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High-density lipoprotein-mimicking nanodiscs carrying peptide for enhanced therapeutic angiogenesis in diabetic hindlimb ischemia

机译:高密度脂蛋白模拟纳米盘携带肽可增强糖尿病后肢缺血的治疗性血管生成

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摘要

Therapeutic strategies using endogenous stem cell mobilizer can provide effective cell-free therapy for addressing various ischemic diseases. In particular, substance P (SP) exhibited therapeutic regeneration by facilitating mobilization of endogenous stem cells from bone marrow to the injured sites. However, its therapeutic effect has been limited due to short half-life and rapid degradation of administered SP peptides in vivo. Here we sought to develop high-density lipoprotein (HDL)-mimicking nanodiscs conjugated with SP (HDL-SP) in order to increase the in vivo half-life, bone marrow targeting, and therapeutic efficacy of SP for the treatment of diabetic peripheral ischemia. Conjugation of SP onto HDL nanodisc led to remarkable ~3215- and ~1060-fold increase in the ex vivo and in vivo half-lives of SP, respectively. Accordingly, HDL-SP nanodiscs improved retention of SP in bone marrow after systemic administration, leading to efficient mobilization of stem cells from bone marrow into blood circulation and reduction of systemic inflammation. Consequently, nanodisc based SP peptide delivery promoted blood vessel formation, blood perfusion recovery and markedly improved limb salvage in diabetic hindlimb ischemia model relative to administration of free SP without nanodisc modification. Therefore, HDL-SP nanodisc can provide a novel strategy for the treatment of diabetic ischemia and HDL nanodisc modification could be potentially useful for the extension of plasma circulation of other labile peptides.
机译:使用内源性干细胞动员剂的治疗策略可提供有效的无细胞疗法,以解决各种缺血性疾病。特别是,物质P(SP)通过促进内源性干细胞从骨髓动员至受伤部位而表现出治疗性再生。然而,由于短的半衰期和体内施用的SP肽的快速降解,其治疗效果受到限制。在这里,我们试图开发与SP(HDL-SP)共轭的高密度脂蛋白(HDL)-模拟纳米光盘,以增加SP的体内半衰期,骨髓靶向性以及治疗糖尿病周围缺血的治疗功效。 SP与HDL纳米光盘的缀合分别导致SP的离体和体内半衰期分别显着增加〜3215-和〜1060倍。因此,HDL-SP纳米光盘在全身性给药后改善了SP在骨髓中的保留,从而导致干细胞从骨髓有效动员到血液循环中,并减少了全身性炎症。因此,相对于未经纳米盘修饰的游离SP给药,基于纳米盘的SP肽递送促进了糖尿病后肢缺血模型中的血管形成,血液灌注恢复并显着改善了肢体抢救。因此,HDL-SP纳米碟片可为糖尿病性缺血的治疗提供一种新的策略,而HDL纳米碟片修饰可潜在地用于扩展其他不稳定肽的血浆循环。

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