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In vivo tests of a novel wound dressing based on biomaterials with tissue adhesion controlled through external stimuli

机译:基于生物材料的新型伤口敷料的体内测试,该材料具有通过外部刺激控制的组织粘附力

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摘要

The high incidence of wounds by second intention and the high costs associated with their treatment give rise to the need for the development of wound dressings that protect not only the wounds themselves but that are also able to promote cell proliferation and skin regeneration. Moreover, it is also very important that no damage to the new regenerated tissue is generated while removing the dressing. In this work, a novel wound dressing, which would be able to favor tissue repair and be removed at an appropriate scheduled moment by means of an external stimulus without promoting extensive damage to the new tissue, was produced and tested. Polyurethane membranes were modified by grafting polymers based on poly(n-isopropylacrylamide) (P-N-IPAAm). P-N-IPAAm undergoes a phase transition at approximately 32°C, which changes its behavior from hydrophilic (below 32°C) to hydrophobic. It was hypothesized that, by reducing the temperature near the wound dressing to values lower than 32°C, the detachment of the dressing would become more effective. The wound dressings containing P-N-IPAAm grafts were tested in vivo by covering excisional wounds produced in mice. The produced dressings were placed in direct contact with the lesions for 3 days. Results showed that the hypothermia due to anesthesia required to remove the dressings from mice lowered the local temperature to 28°C and favored the detachment of the wound dressings containing P-N-IPAAm grafts. Histological analyses showed that lesions covered by dressings presented less intense inflammatory events and denser connective tissue than did the wounds without dressings. The wounds covered by polyurethane membranes with P-N-IPAAm grafts showed signs of more intense re-epithelization and angio-genesis than did the lesions covered by polyurethane without grafts.
机译:出于第二目的的高伤口发生率以及与之相关的高昂治疗费用,导致需要开发不仅可以保护伤口本身而且还可以促进细胞增殖和皮肤再生的伤口敷料。而且,在去除敷料时不对新的再生组织产生损伤也很重要。在这项工作中,生产并测试了一种新型伤口敷料,该伤口敷料能够促进组织修复,并在适当的预定时刻通过外部刺激将其去除,而不会引起对新组织的广泛损害。通过接枝基于聚(n-异丙基丙烯酰胺)(P-N-IPAAm)的聚合物来改性聚氨酯膜。 P-N-IPAAm在大约32°C时经历相变,将其行为从亲水性(低于32°C)改变为疏水性。据推测,通过将伤口敷料附近的温度降低到低于32℃的值,敷料的分离将变得更加有效。通过覆盖小鼠体内产生的切除伤口,对包含P-N-IPAAm移植物的伤口敷料进行了体内测试。将产生的敷料与病变直接接触3天。结果表明,从小鼠身上取下敷料所需的麻醉引起的体温过低将局部温度降低到28°C,并有利于含有P-N-IPAAm移植物的伤口敷料的分离。组织学分析表明,与没有敷料的伤口相比,被敷料覆盖的病变所引起的炎症事件更少,并且结缔组织更致密。 P-N-IPAAm移植物覆盖聚氨酯膜的伤口比没有移植物的聚氨酯覆盖的伤口显示出更强烈的上皮再生和血管生成的迹象。

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  • 来源
    《Journal of materials science》 |2011年第5期|p.1357-1364|共8页
  • 作者单位

    Universidade Federal dos Vales do Jequitinhonha e Mucuri -UFVJM, Diamantina, MG, Brazil;

    Universidade Federal De Minas Gerais - UFMG/ICB,Belo Horizonte, MG, Brazil;

    Universidade Federal De Minas Gerais - UFMG/ICB,Belo Horizonte, MG, Brazil;

    Universidade Federal De Minas Gerais - UFMG/ICB,Belo Horizonte, MG, Brazil;

    Centra Universitario do Leste de Minas Gerais - Unileste,Coronel Fabriciano, MG, Brazil;

    Universidade Federal de Minas Gerais - UFMG/DEMET,Belo Horizonte, MG, Brazil;

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