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Assessing Therapeutic Angiogenesis in a Murine Model of Hindlimb Ischemia
Published on: June 8, 2019
Assessing Therapeutic Angiogenesis in a Murine Model of Hindlimb Ischemia
Augusto Ministro1, Paula de Oliveira2, Raquel J Nunes2
1Centro Cardiovascular da Universidade de Lisboa, Lisbon School of Medicine of the Universidade de Lisboa; Centro Hospitalar Universitário Lisboa Norte; augusto.ministro@gmail.com.
Insights
This study presents a reproducible mouse model for critical limb ischemia (CLI) to test new angiogenic therapies. The developed methods accurately assess treatment effects at functional, histological, and molecular levels.
Area of Science:
- Vascular Biology
- Regenerative Medicine
- Preclinical Research
Background:
- Critical limb ischemia (CLI) poses a significant amputation risk, with many patients ineligible for standard revascularization.
- Angiogenic therapies offer a promising alternative for CLI, but require robust preclinical evaluation.
- Understanding therapeutic mechanisms necessitates validated animal models.
Purpose of the Study:
- To establish a reproducible mouse model of hindlimb ischemia (HLI).
- To develop a comprehensive testing framework for evaluating angiogenic therapies in CLI.
- To validate methods for assessing functional, histological, and molecular outcomes.
Main Methods:
- Hindlimb ischemia (HLI) induced by ligation and excision of distal arteries and veins in mice.
- Perfusion assessment using Laser Doppler flowmetry.
- Histological analysis of capillary and collateral vessel density (CD31 staining, diaphonization).
- Quantitative RT-PCR for angiogenic gene expression in endothelial cells (ECs) via laser capture microdissection.
Main Results:
- The HLI model demonstrated sensitivity in differentiating ischemic from non-ischemic limbs.
- Assessed methods effectively identified differences between treated and non-treated limbs.
- The protocol provided reproducible measurements at functional, histological, and molecular levels.
Conclusions:
- A reproducible mouse model for critical limb ischemia (CLI) has been established.
- A comprehensive framework for testing angiogenic therapies in CLI is presented.
- The validated methods enable sensitive assessment of therapeutic efficacy in preclinical settings.
Abstract:
Critical limb ischemia (CLI) is a serious condition that entails a high risk of lower limb amputation. Despite revascularization being the gold-standard therapy, a considerable number of CLI patients are not suited for either surgical or endovascular revascularization. Angiogenic therapies are emerging as an option for these patients but are currently still under investigation. Before application in humans, those therapies must be tested in animal models and its mechanisms must be clearly understood. An animal model of hindlimb ischemia (HLI) has been developed by the ligation and excision of the distal external iliac and femoral arteries and veins in mice. A comprehensive panel of tests was assembled to assess the effects of ischemia and putative angiogenic therapies at functional, histologic and molecular levels. Laser Doppler was used for the flow measurement and functional assessment of perfusion. Tissue response was evaluated by the analysis of capillary density after staining with the anti-CD31 antibody on histological sections of gastrocnemius muscle and by measurement of collateral vessel density after diaphonization. Expression of angiogenic genes was quantified by RT-PCR targeting selected angiogenic factors exclusively in endothelial cells (ECs) after laser capture microdissection from mice gastrocnemius muscles. These methods were sensitive in identifying differences between ischemic and non-ischemic limbs and between treated and non-treated limbs. This protocol provides a reproducible model of CLI and a framework for testing angiogenic therapies.
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