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Updated: Feb 19, 2026

Isolation of Primary Patient-specific Aortic Smooth Muscle Cells and Semiquantitative Real-time Contraction Measurements In Vitro
Published on: February 15, 2022
Loss of Spry1 attenuates vascular smooth muscle proliferation by impairing mitogen-mediated changes in cell cycle
Xuehui Yang1, Yan Gong2, Qing He3
1Center for Molecular Medicine, Maine Medical Center Research Institute, Scarborough, Maine.
Abstract:
Signals from growth factors or mechanical stimuli converge to promote vascular smooth muscle cell (VSMC) migration and proliferation, key events in the pathogenesis of intimal hyperplasia upon vascular injury. Spry1, a regulator of receptor tyrosine kinases (RTK), plays a role in maintaining the contractile phenotype of VSMC. The aim of the current study was to determine the role of Spry1 in VSMC proliferation in vitro and injury induced neointimal hyperplasia in vivo. VSMC proliferation and neointima formation were evaluated in cultured human aortic SMC (hAoSMC) and ligation-induced injury of mouse carotid arteries from Spry1 gene targeted mice, and their corresponding wild type littermates. Human Spry1 or non-targeting control lentiviral shRNAs were used to knock down Spry1 in hAoSMC. Time course cell cycle analysis showed a reduced fraction of S-phase cells at 12 and 24 h after growth medium stimulation in Spry1 shRNA transduced hAoSMC. Consistent with reduced S-phase entry, the induction of cyclinD1 and the levels of pRbS807/S811, pH3Ser10, and pCdc2 were also reduced, while the cell cycle inhibitor p27Kip1 was maintained in Spry1 knockdown hAoSMC. In vivo, loss of Spry1 attenuated carotid artery ligation-induced neointima formation in mice, and this effect was accompanied by a decrease in cell proliferation similar to the in vitro results. Our findings demonstrate that loss of Spry1 attenuates mitogen-induced VSMC proliferation, and thus injury-induced neointimal hyperplasia likely via insufficient activation of Akt signaling causing decreased cyclinD1 and increased p27Kip1 and a subsequent decrease in Rb and cdc2 phosphorylation.
Insights
Loss of Spry1 reduces vascular smooth muscle cell (VSMC) proliferation and neointimal hyperplasia after injury. This occurs by inhibiting cell cycle progression, impacting key proteins involved in cell growth.
Area of Science:
- Vascular Biology
- Cell Signaling
- Molecular Medicine
Background:
- Vascular smooth muscle cell (VSMC) proliferation is crucial in intimal hyperplasia following vascular injury.
- Spry1 regulates receptor tyrosine kinases (RTKs) and maintains VSMC contractile phenotype.
- Understanding Spry1's role is vital for addressing vascular diseases.
Purpose of the Study:
- To investigate the role of Spry1 in VSMC proliferation in vitro.
- To examine Spry1's function in injury-induced neointimal hyperplasia in vivo.
Main Methods:
- Utilized cultured human aortic SMC (hAoSMC) and Spry1 gene-targeted mice.
- Employed lentiviral shRNAs to knockdown Spry1 in hAoSMC.
- Assessed cell cycle progression, protein levels, and neointima formation.
Main Results:
- Spry1 knockdown reduced VSMC S-phase entry and cyclinD1 induction.
- Levels of pRb, pH3, and pCdc2 were decreased, while p27Kip1 was maintained.
- Loss of Spry1 attenuated neointimal hyperplasia in mice, correlating with reduced cell proliferation.
Conclusions:
- Spry1 deficiency attenuates mitogen-induced VSMC proliferation.
- Loss of Spry1 inhibits injury-induced neointimal hyperplasia.
- This effect is mediated by altered Akt signaling, impacting cell cycle regulators.
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