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Updated: Jun 2, 2026

Assessment of Vascular Tone Responsiveness using Isolated Mesenteric Arteries with a Focus on Modulation by Perivascular Adipose Tissues
Published on: June 3, 2019
Aging-induced collateral dysfunction: impaired responsiveness of collaterals and susceptibility to apoptosis via
Jinsong Wang1, Xinzhi Peng, Roberta M Lassance-Soares
1Cardiovascular Research Institute, MedStar Health Research Institute, Washington, DC 20010, USA.
Abstract:
Despite positive animal studies, clinical angiogenesis trials have been disappointing, possibly due to risk factors present in humans but usually unexplored in animals. We recently demonstrated aging causes impaired collateral remodeling and collateral dropout; here, we investigate potential mechanisms responsible for these findings. Four-, 10-, and 18-month-C57BL/6J mice were subjected to femoral artery ligation; flow was measured using laser Doppler perfusion imaging. Endothelial nitric oxide synthase (eNOS) and phosphorylated eNOS were measured in calf muscle. Apoptosis was assessed in endothelial (EC) and smooth muscle (SMC) cells isolated from young and old mice. Angiogenesis was measured using a Matrigel plug assay. Lethally irradiated young and old mice received bone marrow cells (BMC) from either young or old donors and were subjected to femoral artery ligation (FAL). BMC mobilization and homing were assessed. Flow recovery was impaired and less eNOS and phosphorylated eNOS was present in older vs. young mice (p < 0.001 and p = 0.015, respectively). ECs and SMCs from older mice were more sensitive to an apoptotic stimulus, but were rescued by NO-enhancing drugs. In older mice, angiogenesis (Matrigel plug assay) was impaired, as was mobilization and homing of BM progenitor cells following FAL. Although both mobilization and homing improved when older mice received BMC transplantation from young donors, flow recovery failed to improve. Aging impairs BMC mobilization and homing, collateral responsiveness to angiogenic stimuli, and increases EC and SMC susceptibility to apoptosis via dysfunctional eNOS signaling. The latter could contribute to impaired remodeling and collateral dropout. These finding identify potential obstacles to therapeutic interventions in elderly patients.
Insights
Aging impairs blood vessel repair by reducing nitric oxide signaling and increasing cell death susceptibility. This hinders collateral remodeling and poses challenges for therapeutic interventions in older individuals.
Area of Science:
- Cardiovascular Biology
- Aging Research
- Regenerative Medicine
Background:
- Clinical angiogenesis trials show disappointing results, potentially due to unaddressed human risk factors like aging.
- Previous studies indicated aging impairs collateral remodeling and leads to collateral dropout.
Purpose of the Study:
- To investigate the mechanisms behind age-related impairment in collateral remodeling and dropout.
- To explore the role of endothelial nitric oxide synthase (eNOS) signaling and cell apoptosis in aging-related vascular dysfunction.
Main Methods:
- Femoral artery ligation was performed on mice of different ages (4, 10, 18 months) to assess flow recovery.
- Endothelial nitric oxide synthase (eNOS) and phosphorylated eNOS levels were measured.
- Apoptosis in endothelial (EC) and smooth muscle (SMC) cells was evaluated.
- Angiogenesis was assessed using a Matrigel plug assay.
- Bone marrow cell (BMC) transplantation was performed between young and old mice.
Main Results:
- Older mice exhibited impaired flow recovery, reduced eNOS and phosphorylated eNOS levels, and increased EC/SMC apoptosis.
- NO-enhancing drugs rescued EC and SMC apoptosis in older mice.
- Angiogenesis, BMC mobilization, and homing were impaired in older mice.
- While BMC transplantation from young to old donors improved mobilization and homing, it did not restore flow recovery.
Conclusions:
- Aging negatively impacts BMC mobilization and homing, collateral responsiveness, and increases EC/SMC apoptosis via dysfunctional eNOS signaling.
- Impaired eNOS signaling and increased apoptosis contribute to age-related collateral dropout.
- These findings highlight obstacles to therapeutic interventions targeting vascular repair in elderly patients.
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