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Serum albumin: clinical significance of drug binding and development as drug delivery vehicle. | LitMetric

Serum albumin: clinical significance of drug binding and development as drug delivery vehicle.

Adv Protein Chem Struct Biol

Department of Biological Sciences and Biotechnology, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Selangor, Malaysia.

Published: April 2021

AI Article Synopsis

  • Human serum albumin plays a crucial role in drug transport and pharmacokinetics by binding to various ligands, affecting drug efficacy in the body.
  • Changes in albumin binding due to drug interactions or organ dysfunction can significantly impact how drugs work and lead to clinical implications.
  • The potential for using serum albumin in drug delivery systems is explored, highlighting its versatility and effectiveness in experimental and clinical settings.

Article Abstract

Human serum albumin, the primary transport and reservoir protein in the human circulatory system, interacts with numerous endogenous and exogenous ligands of varying structural characteristics. The mode of binding of drugs to albumin is central to understanding their pharmacokinetic profiles and has a major influence on their in vivo efficacy. Altered drug binding to albumin due to drug-drug interactions or abnormal physiology may result in marked changes in the active drug concentration, thus affecting its pharmacokinetic and pharmacodynamic properties. The propensity of drug-drug interaction to be clinically significant as well as possible exploitation of such interactions for therapeutic purposes is reviewed. Being the major organs of albumin metabolism, any impairment in the liver and kidney functions frequently alter the level of serum albumin, which affects the pharmacokinetic profiles of drugs and may have serious clinical implications. The natural function of serum albumin as a drug carrier is facilitated by its interaction with various cellular receptors. These receptors not only promote the uptake of drugs into cells but are also responsible for the extraordinarily long circulatory half-life of albumin. This property in combination with the presence of multiple ligand binding pockets have led to the emergence of serum albumin as an attractive vehicle for novel drug delivery systems. Here, we provide an overview of various albumin-based drug delivery strategies, classified according to their methods of drug attachment, and highlight their experimental and clinical successes.

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Source
http://dx.doi.org/10.1016/bs.apcsb.2020.08.003DOI Listing

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