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Peer-reviewed veterinary case report

Histamine: metabolism, physiology, and pathophysiology with applications in veterinary medicine.

Journal:
Journal of veterinary emergency and critical care (San Antonio, Tex. : 2001)
Year:
2009
Authors:
Peters, Lisa J & Kovacic, Jan P
Affiliation:
Department of Emergency and Critical Care

Plain-English summary

This research looks at histamine, a substance in the body that plays a role in various health issues, both in humans and animals. Histamine is involved in many important functions, like muscle contraction and stomach acid production, but it can also contribute to problems like allergies and gastrointestinal disorders. In veterinary medicine, studies are focusing on how different medications can affect histamine levels and how this knowledge can help treat conditions like trauma and sepsis in pets. The findings suggest that understanding how histamine works can lead to better treatments for various health issues in animals. Overall, the research indicates that new medications targeting histamine receptors could improve care for pets suffering from allergic reactions and other serious conditions.

Abstract

OBJECTIVE: To review the human and veterinary literature on histamine physiology and pathophysiology and potential applications for clinical use in veterinary critical care. DATA SOURCES: Human and veterinary clinical studies, reviews, texts, and recent research in histamine receptor and antagonist therapy. HUMAN DATA SYNTHESIS: Recent progress in molecular biology has led to a more complete understanding of the enzymes involved in histamine metabolism and histamine receptor physiology. The past decade of research has confirmed the role of histamine in the classical functions (contraction of smooth muscle, increase in vascular permeability, and stimulation of gastric acid secretion) and has also elucidated newer ones that are now under investigation. Data on the roles of histamine in angiogenesis, circadian rhythm, bone marrow regeneration, bacterial eradication, and cancer are emerging in the literature. Newer histamine antagonists are currently in drug trials and are expected to advance the clinical field in treatment of allergic, gastrointestinal, and cognitive disorders. VETERINARY DATA SYNTHESIS: Veterinary histamine research is directed at identifying the effects of certain pharmacological agents on blood histamine concentrations and establishing the relevance in clinical disease states. Research demonstrates important species differences in regards to histamine receptor physiology and tissue response. Studies in the area of trauma, sepsis, anaphylaxis, allergy, and gastrointestinal disorders have direct applications to clinical veterinary medicine. CONCLUSIONS: Histamine plays a key role in the morbidity and mortality associated with allergy, asthma, gastric ulcers, anaphylaxis, sepsis, hemorrhagic shock, anesthesia, surgery, cardiovascular disease, cancer, CNS disorders, and immune-mediated disease. Histamine antagonism has been in common use to block its adverse effects. With recent advances in the understanding of histamine receptor physiology, pharmaceutical agents targeting these receptors have increased the therapeutic options.

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Original publication: https://pubmed.ncbi.nlm.nih.gov/25164630/