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Blood coagulation inducing synthetic polymer hydrogel.

机译:凝血诱导合成聚合物水凝胶。

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摘要

Uncontrolled hemorrhaging, or blood loss, accounts for upwards of 3 million deaths each year and is the leading cause of preventable deaths after hospital admission around the world. Biological-based hemostatics are quite effective at controlling blood loss, but prohibitively expensive for people in developing countries where over 90% of these deaths are occurring. Synthetic-based hemostatics are less expensive, yet not nearly as effective as their biological counterparts. A better understanding of how synthetic materials interact with and affect the body's natural clotting response is vital to the development of future hemostatic material technology which will help millions around the world.;Initial in vitro experimentation focused on investigating the key chemical and structural material properties which affect Factor VII (FVII) activation in citrated human plasma. Enzyme-linked assays were utilized to confirm the ability of specifically formulated charged hydrogels to induce FVII activation and provided insight into the critical material parameters involved in this activation. Dynamic mechanical analysis was used to establish a correlation between polymeric microstructure and FVII activation. Experiments utilizing coagulation factor depleted and inhibited plasmas indicated that FVII, FX, FII, and FI are all vital to the process outlining the general mechanism of fibrin formation from the onset of FVII activation. The ability of the polymer to induce fibrin formation in "artificial plasma" explicitly lacking calcium, TF, and platelets suggested that a specifically designed material surface has the capability to substitute for these vital cofactors.;Clinical diagnostic experimentation using sheep blood indicated that hydrogels containing higher amounts of electrostatic positive charge and lower cross-link density were able to induce faster, more robust clot formation in the presence of a coagulation cascade activator. Subsequent in vivo animal experimentation clearly demonstrated the ability of such hydrogels to aggregate platelets and erythrocytes promoting the formation of an effective hemostatic seal at the wound site. Moreover, in vivo testing confirmed the viability of such a charged polymer hydrogel to effectively control blood loss in a clinically relevant model.
机译:失控的出血或失血每年导致超过300万人死亡,并且是全世界住院后可预防的死亡的主要原因。基于生物的止血剂在控制失血方面非常有效,但对于这些人中有90%以上死亡的发展中国家的人来说,价格昂贵。合成止血药价格便宜,但效果却不及生物学止血药。更好地了解合成材料如何与人体自然凝结反应相互作用以及如何影响其自然凝结反应,这对于未来的止血材料技术的发展至关重要,该技术将为全球数以百万计的人提供帮助。影响柠檬酸化人血浆中的因子VII(FVII)激活。酶联测定法被用于确认专门配制的带电水凝胶诱导FVII活化的能力,并提供了对该活化所涉及的关键物质参数的了解。动态力学分析用于建立聚合物微观结构与FVII活化之间的相关性。利用凝血因子耗竭和抑制血浆的实验表明,FVII,FX,FII和FI对概述从FVII激活开始形成血纤蛋白的一般机理的过程都是至关重要的。聚合物在明显缺乏钙,TF和血小板的“人工血浆”中诱导纤维蛋白形成的能力表明,经过特殊设计的物质表面具有替代这些重要辅因子的能力。;使用绵羊血进行的临床诊断实验表明,含有在存在凝血级联活化剂的情况下,较高数量的正电荷和较低的交联密度能够诱导更快,更牢固的血凝块形成。随后的体内动物实验清楚地证明了这种水凝胶聚集血小板和红细胞的能力,从而促进在伤口部位形成有效的止血密封。此外,体内测试证实了这种带电荷的聚合物水凝胶在临床相关模型中有效控制失血的可行性。

著录项

  • 作者

    Casey, Brendan John.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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