Descriptions:Human/Mouse/Rat Activin A Protein,expressed in E. coli
Tags:Activin A
Descriptions:白介素-4 (IL-4) 是由活化剂的 T 细胞细胞、肥大细胞、嗜碱性粒细胞、中性粒细胞和嗜酸性粒细胞产生的关键细胞因子。IL-4 对 Th2 介导传导的免疫反应的产生至关重要,这与过敏和相关。还能调节 B 细胞的疑似,包括发热、细胞肿胀和基因表达。IL-4 还在 B 细胞刺激中发挥重要作用,诱导 IgE 同型包括。
Tags:IL-4
Descriptions:Mouse IL-18 Protein, His tag (Animal-Free), expressed in E. coli
Tags:IL-18
Descriptions:Interleukin 19 (IL-19) predicts a molecular mass of 35.8 kDa, is a type of anti-inflammatory cytokine. It promotes the Th2 T-cell response which supports an anti-inflammatory lymphocyte phenotype, dampens the Th1 T-cell response and IFNγ secretion, increases IL-10 expression in peripheral blood mononuclear cells, and inhibits the production of IgG from B cells.
Tags:IL-19
Descriptions:Human Leptin Protein, expressed in E. coli
Tags:Leptin
Descriptions:Ciliary neurotrophic factor (CNTF) is a member of the cytokine family. It is a polypeptide hormone that has the function of promoting the synthesis of neurotransmitters and the growth of neurites in a specific neuronal population. Its action seems to be limited to the nervous system. Ciliary neurotrophic factor (CNTF) exerts its biological effects by activating a multi-subunit receptor complex consisting of an extracellular CNTF-binding subunit (CNTFα) and two transmembrane signaling proteins (glycoprotein gp130 and LIF receptor). CNTF is thought to be a potent survival factor in neurons and oligodendrocytes and may be associated with reduced tissue destruction during inflammatory episodes. CNTF is also a survival factor for peripheral sensory sympathetic ganglions and ciliary ganglia neurons. CNTF has been reported to have therapeutic potential and to greatly differentiate.
Tags:CNTF
Descriptions:Human VEGF121 Protein, expressed in E. coli
Tags:VEGF121
Descriptions:Human Galectin-1 Protein, expressed in E. coli
Tags:GAL-1
Descriptions:Soil β-glucosidase (S-β- GC)
Descriptions:血管内皮生长因子165(VEGF165)是一种强效的生长和血管生成细胞因子,属于VEGF家族,包括VEGF-A、VEGF-B、VEGF-C、VEGF-D、VEGF-E和PIGF。人VEGF165是一种丰富的糖基化细胞因子,由两条相同的165个氨基酸链组成。人VEGF165在胚胎血管生成、血管生成和神经发生中发挥重要作用。
Tags:VEGF165