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首页> 外文期刊>International Journal of Clinical and Experimental Medicine >HDFx: a novel biologic immunomodulator accelerates wound healing and is suggestive of unique regenerative powers: potential implications for the warfighter and disaster victims
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HDFx: a novel biologic immunomodulator accelerates wound healing and is suggestive of unique regenerative powers: potential implications for the warfighter and disaster victims

机译:HDFx:一种新型生物免疫调节剂,可加速伤口愈合,并具有独特的再生能力:对战士和灾难受害者的潜在影响

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Recently, we reported on the discovery of a new, conserved biologic protein (35-40 KDa), termed HDFx, that protects rats, guinea-pigs, mice, and rabbits against lethal hemorrhage, endotoxins, intestinal ischemic-shock, and traumatic injuries. It was found to stimulate several arms of the immune system. The present report demonstrates, for the first time, that HDFx accelerates wound healing in two different models (excision wound model; and incision wound model) in rats. The results shown, herein, indicate that HDFx produces greater rates of wound contraction, greater tensile strength, and more rapid healing than controls. Our new data also show that this biologic increases hydroxyproline content of granulation tissue coupled with a reduction in superoxide dismutase (SOD). In addition, we show that HDFx increases the levels of serum ascorbic acid and stimulates the mononuclear cells of the reticuloendothelial system (RES). Overall, these data suggest that HDFx may possess unique regenerative powers. We, thus, believe that HDFx can be of great potential use in diverse types of wounds which, otherwise, could result in difficult to treat infections and thus prevent sepsis and loss of body parts from amputations.
机译:最近,我们报道了一种新的,保守的生物蛋白(35-40 KDa)的发现,该蛋白称为HDFx,可保护大鼠,豚鼠,小鼠和兔子免受致命性出血,内毒素,肠缺血性休克和创伤性伤害。人们发现它可以刺激免疫系统的多个分支。本报告首次证明,HDFx在大鼠的两种不同模型(切除伤口模型和切口伤口模型)中加速伤口愈合。本文显示的结果表明,HDFx与对照相比可产生更大的伤口收缩率,更大的拉伸强度和更快的愈合速度。我们的新数据还表明,这种生物制剂增加了肉芽组织中羟脯氨酸的含量,同时降低了超氧化物歧化酶(SOD)。此外,我们显示HDFx会增加血清抗坏血酸的水平,并刺激网状内皮系统(RES)的单核细胞。总体而言,这些数据表明HDFx可能具有独特的再生能力。因此,我们认为HDFx可能在各种类型的伤口中具有巨大的潜在用途,否则可能导致难以治疗的感染,从而防止脓毒症和截肢引起的身体部位损失。

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