Interleukin-6 biosynthesis is increased by histamine in human B-cell and glioblastoma cell lines

A Falus1

  • 1Department of Molecular Biology, National Institute of Rheumatology and Physiotherapy, Budapest, Hungary.

Immunology
|February 1, 1993
PubMed

An enhancing effect of histamine on the biosynthesis and gene expression of interleukin-6 (IL-6) by human cell lines, Epstein-Barr virus (EBV)-infected human B lymphoma line BMNH and the glioblastoma line SK-MG4 has been found. No similar effect of histamine has been detected on the IL-6 production by any other B-cell line, CESS or human peripheral monocytes. Histamine stimulates the IgM production of BMNH cells by autocrine action of IL-6 induced by histamine, since either neutralization of IL-6 by polyclonal antibody or blocking the IL-6 receptor by specific monoclonal antibody abolished the effect of histamine.

Related Concept Videos

Insulin Secretory Vesicles01:05

Insulin Secretory Vesicles

Insulin secretory vesicles release insulin to stimulate blood glucose uptake and regulate carbohydrate metabolism. When the blood glucose levels increase, glucose enters the pancreatic β-islet cells through glucose transporters. Once inside, glucose is metabolized through glycolysis, the citric acid cycle, and the electron transport chain, producing ATP. This increase in ATP concentration closes ATP-sensitive potassium channels, leading to depolarization of the membrane and the opening of...
T Cell Types and Functions01:24

T Cell Types and Functions

When T cells with CD4 markers are activated, they give rise to two types of effector cells: helper T cells and regulatory T cells. Meanwhile, T cells with CD8 markers differentiate into effector cytotoxic T cells. The differentiation of CD4 T cells into helper T cell subsets, such as Th1, Th2, and Th17 cells, is dependent on the antigen type, antigen-presenting cell, and regulatory cytokines.
Th1 cells stimulate dendritic cells to express necessary co-stimulatory molecules on their surfaces for...
Type I Diabetes II: Pathophysiology01:26

Type I Diabetes II: Pathophysiology

Type 1 diabetes mellitus arises from an immune-mediated destruction of pancreatic β-cells, resulting in an absolute deficiency of insulin. This process develops in genetically susceptible individuals when autoimmunity, environmental exposures, and immunologic dysregulation converge to trigger a targeted attack on the insulin-producing cells of the pancreas. The β-cells are located within the islets of Langerhans and are essential for regulating blood glucose by facilitating cellular uptake of...