Pharmacokinetics of intranasal drugs, still a missed opportunity?

IF 1.3 4区 医学 Q4 PHARMACOLOGY & PHARMACY Xenobiotica Pub Date : 2024-07-01 Epub Date: 2024-08-21 DOI:10.1080/00498254.2024.2349046
Maria Luisa Sardu, Italo Poggesi
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Abstract

The intranasal (IN) route of administration is important for topical drugs and drugs intended to act systemically. More recently, direct nose-to-brain input was considered to bypass the blood-brain barrier.Processes related to IN absorption and nose-to-brain distribution are complex and depend, sometimes in contrasting ways, on chemico-physical and structural parameters of the compounds, and on formulation options.Due to the intricacies of these processes and despite the large number of articles published on many different IN compounds, it appears that absorption after IN dosing is not yet fully understood. In particular, at variance of the understanding and modelling approaches that are available for predicting the pharmacokinetics (PK) following oral administration of xenobiotics, it appears that there is not a similar understanding of the chemico-physical and structural determinants influencing drug absorption and disposition of compounds after IN administration, which represents a missed opportunity for this research field. This is even more true regarding the understanding of the direct nose-to-brain input. Due to this, IN administrations may represent an interesting and open research field for scientists aiming to develop PK property predictions tools, mechanistic PK models describing rate and extent of IN absorption, and translational tools to anticipate the clinical PK following IN dosing based on in vitro and in vivo non clinical experiments.This review intends to provide: i) some basic knowledge related to the physiology of PK after IN dosing, ii) a non-exhaustive list of preclinical and clinical examples related to compounds explored for the potential nose-to-blood and nose-to-brain passage, and iii) the identification of some areas requiring improvements, the understanding of which may facilitate the development of IN drug candidates.

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鼻内用药的药代动力学,还在错失良机吗?
鼻内给药途径对于局部用药和全身用药非常重要。由于这些过程错综复杂,尽管发表了大量关于许多不同 IN 化合物的文章,但人们似乎尚未完全了解 IN 给药后的吸收情况。特别是,与预测异种生物口服给药后的药代动力学(PK)的理解和建模方法不同,对 IN 给药后影响药物吸收和化合物处置的化学物理和结构决定因素似乎没有类似的理解,这意味着这一研究领域错失了良机。在了解从鼻子到大脑的直接输入方面,情况更是如此。因此,对于旨在开发 PK 特性预测工具、描述 IN 吸收速率和程度的机理 PK 模型以及基于体外和体内非临床实验预测 IN 给药后临床 PK 的转化工具的科学家来说,IN 给药可能是一个有趣而开放的研究领域。本综述旨在提供:i) 与 IN 给药后 PK 生理相关的一些基本知识;ii) 非详尽的临床前和临床实例清单,这些实例与为潜在的鼻-血和鼻-脑通道而探索的化合物相关;iii) 确定一些需要改进的领域,对这些领域的了解可能有助于 IN 候选药物的开发。
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来源期刊
Xenobiotica
Xenobiotica 医学-毒理学
CiteScore
3.80
自引率
5.60%
发文量
96
审稿时长
2 months
期刊介绍: Xenobiotica covers seven main areas, including:General Xenobiochemistry, including in vitro studies concerned with the metabolism, disposition and excretion of drugs, and other xenobiotics, as well as the structure, function and regulation of associated enzymesClinical Pharmacokinetics and Metabolism, covering the pharmacokinetics and absorption, distribution, metabolism and excretion of drugs and other xenobiotics in manAnimal Pharmacokinetics and Metabolism, covering the pharmacokinetics, and absorption, distribution, metabolism and excretion of drugs and other xenobiotics in animalsPharmacogenetics, defined as the identification and functional characterisation of polymorphic genes that encode xenobiotic metabolising enzymes and transporters that may result in altered enzymatic, cellular and clinical responses to xenobioticsMolecular Toxicology, concerning the mechanisms of toxicity and the study of toxicology of xenobiotics at the molecular levelXenobiotic Transporters, concerned with all aspects of the carrier proteins involved in the movement of xenobiotics into and out of cells, and their impact on pharmacokinetic behaviour in animals and manTopics in Xenobiochemistry, in the form of reviews and commentaries are primarily intended to be a critical analysis of the issue, wherein the author offers opinions on the relevance of data or of a particular experimental approach or methodology
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