CS0004
Monensin Sodium 莫能霉素
¥340.00
在售SKU:70-CS0004
描述
1.产品简介
莫能霉素(Monensin)是一种胞内蛋白转运抑制剂。培养细胞加入Monensin会阻断蛋白向高尔基体复合物(GC)转运,使之在内质网(ER)中积累。在细胞体外活化的最后几个小时加入Monensin可增强胞内细胞因子的检测。Monensin对大部分小鼠和人类胞内细胞因子的阻断有效。 Monensin的推荐工作浓度是1 - 5 μg/ml,但需要研究者对实验条件和效果进行优化和判断。
2.产品特点
•转运抑制能力强
•操作简单
•常备现货
引用文献统计
该产品被引用的文献总数为:41
- Bacteroides thetaiotaomicron relieves colon inflammation by activating aryl hydrocarbon receptor and modulating CD4+T cell homeostasis
影响因子:3.943刊物:INTERNATIONAL IMMUNOPHARMACOLOGY发表日期:2020/11/20 - Single-cell transcriptomics of peripheral blood reveals anti-tumor systemic immunity induced by oncolytic virotherapy
影响因子:11.6刊物:Theranostics发表日期:2022/10/17 - Natural killer T cell/IL-4 signaling promotes bone marrow-derived fibroblast activation and M2 macrophage-to-myofibroblast transition in renal fibrosis
影响因子:4.932刊物:INTERNATIONAL IMMUNOPHARMACOLOGY发表日期:2021/7/6 - Human IL-23R Cytokine-Binding Homology Region-Fc Fusion Protein Ameliorates Psoriasis via the Decrease of Systemic Th17 and ILC3 Cell Responses
影响因子:4.183刊物:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES发表日期:2019/8/26 - Increased Proportion of Dual-Positive Th2–Th17 Cells Promotes a More Severe Subtype of Asthma
影响因子:2.409刊物:Canadian Respiratory Journal发表日期:2021/8/6 - Immune response pattern varies with the natural history of chronic hepatitis B
影响因子:3.411刊物:WORLD JOURNAL OF GASTROENTEROLOGY发表日期:2019/4/28 - Gm15575 functions as a ceRNA to up-regulate CCL7 expression through sponging miR-686 in Th17 cells
影响因子:3.641刊物:MOLECULAR IMMUNOLOGY发表日期:2020/7/3 - Therapeutic effect of human amniotic epithelial cells in murine models of Hashimoto's thyroiditis and Systemic lupus erythematosus
影响因子:3.993刊物:CYTOTHERAPY发表日期:2018/8/31 - Sceptridium ternatum extract exerts antiasthmatic effects by regulating Th1/Th2 balance and the expression levels of leukotriene receptors in a mouse asthma model
影响因子:2.755刊物:JOURNAL OF ETHNOPHARMACOLOGY发表日期:2013/8/9 - Role of TLR5 in the Translocation and Dissemination of Commensal Bacteria in the Intestine after Traumatic Hemorrhagic Shock
影响因子:4.818刊物:Journal of Immunology Research发表日期:2021/11/19 - Clinical correlation of peripheral CD4+‑cell sub‑sets, their imbalance and Parkinson's disease
影响因子:1.554刊物:Molecular Medicine Reports发表日期:2015/7/29 - Single-cell multi-omics analysis presents the landscape of peripheral blood T-cell subsets in human chronic prostatitis/chronic pelvic pain syndrome
影响因子:4.486刊物:JOURNAL OF CELLULAR AND MOLECULAR MEDICINE发表日期:2020/10/30 - Effects of Dezocine and Sufentanil on Th1/Th2 Balance in Breast Cancer Patients Undergoing Surgery
影响因子:4.319刊物:Drug Design Development and Therapy发表日期:2022/9/30 - Gut Microflora Modulates Th17/Treg Cell Differentiation in Experimental Autoimmune Prostatitis via the Short-Chain Fatty Acid Propionate
影响因子:8.786刊物:Frontiers in Immunology发表日期:2022/7/4 - Protective Effects of Total Glucosides of Paeony on N-nitrosodiethylamine-induced Hepatocellular Carcinoma in Rats via Down-regulation of Regulatory B Cells
影响因子:1.991刊物:IMMUNOLOGICAL INVESTIGATIONS发表日期:2015/7/30 - CD8+ T cells mediate antiviral response in severe fever with thrombocytopenia syndrome
影响因子:5.834刊物:FASEB JOURNAL发表日期:2022/12/26 - Therapeutic Effect of Xuebijing, a Traditional Chinese Medicine Injection, on Rheumatoid Arthritis
影响因子:1.813刊物:Evidence-based Complementary and Alternative Medicine发表日期:2020/1/28 - MBD2 Regulates Th17 Cell Differentiation and Experimental Severe Asthma by Affecting IRF4 Expression.
影响因子:3.232刊物:MEDIATORS OF INFLAMMATION发表日期:2017/7/20 - MBD2-mediated Th17 differentiation in severe asthma is associated with impaired SOCS3 expression
影响因子:3.309刊物:EXPERIMENTAL CELL RESEARCH发表日期:2018/8/9 - MBD2 regulates differentiation and function of Th17 cells in neutrophils- dominant asthma via HIF-1α
影响因子:2.61刊物:Journal of Inflammation-London发表日期:2018/8/20 - CCL20 Secretion from the Nucleus Pulposus Improves the Recruitment of CCR6-Expressing Th17 Cells to Degenerated IVD Tissues
影响因子:3.73刊物:PLoS One发表日期:2013/6/18 - Resveratrol exerts antitumor effects by downregulating CD8+CD122+ Tregs in murine hepatocellular carcinoma
影响因子:5.869刊物:OncoImmunology发表日期:2020/10/24 - Colorectal Cancer Progression Is Associated with Accumulation of Th17 Lymphocytes in Tumor Tissues and Increased Serum Levels of Interleukin-6
影响因子:1.283刊物:TOHOKU JOURNAL OF EXPERIMENTAL MEDICINE发表日期:2014/7/2 - Dysbiosis of gut microbiota induced the disorder of helper T cells in influenza virus-infected mice
影响因子:2.366刊物:Human Vaccines & Immunotherapeutics发表日期:2015/5/27 - NF-κB-94ins/del ATTG Genotype Contributes to the Susceptibility and Imbalanced Th17 Cells in Patients with Immune Thrombocytopenia
影响因子:3.298刊物:Journal of Immunology Research发表日期:2018/7/22 - Probiotics alleviate adipose inflammation in high-fat diet–induced obesity by restoring adipose invariant natural killer T cells
影响因子:4.008刊物:NUTRITION发表日期:2021/4/25 - Polysaccharide from Radix Codonopsis has beneficial effects on the maintenance of T-cell balance in mice
影响因子:3.743刊物:BIOMEDICINE & PHARMACOTHERAPY发表日期:2019/2/20 - Total glucosides of paeony ameliorates TNBS‑induced colitis by modulating differentiation of Th17/Treg cells and the secretion of cytokines
影响因子:1.692刊物:Molecular Medicine Reports发表日期:2017/9/25 - Exposure to biomass smoke induces pulmonary Th17 cell differentiation by activating TLR2 on dendritic cells in a COPD rat model
影响因子:4.374刊物:TOXICOLOGY LETTERS发表日期:2021/5/28 - Interleukin 10 Gene-Modified Bone Marrow-Derived Dendritic Cells Attenuate Liver Fibrosis in Mice by Inducing Regulatory T Cells and Inhibiting the TGF-β/Smad Signaling Pathway
影响因子:3.545刊物:MEDIATORS OF INFLAMMATION发表日期:2019/1/17 - Deregulation of Regulatory T Cells in Acute-on-Chronic Liver Failure: A Rat Model
影响因子:3.232刊物:MEDIATORS OF INFLAMMATION发表日期:2017/1/15 - Therapeutic potential of tLyp-1-EV-shCTCF in inhibiting liver cancer stem cell self-renewal and immune escape via SALL3 modulation in hepatocellular carcinoma
影响因子:4.5刊物:Translational Oncology发表日期:2024-08-25 - Alcohol intake exacerbates experimental autoimmune prostatitis through gut microbiota driving cholesterol biosynthesis-mediated Th17 differentiation
影响因子:4.8刊物:INTERNATIONAL IMMUNOPHARMACOLOGY发表日期:2024-07-18 - ICOS-ICOSL pathway enhances NKT-like cell antiviral function in pregnant women with COVID-19
影响因子:3.2刊物:International Journal of Medical Sciences发表日期:2024-07-16 - Dual roles of CD11b+CD33+HLA-DR-/lowCD14- myeloid-derived suppressor cells with a granulocytic morphology following allogeneic hematopoietic stem cell transplantation: from inflammation promoters to immune suppressors within 90 days
影响因子:5.7刊物:Frontiers in Immunology发表日期:2024-07-08 - Unraveling CCL20's role by regulating Th17 cell chemotaxis in experimental autoimmune prostatitis
影响因子:4.3刊物:JOURNAL OF CELLULAR AND MOLECULAR MEDICINE发表日期:2024-05-27 - High glucose intake exacerbates experimental autoimmune prostatitis through mitochondrial reactive oxygen species-dependent TGF-β activation-mediated Th17 differentiation
影响因子:4.8刊物:INTERNATIONAL IMMUNOPHARMACOLOGY发表日期:2024-02-22 - The CXCL10/CXCR3 axis regulates Th1 cell differentiation and migration in experimental autoimmune prostatitis through the PI3K/AKT pathway
影响因子:4.5刊物:Andrology发表日期:2023-12-14 - Salidroside affects the Th17/Treg cell balance in aplastic anemia via the STAT3/HIF-1α/RORγt pathway
影响因子:3.8刊物:REDOX REPORT发表日期:2023-07-13 - Alcohol intake exacerbates experimental autoimmune prostatitis through gut microbiota driving cholesterol biosynthesis-mediated Th17 differentiation
影响因子:4.8刊物:INTERNATIONAL IMMUNOPHARMACOLOGY发表日期:2023-09-08 - Alcohol intake exacerbates experimental autoimmune prostatitis through gut microbiota driving cholesterol biosynthesis-mediated Th17 differentiation
影响因子:4.8刊物:INTERNATIONAL IMMUNOPHARMACOLOGY发表日期:http://2023-09-08
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引用文献
1
Yu B, Dai C, Chen J, et al. Dysbiosis of gut microbiota induced the disorder of helper T cells in influenza virus-infected mice[J]. Human Vaccines & Immunotherapeutics, 2015, 11(5): 1140-1146 (IF:2.366)
查看原文
2
Song S S, Yuan P F, Li P P, et al. Protective Effects of Total Glucosides of Paeony on N-nitrosodiethylamine-induced Hepatocellular Carcinoma in Rats via Down-regulation of Regulatory B Cells[J]. Immunological Investigations, 2015, 44(6): 521 (IF:1.991)
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