Literature DB >> 14977879

Acute mechanoadaptation of vascular smooth muscle cells in response to continuous arteriolar vasoconstriction: implications for functional remodeling.

Luis A Martinez-Lemus1, Michael A Hill, Steffen S Bolz, Ulrich Pohl, Gerald A Meininger.   

Abstract

Arterioles exposed to norepinephrine (NE) for 4 h exhibit incomplete relaxation on removal of the agonist. We hypothesized that this is due to a mechanoadaptation process associated with active repositioning of vascular smooth muscle cells (VSMCs) within the vascular wall. Isolated arterioles were exposed to NE (10(-5.5) M) for either 5 min (n = 7) or 4 h (n = 13). During the 5-min exposure, vessel diameter was reduced to 61 +/- 2.6%, and cells shortened to 76.3 +/- 3.8% of control. After NE removal, vessel diameter and cell length returned to control values, which indicated that during acute vasoconstriction cells shorten and relengthen in a reversible fashion. In contrast, when NE exposure lasted 4 h, vessels did not return to control diameter, but VSMCs returned to control length after NE removal. During the 4-h constriction, 56% of the VSMCs began returning to control length, and the overlap between VSMCs increased, which indicated that cellular repositioning had occurred in the presence of the maintained constriction. Thus, in response to prolonged constriction, VSMCs undergo a mechanoadaptation process involving "length autoregulation" that would be energetically favorable for maintenance of a reduced diameter and may provide a mechanism for the development of eutrophic remodeling of the vascular wall.

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Year:  2004        PMID: 14977879     DOI: 10.1096/fj.03-0634fje

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  38 in total

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2.  A microfluidic platform for probing small artery structure and function.

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3.  Biomechanical and microstructural properties of common carotid arteries from fibulin-5 null mice.

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Review 4.  Small artery remodelling in hypertension: causes, consequences and therapeutic implications.

Authors:  Michael J Mulvany
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5.  Structural adaptation of microvessel diameters in response to metabolic stimuli: where are the oxygen sensors?

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6.  Prolonged vasoconstriction of resistance arteries involves vascular smooth muscle actin polymerization leading to inward remodelling.

Authors:  Marius C Staiculescu; Edgar L Galiñanes; Guiling Zhao; Uri Ulloa; Minshan Jin; Mirza I Beig; Gerald A Meininger; Luis A Martinez-Lemus
Journal:  Cardiovasc Res       Date:  2013-02-14       Impact factor: 10.787

Review 7.  Mechanisms of the inward remodeling process in resistance vessels: is the actin cytoskeleton involved?

Authors:  Jorge A Castorena-Gonzalez; Marius C Staiculescu; Christopher Foote; Luis A Martinez-Lemus
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Review 8.  The dynamic structure of arterioles.

Authors:  Luis A Martinez-Lemus
Journal:  Basic Clin Pharmacol Toxicol       Date:  2011-11-09       Impact factor: 4.080

Review 9.  The macrocirculation and microcirculation of hypertension.

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10.  Microstructurally motivated constitutive modeling of mouse arteries cultured under altered axial stretch.

Authors:  Laura Hansen; William Wan; Rudolph L Gleason
Journal:  J Biomech Eng       Date:  2009-10       Impact factor: 2.097

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