Caveolae-mediated Transport

Caveolae-mediated transport is the movement of molecules across or within cells through caveolae, small, flask-shaped invaginations of the plasma membrane that are especially abundant in endothelial and muscle cells. Caveolin proteins and cavin complexes stabilize these cholesterol- and sphingolipid-rich structures, which can internalize cargo by endocytosis or shuttle it across cells through transcytosis in response to mechanical and biochemical signals. In medicine, this pathway helps regulate vascular permeability, lipid handling, cell signaling, and tissue responses to stress. Understanding caveolae-mediated transport also supports research into vascular disease, drug delivery, infection, and disorders caused by defects in caveolar proteins.

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JoVE Core - Pharmacokinetics and Pharmacodynamics

Carrier-Mediated Transport

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2024

Carrier-mediated transport is a pivotal process in drug absorption, particularly for lipid-insoluble drugs, and encompasses facilitated diffusion and active transport. Facilitated diffusion allows drugs to move along their concentration gradient without energy expenditure, while active transport utilizes ATP to drive drug movement against this gradient. Active transport involves two types of membrane-spanning transporters: uptake and efflux. Uptake transporters are expressed in the small...

Drug Absorption Mechanism: Carrier-Mediated Membrane Transport

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2025

Certain large, lipid-insoluble drug molecules that resemble amino acids, peptides, or glucose, require specialized carrier proteins to facilitate their diffusion across cell membranes. This transport can occur through either facilitated diffusion, which does not require energy input, or active transport, which does require energy input. Facilitated diffusion is a passive process that utilizes human Solute Carrier (SLC) transporters. These transporters bind to the drug, undergo structural...

Physiological Pharmacokinetic Models: Incorporating Hepatic Transporter-Mediated Clearance

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2025

Drug transporters are critical in drug absorption, distribution, and excretion processes. They should be included in physiological-based pharmacokinetic (PBPK) models, which help predict human drug disposition. However, predicting this is challenging during drug development, especially when liver transport is involved. However, with a realistic representation of body transport processes, an accurate model may be possible. A recent model describes pravastatin's hepatobiliary excretion, mediated...

Transport and Acclimatization of Rodents for Research

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2026

All animal procedures described here must be conducted in accordance with institutional animal ethics guidelines and approved by IACUC. All procedures must follow the principles of the 3Rs—Replacement, Reduction, and Refinement—and must be performed by trained personnel. Transporting rodents for research requires procedures that minimize stress and maintain animal welfare during movement to minimize the influence on experimental outcomes. Transport cages should provide adequate ventilation,...

Regulated mRNA Transport

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2020

In eukaryotes, transcription and translation are compartmentalized; an mRNA is first synthesized in the nucleus and then selectively transported to the cytoplasm for protein synthesis. Before transport, a pre-mRNA undergoes several steps of post-transcriptional modifications including splicing, 5' capping, and the addition of a poly-adenine tail. Various proteins bind to the pre-mRNA during these modifications. The mRNA transport takes place with the help of multiple proteins playing specific...

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