Javascript must be enabled to continue!
Enhanced induction of a histamine-forming enzyme, histidine decarboxylase, in mice primed with NOD1 or NOD2 ligand in response to various Toll-like receptor agonists
View through CrossRef
We investigated the immunopharmacological aspects of innate immune responses via Toll-like receptors (TLRs), NOD1 and NOD2, in terms of induction of the histamine-forming enzyme, histidine decarboxylase (HDC), activity in mice. Intravenous injection of TLR4-agonistic synthetic lipid A definitely induced HDC activity in the liver, spleen, and lungs, especially the lungs, in mice, where maximum activity was induced about 3 h after the injection of lipid A. The TLR2/6 agonistic synthetic diacyl-type lipopeptide FSL-1 and TLR3-agonistic poly I:C were also effective in inducing HDC, while the NOD2-agonistic synthetic muramyldipeptide (MDP) and NOD1-agonistic synthetic FK156 and FK565 exhibited only weak activities in this respect. Mice primed with intravenous injection of NOD1 or NOD2 agonists produced higher HDC activity following the 4—6 h later intravenous challenge with the above TLR agonists. Among the priming agents, FK565 exhibited the strongest activity, and it was effective via various administration routes — intraperitoneal, subcutaneous, intramuscular, as well as intravenous injection; furthermore, oral (gastric) administration was effective, although it needed a dose 10 times higher than that required for other administration routes. These findings suggest that HDC is induced in association with TLRs and NOD1/2, and that the newly formed histamine by the induced HDC might play important roles in the regulation of inflammatory and immune responses in various organs.
SAGE Publications
Title: Enhanced induction of a histamine-forming enzyme, histidine decarboxylase, in mice primed with NOD1 or NOD2 ligand in response to various Toll-like receptor agonists
Description:
We investigated the immunopharmacological aspects of innate immune responses via Toll-like receptors (TLRs), NOD1 and NOD2, in terms of induction of the histamine-forming enzyme, histidine decarboxylase (HDC), activity in mice.
Intravenous injection of TLR4-agonistic synthetic lipid A definitely induced HDC activity in the liver, spleen, and lungs, especially the lungs, in mice, where maximum activity was induced about 3 h after the injection of lipid A.
The TLR2/6 agonistic synthetic diacyl-type lipopeptide FSL-1 and TLR3-agonistic poly I:C were also effective in inducing HDC, while the NOD2-agonistic synthetic muramyldipeptide (MDP) and NOD1-agonistic synthetic FK156 and FK565 exhibited only weak activities in this respect.
Mice primed with intravenous injection of NOD1 or NOD2 agonists produced higher HDC activity following the 4—6 h later intravenous challenge with the above TLR agonists.
Among the priming agents, FK565 exhibited the strongest activity, and it was effective via various administration routes — intraperitoneal, subcutaneous, intramuscular, as well as intravenous injection; furthermore, oral (gastric) administration was effective, although it needed a dose 10 times higher than that required for other administration routes.
These findings suggest that HDC is induced in association with TLRs and NOD1/2, and that the newly formed histamine by the induced HDC might play important roles in the regulation of inflammatory and immune responses in various organs.
Related Results
NOD1/CARD4(G796A) and NOD2/CARD15(R702W, G908R and L1007fsinC) polymorphisms associated with Crohn's disease in Iraqi patients
NOD1/CARD4(G796A) and NOD2/CARD15(R702W, G908R and L1007fsinC) polymorphisms associated with Crohn's disease in Iraqi patients
Inflammatory bowel disease (IBD) applies to two main forms of chronic relapsing inflammatory intestinal disorders: Crohn's disease (CD), Ulcerative colitis (UC). CD requires an irr...
Histamine production by human neutrophils
Histamine production by human neutrophils
Histamine is an important mediator in the development of allergic reactions. Only a small subset of human cell types is able to produce histamine. No previous studies have shown th...
NOD2 signalling in Crohn's disease
NOD2 signalling in Crohn's disease
Introduction
NOD2 is an intracellular pattern recognition receptor that induces autophagy in human dendritic cells (DCs) in a manner important for bacterial handl...
Histamine: Insights into Structure, Synthesis, Metabolism and the Physiological Actions
Histamine: Insights into Structure, Synthesis, Metabolism and the Physiological Actions
Background: Histamine is a biogenic amine produced from different tissues and organs as skin, lung and digestive system. It play important role in regulation of sensation of pain,...
Influence du microbiote intestinal sur la régulation de l'immunosurveillance du cancer
Influence du microbiote intestinal sur la régulation de l'immunosurveillance du cancer
La protéine 2 contenant un domaine d'oligomérisation de liaison aux nucléotides(NOD2) est apparue comme un acteur essentiel de l'équilibre entre les réponses immunitaires effectric...
Identification and Evaluation of Benzimidazole-Agonists of Innate Immune Receptor NOD2
Identification and Evaluation of Benzimidazole-Agonists of Innate Immune Receptor NOD2
ABSTRACT
Emerging evidence has demonstrated the importance of pattern recognition receptors (PRRs), including the nucleotide-binding and oligomerization domain rece...
Histamine‐induced increases in cyclic AMP levels in bovine adrenal medullary cells
Histamine‐induced increases in cyclic AMP levels in bovine adrenal medullary cells
The effect of histamine on cellular cyclic AMP levels in cultured bovine adrenal medullary cells has been studied.
Histamine (0.3–30 μm) increased cyclic AMP levels transiently, wi...
Function and Role of Histamine H1 Receptor in the Mammalian Heart
Function and Role of Histamine H1 Receptor in the Mammalian Heart
Histamine can change the force of cardiac contraction and alter the beating rate in mammals, including humans. However, striking species and regional differences have been observed...

