Decoding Histamine Receptor Modulation: The Role of Heterocyclic Compounds in Next-generation Antihistaminic Drugs

The field of heterocyclic chemistry is a vital area of medicinal chemistry, characterized by notable dynamism that helps develop many physiologically active drugs. The extensive presence of heterocycles in drugs, natural products, and biological intermediates underscores their importance in the development of contemporary drugs. Histamine is an important endogenous biogenic amine with various physiological and immunological roles, including the inflammatory response, gastric acid secretion, neurotransmission, and immune regulation. The physiological effects of histamine are mediated by its interaction with four types of histamine receptors (H1, H2, H3, and H4). Histaminergic agents are of significant therapeutic importance due to their involvement in various disorders through dysregulated activity. Antihistamines have found applications in the management of problems related to the stomach, allergies, and certain neurodegenerative disorders. These drugs act by blocking histamine receptors. The first- and second-generation H1 antihistamines continue to play an important role in treating motion sickness, urticaria, and allergic rhinitis, as well as other conditions associated with these conditions. However, modern analogues of these drugs are much safer and do not cause any sedation. This review discusses the diversity of heterocycles in antihistaminic drugs, their interactions with receptors, their medicinal value, and the medicinal chemistry approaches that have paved the way for the development of such antihistamines.

Authors

Institutions

Publication Details

Journal
Mini-Reviews in Medicinal Chemistry
Published
2026-09-04
DOI
https://doi.org/10.2174/0113895575484983260821084406
Primary Topic
Mast cells and histamine
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Decoding Histamine Receptor Modulation: The Role of Heterocyclic Compounds in Next-generation Antihistaminic Drugs

Rakesh Sahu, Shriyansh Srivastava, Surendra Jatav, Saurabh Singh et al.
Mini-Reviews in Medicinal Chemistry
Mast cells and histamine
article

Decoding Histamine Receptor Modulation: The Role of Heterocyclic Compounds in Next-generation Antihistaminic Drugs

Rakesh Sahu, Shriyansh Srivastava, Surendra Jatav, Saurabh Singh, Manjot Singh, Ashish Yadav, Abhishek Maurya, S.K. Abdul Rahaman
article en

Abstract

The field of heterocyclic chemistry is a vital area of medicinal chemistry, characterized by notable dynamism that helps develop many physiologically active drugs. The extensive presence of heterocycles in drugs, natural products, and biological intermediates underscores their importance in the development of contemporary drugs. Histamine is an important endogenous biogenic amine with various physiological and immunological roles, including the inflammatory response, gastric acid secretion, neurotransmission, and immune regulation. The physiological effects of histamine are mediated by its interaction with four types of histamine receptors (H1, H2, H3, and H4). Histaminergic agents are of significant therapeutic importance due to their involvement in various disorders through dysregulated activity. Antihistamines have found applications in the management of problems related to the stomach, allergies, and certain neurodegenerative disorders. These drugs act by blocking histamine receptors. The first- and second-generation H1 antihistamines continue to play an important role in treating motion sickness, urticaria, and allergic rhinitis, as well as other conditions associated with these conditions. However, modern analogues of these drugs are much safer and do not cause any sedation. This review discusses the diversity of heterocycles in antihistaminic drugs, their interactions with receptors, their medicinal value, and the medicinal chemistry approaches that have paved the way for the development of such antihistamines.

Mini-Reviews in Medicinal ChemistryVol. 26
Galgotias University (IN), Sharda University (IN)
Good health and well-being
Openalex Percentile: Top 17%
Mast cells and histamine
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.