Literature DB >> 10468667

Increased metabolism of infused 1-methylxanthine by working muscle.

J M Youd1, J M Newman, M G Clark, G J Appleby, S Rattigan, A C Tong, M A Vincent.   

Abstract

Exogenous substrates for capillary endothelial enzymes have potential as markers for changes in capillary recruitment (albeit nutritive flow). The metabolism of infused 1-methylxanthine (1-MX) to 1-methylurate (1-MU) by capillary endothelial xanthine oxidase of the constant-flow perfused rat hindlimb was shown previously to decrease with oxygen uptake (VO2) when nutritive flow was decreased. In the present study, the metabolism of 1-MX was investigated under conditions when VO2 and nutritive flow are known to increase during muscle contraction. The constant-flow red blood cell-perfused rat hindlimb at 37 degrees C was used with sciatic nerve stimulation, and perfusate samples from whole hindlimb and working muscles taken for analysis of oxygen, lactate, 1-MX and 1-MU. Flow to muscle was assessed separately using fluorescent microspheres and was found to increase 2.3-fold to the working muscles while flow to the non-working leg muscles decreased to compensate. The activity of xanthine oxidase of whole muscle extracts was not altered by contraction. Samples from the vein draining the working muscles, and microsphere measurements of flow, indicated increased VO2 (5.5-fold to 249.2 +/- 43.1 micromol h-1 g-1, P < 0.001), and 1-MX conversion (2.5-fold to 1.87 +/- 0.25 micromol h-1 g-1, P < 0.01) (SEM are shown). It is concluded that as 1-MX metabolism parallels VO2, this substrate may be a useful indicator of changes in capillary (nutritive) surface area in muscle.

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Year:  1999        PMID: 10468667     DOI: 10.1046/j.1365-201x.1999.00572.x

Source DB:  PubMed          Journal:  Acta Physiol Scand        ISSN: 0001-6772


  3 in total

Review 1.  Dynamics of muscle microcirculatory and blood-myocyte O(2) flux during contractions.

Authors:  D C Poole; S W Copp; D M Hirai; T I Musch
Journal:  Acta Physiol (Oxf)       Date:  2011-03-01       Impact factor: 6.311

2.  Axially symmetric semi-infinite domain models of microdialysis and their application to the determination of nutritive flow in rat muscle.

Authors:  Jason L Roberts; John M B Newman; Roland Warner; Stephen Rattigan; Michael G Clark
Journal:  J Physiol       Date:  2004-12-20       Impact factor: 5.182

3.  Acute glucosamine-induced insulin resistance in muscle in vivo is associated with impaired capillary recruitment.

Authors:  M G Wallis; M E Smith; C M Kolka; L Zhang; S M Richards; S Rattigan; M G Clark
Journal:  Diabetologia       Date:  2005-07-30       Impact factor: 10.122

  3 in total

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