4.7 Article

OCTN1: A Widely Studied but Still Enigmatic Organic Cation Transporter Linked to Human Pathology and Drug Interactions

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出版社

MDPI
DOI: 10.3390/ijms23020914

关键词

acetylcholine; ergothioneine; carnitine; health; inflammation; oxidative stress; pharmacology; cancer

资金

  1. SI.F.I.PA.CRO.DE.-Sviluppo e industrializzazione farmaci innovativi per terapia molecolare personalizzata PA.CRO.DE - MIUR (Ministry of Education, University and Research) Italy [PON ARS01_00568]
  2. Ministero dell'Universita e Ricerca/Italian Ministry University and Research, Laboratorio LPCB, STAR IR, Via Tito Flavio, Universita della Calabria, Rende (CS) Italy [PIR01_0008]
  3. POR Calabria FESR-FSE 2014/2020-Linea B, Azione 10.5.12_Assegni di Ricerca

向作者/读者索取更多资源

The Novel Organic Cation Transporter 1 (OCTN1) belongs to a wider family of solute carriers and its role in protecting cells and tissues from oxidative and inflammatory damage is widely accepted. Its involvement in drug interactions and delivery has been well clarified, although the exact profile of transported molecules is still somewhat confusing. Therefore, the functional role and structure of OCTN1 continue to be a hot topic of research.
The Novel Organic Cation Transporter, OCTN1, is the first member of the OCTN subfamily; it belongs to the wider Solute Carrier family SLC22, which counts many members including cation and anion organic transporters. The tertiary structure has not been resolved for any cation organic transporter. The functional role of OCNT1 is still not well assessed despite the many functional studies so far conducted. The lack of a definitive identification of OCTN1 function can be attributed to the different experimental systems and methodologies adopted for studying each of the proposed ligands. Apart from the contradictory data, the international scientific community agrees on a role of OCTN1 in protecting cells and tissues from oxidative and/or inflammatory damage. Moreover, the involvement of this transporter in drug interactions and delivery has been well clarified, even though the exact profile of the transported/interacting molecules is still somehow confusing. Therefore, OCTN1 continues to be a hot topic in terms of its functional role and structure. This review focuses on the most recent advances on OCTN1 in terms of functional aspects, physiological roles, substrate specificity, drug interactions, tissue expression, and relationships with pathology.

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