New insights into oxygen sensing at a cellular level

Walmsley, S R, Sheares, K K K, Sobolewski, A, Morrell, N W and Chilvers, E R (2004) New insights into oxygen sensing at a cellular level. Thorax, 59 (2). pp. 90-92. ISSN 0040-6376

Full text not available from this repository. (Request a copy)

Abstract

The ability of cells to detect and respond to a fall in oxygen tension is of fundamental importance for maintaining oxidative metabolism and tissue homeostasis. One of the challenges facing scientists working in this area has been that any proposed mechanism for oxygen sensing has to accommodate the very different tolerances of certain tissues to hypoxia and the extreme variation in the cellular responses observed. Hence, while skeletal muscle cells can recover function after 30 minutes of anoxia, the brain suffers irreparable damage after only 4–6 minutes of ischaemia.1 Moreover, while carotid body cells respond to changes in oxygen tension that barely register in non-chemosensory tissues (and do so within seconds),2 upregulation of erythropoietin synthesis in the interstitial peritubular cells is transcriptionally regulated and requires far more protracted periods of hypoxaemia.3 Despite such variances in oxygen sensitivity and response time, all cells appear capable of responding to hypoxia and the essential components of a universal oxygen sensing mechanism have at last begun to emerge. Moreover, from studies conducted in stroke and heart disease, it is apparent that therapeutic targeting of this novel pathway is set to transform our approach to pathology previously deemed intractable.

Item Type: Article
Faculty \ School: Faculty of Science > School of Biological Sciences
Faculty of Science > School of Pharmacy
UEA Research Groups: Faculty of Science > Research Groups > Molecular and Tissue Pharmacology
Depositing User: Pure Connector
Date Deposited: 12 Oct 2016 15:00
Last Modified: 22 Oct 2022 01:44
URI: https://ueaeprints.uea.ac.uk/id/eprint/60888
DOI: 10.1136/thorax.2003.017020

Actions (login required)

View Item View Item