4.5 Article

Bladder smooth muscle organ culture preparation maintains the contractile phenotype

Journal

AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY
Volume 303, Issue 9, Pages F1382-F1397

Publisher

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajprenal.00261.2011

Keywords

h-caldesmon; calponin; alpha-actin; myosin heavy chain; SM1/SM2; GFP-encoding adenovirus

Funding

  1. National Institute of Diabetes and Digestive and Kidney Diseases [DK 57252, DK 85734, DK 69898]
  2. O'Brien Urology Center [P50 DK 52620]
  3. Drexel University College of Medicine Aging Initiative

Ask authors/readers for more resources

Wang T, Kendig DM, Chang S, Trappanese DM, Chacko S, Moreland RS. Bladder smooth muscle organ culture preparation maintains the contractile phenotype. Am J Physiol Renal Physiol 303: F1382-F1397, 2012. First published August 15, 2012; doi:10.1152/ajprenal.00261.2011.-Smooth muscle cells, when subjected to culture, modulate from a contractile to a secretory phenotype. This has hampered the use of cell culture for molecular techniques to study the regulation of smooth muscle biology. The goal of this study was to develop a new organ culture model of bladder smooth muscle (BSM) that would maintain the contractile phenotype and aid in the study of BSM biology. Our results showed that strips of BSM subjected to up to 9 days of organ culture maintained their contractile phenotype, including the ability to achieve near-control levels of force with a temporal profile similar to that of noncultured tissues. The technical aspects of our organ culture preparation that were responsible, in part, for the maintenance of the contractile phenotype were a slight longitudinal stretch during culture and subjection of the strips to daily contraction-relaxation. The tissues contained viable cells throughout the cross section of the strips. There was an increase in extracellular collagenous matrix, resulting in a leftward shift in the passive length-tension relationship. There were no significant changes in the content of smooth muscle-specific alpha-actin, calponin, h-caldesmon, total myosin heavy chain, protein kinase G, Rho kinase-I, or the ratio of SM1 to SM2 myosin isoforms. Moreover the organ cultured tissues maintained functional voltage-gated calcium channels and large-conductance calcium-activated potassium channels. Therefore, we propose that this novel BSM organ culture model maintains the contractile phenotype and will be a valuable tool for the use in cellular/molecular biology studies of bladder myocytes.

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