Syndecan-4 proteoliposomes enhance revascularization in a rabbit hind limb ischemia model of peripheral ischemia

缺血 肢体缺血 医学 兔子(密码) 后肢 外围设备 材料科学 辛迪康1 血运重建 生物医学工程 严重肢体缺血 内科学 心脏病学 生物 细胞 计算机科学 心肌梗塞 遗传学 计算机安全
作者
Andrew D. Sligar,Gretchen Howe,Julia Goldman,Patricia Felli,Almudena Gómez‐Hernández,Eri Takematsu,Austin Veith,Shubh Desai,William J. Riley,Rohan Singeetham,Mei G. Lei,Gregory Callahan,David Ashirov,Richard W. Smalling,Aaron B. Baker
出处
期刊:Acta Biomaterialia [Elsevier BV]
卷期号:167: 425-435 被引量:3
标识
DOI:10.1016/j.actbio.2023.06.006
摘要

Regenerative therapeutics for treating peripheral arterial disease are an appealing strategy for creating more durable solutions for limb ischemia. In this work, we performed preclinical testing of an injectable formulation of syndecan-4 proteoliposomes combined with growth factors as treatment for peripheral ischemia delivered in an alginate hydrogel. We tested this therapy in an advanced model of hindlimb ischemia in rabbits with diabetes and hyperlipidemia. Our studies demonstrate enhancement in vascularity and new blood vessel growth with treatment with syndecan-4 proteoliposomes in combination with FGF-2 or FGF-2/PDGF-BB. The effects of the treatments were particularly effective in enhancing vascularity in the lower limb with a 2-4 increase in blood vessels in the treatment group in comparison to the control group. In addition, we demonstrate that the syndecan-4 proteoliposomes have stability for at least 28 days when stored at 4°C to allow transport and use in the hospital environment. In addition, we performed toxicity studies in the mice and found no toxic effects even when injected at high concentration. Overall, our studies support that syndecan-4 proteoliposomes markedly enhance the therapeutic potential of growth factors in the context of disease and may be promising therapeutics for inducing vascular regeneration in peripheral ischemia. Peripheral ischemia is a common condition in which there is a lack of blood flow to the lower limbs. This condition can lead to pain while walking and, in severe cases, critical limb ischemia and limb loss. In this study, we demonstrate the safety and efficacy of a novel injectable therapy for enhancing revascularization in peripheral ischemia using an advanced large animal model of peripheral vascular disease using rabbits with hyperlipidemia and diabetes.
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