginsenoside modified lipid-coated perfluorocarbon nanodroplets: A novel approach to reduce complement protein adsorption and prolong in vivo circulation
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作者 Jie Zhou Binyang Gao +8 位作者 Huan Zhang Rui Yang Jianbo Huang Xin Li Yi Zhong Yan Wang Xiaoxia Zhu Yan Luo Feng Yan 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2024年第4期1845-1863,共19页
Lipid-coated perfluorocarbon nanodroplets(lp-NDs)hold great promise in bio-medicine as vehicles for drug delivery,molecular imaging and vaccine agents.However,their clinical utility is restricted by limited targeted a... Lipid-coated perfluorocarbon nanodroplets(lp-NDs)hold great promise in bio-medicine as vehicles for drug delivery,molecular imaging and vaccine agents.However,their clinical utility is restricted by limited targeted accumulation,attributed to the innate immune system(IIS),which acts as the initial defense mechanism in humans.This study aimed to optimize lp-ND formulations to mini-mize non-specific clearance by the IIS.Ginsenosides(Gs),the principal components of Panax ginseng,possessing complement inhibition ability,structural similarity to cholesterol,and comparable fat solubi-lity to phospholipids,were used as promising candidate IIS inhibitors.Two different types of ginsenoside-based Ip-NDs(Gs Ip-NDs)were created,and their efficacy in reducing IS recognition was examined.The Gs p-NDs were observed to inhibit the adsorption of C3 in the protein corona(PC)and the generation of SC5b-9.Adding Gs to Ip-NDs reduced complement adsorption and phagocytosis,resulting in a longer blood circulation time in vivo compared to lp-NDs that did not contain Gs.These results suggest that Gs can act as anti-complement and anti-phagocytosis adjuvants,potentially reducing non-specific clear-ance by the IS and improving lifespan. 展开更多
关键词 Lipid-coated perfluorocarbon nanodroplets Protein corona Complement C3 PHAGOCYTOSIS Ginsenosidelipid-coated perfluorocarbon nanodroplets Innate immune system Complement system mononuclear phagocytic system
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Macrophage-evading and tumor-specific apoptosis inducing nanoparticles for targeted cancer therapy 被引量:1
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作者 Zimo Liu Xuefei Zhou +3 位作者 Qi Li Youqing Shen Tianhua Zhou Xiangrui Liu 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2023年第1期327-343,共17页
Extended circulation of anticancer nanodrugs in blood stream is essential for their clinical applications.However,administered nanoparticles are rapidly sequestered and cleared by cells of the mononuclear phagocyte sy... Extended circulation of anticancer nanodrugs in blood stream is essential for their clinical applications.However,administered nanoparticles are rapidly sequestered and cleared by cells of the mononuclear phagocyte system(MPS).In this study,we developed a biomimetic nanosystem that is able to efficiently escape MPS and target tumor tissues.The fabricated nanoparticles(TM-CQ/NPs)were coated with fibroblast cell membrane expressing tumor necrosis factor(TNF)-related apoptosis inducing ligand(TRAIL).Coating with this functionalized membrane reduced the endocytosis of nanoparticles by macrophages,but increased the nanoparticle uptake in tumor cells.Importantly,this membrane coating specifically induced tumor cell apoptosis via the interaction of TRAIL and its cognate death receptors.Meanwhile,the encapsulated chloroquine(CQ)further suppressed the uptake of nanoparticles by macrophages,and synergized with TRAIL to induce tumor cell apoptosis.The vigorous antitumor efficacy in two mice tumor models confirmed our nanosystem was an effective approach to address the MPS challenge for cancer therapy.Together,our TM-CQ/NPs nanosystem provides a feasible approach to precisely target tumor tissues and improve anticancer efficacy. 展开更多
关键词 TRAIL FIBROBLAST NANOPARTICLES mononuclear phagocyte system Membrane coating CHLOROQUINE Cancer therapy Drug delivery
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Possible role of microparticles in neuroimmune signaling of microglial cells
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作者 Stephanie M.Schindler Ekta Bajwa +1 位作者 Jonathan P.Little Andis Klegeris 《Neuroimmunology and Neuroinflammation》 2016年第1期232-242,共11页
Aim:Submicron fragments termed microparticles(MPs),derived from all major central nervous system cell types including neurons and glia(microglia,astrocytes,oligodendrocytes),have emerged as novel intercellular signali... Aim:Submicron fragments termed microparticles(MPs),derived from all major central nervous system cell types including neurons and glia(microglia,astrocytes,oligodendrocytes),have emerged as novel intercellular signaling agents.This study tested the hypothesis that MPs derived from activated microglia,which represent the mononuclear phagocyte system in the brain,could induce pro-inflammatory and cytotoxic responses of microglia in an autocrine or paracrine manner.Methods:Human THP-1 monocytic cells were used to model human microglia.MPs derived from these cells were reapplied to THP-1 cells and their secretion of neurotoxins and cytokines was measured.Results:When exposed to lipopolysaccharide(LPS)or mitochondrial transcription factor A in combination with interferon(IFN)-γ,THP-1 cells released MPs.When reapplied to THP-1 cells,MPs induced the release of secretions that were toxic to human SH-SY5Y neuroblastoma cells,as well as monocyte chemoattractant protein-1.The cytotoxicity of THP-1 cells induced by MPs derived from IFN-γplus LPS-treated THP-1 donor cells was enhanced in the presence of IFN-γ.The MPs released by THP-1 cells were not directly toxic towards SH-SY5Y cells.Conclusion:Our data support the hypothesis that activated microglia-derived MPs could act as signaling agents that are recognized by microglia to cause pro-inflammatory and cytotoxic responses. 展开更多
关键词 MICROPARTICLES damage-associated molecular patterns mononuclear phagocytes glial cells MICROGLIA NEUROTOXICITY Alzheimer’s disease Parkinson’s disease
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