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冻干粉化富血小板血浆在可生物降解聚合物材料上的吸附形式的生物活性。

Bioactivity of freeze-dried platelet-rich plasma in an adsorbed form on a biodegradable polymer material.

机构信息

Division of Oral Bioengineering, Department of Tissue Regeneration and Reconstitution, Institute of Medicine and Dentistry, Niigata University, Niigata, Japan.

出版信息

Platelets. 2012;23(8):594-603. doi: 10.3109/09537104.2011.645923. Epub 2012 Jan 24.

Abstract

Owing to the necessity for the immediate preparation from patients' blood, autologous platelet-rich plasma (PRP) limits its clinical applicability. To address this concern and respond to emergency care and other unpredictable uses, we have developed a freeze-dried PRP in an adsorbed form on a biodegradable polymer material (Polyglactin 910). On the polymer filaments of PRP mesh, which was prepared by coating the polymer mesh with human fresh PRP and subsequent freeze-drying, platelets were incorporated, and related growth factors were preserved at high levels. This new PRP mesh preparation significantly and reproducibly stimulated the proliferation of human periodontal ligament cells in vitro and neovascularization in a chorioallantoic membrane assay. A full-thickness skin defect model in a diabetic mouse demonstrated the PRP mesh, although prepared from human blood, substantially facilitated angiogenesis, granulation tissue formation, and re-epithelialization without inducing severe inflammation in vivo. These data demonstrate that our new PRP mesh preparation functions as a bioactive material to facilitate tissue repair/regeneration. Therefore, we suggest that this bioactive material, composed of allogeneic PRP, could be clinically used as a promising alternative in emergency care or at times when autologous PRP is not prepared immediately before application.

摘要

由于需要立即从患者血液中制备,自体富血小板血浆 (PRP) 限制了其临床适用性。为了解决这个问题,并应对紧急护理和其他不可预测的用途,我们开发了一种冻干的 PRP,以吸附形式存在于可生物降解的聚合物材料(聚乳酸-910)上。在 PRP 网片的聚合物细丝上,通过将聚合物网片涂有人体新鲜 PRP 并随后冻干来制备 PRP 网片,血小板被掺入其中,并且相关的生长因子以高水平保存。这种新的 PRP 网片制备在体外显著且可重复地刺激人牙周韧带细胞的增殖,并在鸡胚尿囊膜试验中刺激新血管生成。在糖尿病小鼠的全层皮肤缺损模型中,尽管 PRP 网片是用人血制备的,但它在体内没有引起严重炎症的情况下,显著促进了血管生成、肉芽组织形成和再上皮化。这些数据表明,我们的新型 PRP 网片制备物作为一种生物活性材料,可促进组织修复/再生。因此,我们建议,这种由同种异体 PRP 组成的生物活性材料可在临床紧急护理或在应用前没有立即制备自体 PRP 的情况下,作为一种有前途的替代方法使用。

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