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Journal ArticleDOI

Measurement and Modeling of Transport Across the Blood-Brain Barrier.

Hanwen Fan, +2 more
- 20 Jun 2023 - 
- Vol. 145 8, Iss: 8
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TLDR
In this article , the authors provide a comprehensive summary of the brain transport mechanisms and the currently available in vivo methods and mathematic models in studying the molecule delivery process at the BBB interface, including in vivo brain uptake measurement methods, in vitro BBB models, and mathematic brain vascular models.
Abstract
The blood-brain barrier (BBB) is a dynamic regulatory barrier at the interface of blood circulation and the brain parenchyma, which plays a critical role in protecting homeostasis in the central nervous system. However, it also significantly impedes drug delivery to the brain. Understanding the transport across BBB and brain distribution will facilitate the prediction of drug delivery efficiency and the development of new therapies. To date, various methods and models have been developed to study drug transport at the BBB interface, including in vivo brain uptake measurement methods, in vitro BBB models, and mathematic brain vascular models. Since the in vitro BBB models have been extensively reviewed elsewhere, we provide a comprehensive summary of the brain transport mechanisms and the currently available in vivo methods and mathematic models in studying the molecule delivery process at the BBB interface. In particular, we reviewed the emerging in vivo imaging techniques in observing drug transport across the BBB. We discussed the advantages and disadvantages associated with each model to serve as a guide for model selection in studying drug transport across the BBB. In summary, we envision future directions to improve the accuracy of mathematical models, establish noninvasive in vivo measurement techniques, and bridge the preclinical studies with clinical translation by taking the altered BBB physiological conditions into consideration. We believe these are critical in guiding new drug development and precise drug administration in brain disease treatment.

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References
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Journal ArticleDOI

The Blood-Brain Barrier/Neurovascular Unit in Health and Disease

TL;DR: Understanding how BBB TJ might be affected by various factors holds significant promise for the prevention and treatment of neurological diseases.
Journal ArticleDOI

Graphical Evaluation of Blood-to-Brain Transfer Constants from Multiple-Time Uptake Data. Generalizations:

TL;DR: General equations are derived that can be used to analyze tissue uptake data when the blood–plasma concentration of the test substance cannot be easily measured and for situations when trapping of theTest substance is incomplete and for a combination of these two conditions.
Journal ArticleDOI

The tight junction: a multifunctional complex.

TL;DR: A group of integral membrane proteins-occludin, claudins, and junction adhesion molecules-interact with an increasingly complex array of tight junction plaque proteins not only to regulate paracellular solute and water flux but also to integrate such diverse processes as gene transcription, tumor suppression, cell proliferation, and cell polarity.
Journal ArticleDOI

The Permeability of Capillaries in Various Organs as Determined by Use of the ‘Indicator Diffusion’ Method

TL;DR: It is shown that the permeability of a capillary area can be expressed by three parameters: the initial extraction of test substances added in a single injection to the blood flowing to an organ, the blood flow and the surface area of the capillaries.
Journal ArticleDOI

Blood-Brain Barrier: From Physiology to Disease and Back

TL;DR: This review examines molecular and cellular mechanisms underlying the establishment of the blood-brain barrier, and examines how BBB dysfunction relates to neurological deficits and other pathologies in the majority of sporadic AD, PD, and ALS cases, multiple sclerosis, other neurodegenerative disorders, and acute CNS disorders.
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