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Updated: May 28, 2026

Ultrasonography of the Adult Male Urinary Tract for Urinary Functional Testing
Published on: August 14, 2019
SM2(+/-) male mice are predisposed to develop urinary tract obstruction and hyper contractility of the bladder smooth
Mei Chi1, Yingbi Zhou, Danesh Sopariwala
1Department of Physiology and Cell Biology, College of Medicine and Public Health, The Ohio State University, USA.
Abstract:
We previously showed that complete loss of smooth muscle myosin heavy chain isoform 2 (SM2) resulted in postnatal lethality, but in het mice a partial loss of SM2 (SM2(+/-)) was accompanied by down-regulation of SM1 with unaltered SM2:SM1 ratio. To determine whether a normal bladder function would be maintained throughout its lifespan, we aged WT and SM2(+/-) mice up to 18 months and analyzed a) SM2:SM1 ratio b) bladder smooth muscle structure and c) function in SM2(+/-) het mice. A notable finding was that ~50% of 15-18 months old male SM2(+/-) mice exhibited urinary retention in bladder with the distention of upper urethra. In SM2(+/-) mouse bladder with urinary retention, the SM2:SM1 ratio was decreased but not in SM2(+/-) mouse bladder that did not develop urinary retention. Interestingly in the distended bladder the expression levels of α-actin and tropomyosin remained unaltered despite a reduction in the number of myosin thick filaments. These distended bladders showed hypersensitivity to submaximal K(+) depolarization and M3-receptor stimulation, without a significant increase in myosin light chain phosphorylation. We therefore suggest that a partial loss of SM2 may predispose male mice to develop lower urinary tract obstruction during ageing. In addition our data suggest that bladder obstruction can cause a further reduction in SM2 expression and SM2:SM1 ratio, and a hyper-contractility of the bladder smooth muscle.
Insights
Partial loss of smooth muscle myosin heavy chain isoform 2 (SM2) predisposes aging male mice to urinary retention. This condition further reduces SM2 expression and causes bladder hyper-contractility.
Area of Science:
- Urology
- Smooth Muscle Physiology
- Molecular Biology
Background:
- Complete loss of smooth muscle myosin heavy chain isoform 2 (SM2) causes postnatal lethality.
- Partial SM2 loss (SM2(+/-)) in mice leads to SM1 downregulation but maintains the SM2:SM1 ratio.
Purpose of the Study:
- To investigate bladder function maintenance throughout the lifespan of WT and SM2(+/-) mice.
- To analyze the SM2:SM1 ratio, bladder smooth muscle structure, and function in aging SM2(+/-) mice.
Main Methods:
- Aging of wild-type (WT) and SM2(+/-) mice up to 18 months.
- Analysis of SM2:SM1 ratio, bladder smooth muscle structure, and bladder function.
- Assessment of responses to K+ depolarization and M3-receptor stimulation.
Main Results:
- Approximately 50% of 15-18 month old male SM2(+/-) mice exhibited urinary retention and upper urethra distention.
- Urinary retention in SM2(+/-) bladders correlated with a decreased SM2:SM1 ratio.
- Distended bladders showed hypersensitivity to stimuli without increased myosin light chain phosphorylation, despite reduced myosin thick filaments.
Conclusions:
- Partial SM2 loss may predispose aging male mice to lower urinary tract obstruction.
- Bladder obstruction can exacerbate SM2 expression reduction and SM2:SM1 ratio decrease.
- Age-related bladder obstruction is associated with smooth muscle hyper-contractility.

