[Antisenescence as a novel therapeutic strategy for vascular aging]
1Department of Cardiovascular Science and Medicine, Chiba University Graduate School of Medicine.
Abstract:
Vascular cells have a finite lifespan when cultured in vitro and eventually enter an irreversible growth arrest state called "cellular senescence." It has been reported that many of the changes in senescent vascular cell behavior are consistent with the changes seen in age-related vascular diseases. Recently, senescent vascular cells have been demonstrated in human atherosclerotic lesions but not non-atherosclerotic lesions. Moreover, these cells express increased levels of proinflammatory molecules and decreased levels of endothelial nitric oxide synthase, suggesting that cellular senescence in vivo contributes to the pathogenesis of human atherosclerosis. One widely discussed hypothesis of senescence is the telomere hypothesis. An increasing body of evidence has established the critical role of the telomere in vascular cell senescence. More recent evidence suggests that telomere-independent mechanisms are implicated in vascular cell senescence. Activation of Ras, an important signaling molecule involved in atherogenic stimuli, induces vascular cell senescence and thereby promotes vascular inflammation in vitro and in vivo. Constitutive activation of Akt also induces vascular cell senescence. This novel role of Akt in regulating the cellular lifespan may contribute to various human diseases including atherosclerosis and diabetes mellitus. Although a causal link between vascular aging and vascular cell senescence remains elusive, a large body of data is consistent with cellular senescence contributing to age-associated vascular disorders. This review considers the clinical relevance of vascular cell senescence in vivo and discusses the potential of antisenescence therapy for human atherosclerosis.
Insights
Cellular senescence, a state of irreversible growth arrest in vascular cells, is linked to age-related vascular diseases like atherosclerosis. Targeting senescent cells may offer new therapies for conditions such as atherosclerosis.
Area of Science:
- Cardiovascular Biology
- Cellular Aging
- Vascular Medicine
Background:
- Vascular cells in culture enter a state of irreversible growth arrest known as cellular senescence.
- Senescent vascular cell characteristics resemble those in age-related vascular diseases.
- Senescent vascular cells are found in human atherosclerotic lesions, unlike non-atherosclerotic ones.
Purpose of the Study:
- To review the clinical relevance of vascular cell senescence in vivo.
- To discuss the role of senescence in the pathogenesis of atherosclerosis.
- To explore the potential of antisenescence therapies for human atherosclerosis.
Main Methods:
- Review of existing literature on vascular cell senescence.
- Analysis of evidence linking telomere-dependent and independent mechanisms to senescence.
- Examination of signaling pathways like Ras and Akt in vascular cell senescence.
Main Results:
- Senescent vascular cells exhibit proinflammatory phenotypes and reduced endothelial nitric oxide synthase.
- Both telomere-dependent and independent pathways contribute to vascular cell senescence.
- Activation of Ras and Akt signaling molecules induces vascular cell senescence and inflammation.
Conclusions:
- Cellular senescence is implicated in the pathogenesis of human atherosclerosis.
- Senescence, driven by various mechanisms, contributes to age-associated vascular disorders.
- Antisenescence strategies hold promise for treating human atherosclerosis.
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