Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Pharmacological profile of antihistamines: focus on unwanted drug interactions

View through CrossRef
Differences between individual antihistamines are determined by such pharmacokinetic properties as the rate and completeness of absorption, half-life, the participation of hepatic and renal mechanisms of elimination from the body. Pharmacodynamic features of the antihistamine include selectivity and affinity for histamine H1-receptors and the presence of central effects. The mechanisms of the development of unwanted drug interactions with second-generation antihistamines are analyzed in detail. Three levels of interaction have been identified: 1) hepatic enzymes of the P450 system; 2) membrane carriers of organic anions (OATP) transport proteins on the sinusoidal membrane of hepatocytes and the luminal membrane of the epithelium of the proximal nephron tubule; 3) P-glycoprotein (Pgp, ABCB1-protein) of epithelial cells of the small intestine the area of absorption of oral forms of antihistamines, the epithelium of the proximal tubule and the BBB (blood-brain barrier). The emphasis is made on the description of the dependence of the pharmacological profile of antihistamines on its chemical structure. The elasticity of the bilastine molecule, the ability to induce a change in conformation underlies the high complementarity of bilastine to the recognition site of the H1-receptor which is a high affinity. Experimental evaluation confirms this conclusion: the dissociation constant (Dс) of the bilastin-receptor complex is in the nM concentration range. The bilastine molecule, as a representative of antihistamines with zwitterionic properties, carries both a positive and a negative charge at a physiological pH, making it difficult for its penetration into the brain. The peculiarities of the chemical nature of the bilastine molecule are reflected in the specific pharmacological profile of AGP. In vitro studies have shown a high specific affinity of bilastine for H1-receptors with a very low affinity for other histamine receptors (H2, H3, H4), serotonin, bradykinin, muscarinic and adrenergic receptors). According to this indicator, bilastine is 3 times higher than cetirizine and 5 times higher than fexofenadine. Bilastine is practically not metabolized in the body and is excreted mainly unchanged, and also does not have a cardiotoxic effect. Bilastine is well tolerated; as a therapeutic dose it has a less pronounced sedative potential compared to other second-generation antihistamines.
Title: Pharmacological profile of antihistamines: focus on unwanted drug interactions
Description:
Differences between individual antihistamines are determined by such pharmacokinetic properties as the rate and completeness of absorption, half-life, the participation of hepatic and renal mechanisms of elimination from the body.
Pharmacodynamic features of the antihistamine include selectivity and affinity for histamine H1-receptors and the presence of central effects.
The mechanisms of the development of unwanted drug interactions with second-generation antihistamines are analyzed in detail.
Three levels of interaction have been identified: 1) hepatic enzymes of the P450 system; 2) membrane carriers of organic anions (OATP) transport proteins on the sinusoidal membrane of hepatocytes and the luminal membrane of the epithelium of the proximal nephron tubule; 3) P-glycoprotein (Pgp, ABCB1-protein) of epithelial cells of the small intestine the area of absorption of oral forms of antihistamines, the epithelium of the proximal tubule and the BBB (blood-brain barrier).
The emphasis is made on the description of the dependence of the pharmacological profile of antihistamines on its chemical structure.
The elasticity of the bilastine molecule, the ability to induce a change in conformation underlies the high complementarity of bilastine to the recognition site of the H1-receptor which is a high affinity.
Experimental evaluation confirms this conclusion: the dissociation constant (Dс) of the bilastin-receptor complex is in the nM concentration range.
The bilastine molecule, as a representative of antihistamines with zwitterionic properties, carries both a positive and a negative charge at a physiological pH, making it difficult for its penetration into the brain.
The peculiarities of the chemical nature of the bilastine molecule are reflected in the specific pharmacological profile of AGP.
In vitro studies have shown a high specific affinity of bilastine for H1-receptors with a very low affinity for other histamine receptors (H2, H3, H4), serotonin, bradykinin, muscarinic and adrenergic receptors).
According to this indicator, bilastine is 3 times higher than cetirizine and 5 times higher than fexofenadine.
Bilastine is practically not metabolized in the body and is excreted mainly unchanged, and also does not have a cardiotoxic effect.
Bilastine is well tolerated; as a therapeutic dose it has a less pronounced sedative potential compared to other second-generation antihistamines.

Related Results

Selection of Injectable Drug Product Composition using Machine Learning Models (Preprint)
Selection of Injectable Drug Product Composition using Machine Learning Models (Preprint)
BACKGROUND As of July 2020, a Web of Science search of “machine learning (ML)” nested within the search of “pharmacokinetics or pharmacodynamics” yielded over 100...
New oral H1 antihistamines in children: facts and unmeet needs
New oral H1 antihistamines in children: facts and unmeet needs
Background:  Second‐generation antihistamines differ from first‐generation ones because of their elevated specificity and affinity for peripheral H1‐receptors and because of their ...
Pharmacological Review of Drug Interactions
Pharmacological Review of Drug Interactions
Drug interaction (DI) occurs when the effects of one drug are altered by the presence of another drug, herbal medicine, foods, drink or by some environmental or chemical agents”. A...
Drivers of unwanted births in Bangladesh (2004 ̶ 2014): A decomposition analysis
Drivers of unwanted births in Bangladesh (2004 ̶ 2014): A decomposition analysis
Abstract Background In Bangladesh, about 30 percent of the total births a woman on average have (2.3 births) are unwanted. Reduction in unwanted births is very important f...
Clinically significant of drug-drug interactions among children: a review
Clinically significant of drug-drug interactions among children: a review
Drug-drug interactions among children are a getting along concern in health care settings, specifically intensive care units, as sources of adverse drug events that may affect pati...
ANALYZE DIFFERENT DRUGS FOR TREATING ALLERGIC RHINITIS IN ADULTS. A CROSS-SECTIONAL STUDY
ANALYZE DIFFERENT DRUGS FOR TREATING ALLERGIC RHINITIS IN ADULTS. A CROSS-SECTIONAL STUDY
Background: One of the most frequent and unfavourable medical conditions affecting a significant percentage of adult people worldwide is allergic rhinitis. This study set out to pr...
Study Of Drug Interaction in Diabetes Mellitus Therapy at the Inpatient Installation of Al Islam Hospital Bandung
Study Of Drug Interaction in Diabetes Mellitus Therapy at the Inpatient Installation of Al Islam Hospital Bandung
The patient's clinical outcome can be influenced by drug related problems, one of  which is drug interactions, because the more complex the therapy carried out, it will be in line ...

Back to Top