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用含有 BMP-2 的涂层库对脱蛋白牛骨进行功能化处理,可使材料具有高效的成骨诱导作用,并抑制异物反应。

Functionalization of deproteinized bovine bone with a coating-incorporated depot of BMP-2 renders the material efficiently osteoinductive and suppresses foreign-body reactivity.

机构信息

Department of Oral Implantology and Prosthetic Dentistry, Academic Centre for Dentistry Amsterdam (ACTA), VU University and University of Amsterdam, Amsterdam, The Netherlands.

出版信息

Bone. 2011 Dec;49(6):1323-30. doi: 10.1016/j.bone.2011.09.046. Epub 2011 Sep 29.

DOI:10.1016/j.bone.2011.09.046
PMID:21983022
Abstract

The repair of critical-sized bony defects remains a challenge in the fields of implantology, maxillofacial surgery and orthopaedics. As an alternative bone-defect filler to autologous bone grafts, deproteinized bovine bone (DBB) is highly osteoconductive and clinically now widely used. However, this product suffers from the disadvantage of not being intrinsically osteoinductive. In the present study, this property was conferred by coating DBB with a layer of calcium phosphate into which bone morphogenetic protein 2 (BMP-2) was incorporated. Granules of DBB bearing a coating-incorporated depot of BMP-2--together with the appropriate controls (DBB bearing a coating but no BMP-2; uncoated DBB bearing adsorbed BMP-2; uncoated DBB bearing no BMP-2)--were implanted subcutaneously in rats. Five weeks later, the implants were withdrawn for a histomorphometric analysis of the volume densities of (i) bone, (ii) bone marrow, (iii) foreign-body giant cells and (iv) fibrous capsular tissue. Parameters (i) and (ii) were highest, whilst parameters (iii) and (iv) were lowest in association with DBB bearing a coating-incorporated depot of BMP-2. Hence, this mode of functionalization not only confers DBB with the property of osteoinductivity but also improves its biocompatibility--thus dually enhancing its clinical potential in the repair of bony defects.

摘要

在种植学、颌面外科和骨科领域,修复临界尺寸的骨缺损仍然是一个挑战。脱蛋白牛骨(DBB)作为一种替代自体骨移植物的骨缺损填充物,具有高度的骨诱导性,目前在临床上广泛应用。然而,该产品的缺点是本身不具有骨诱导性。在本研究中,通过将 DBB 涂层一层钙磷,将骨形态发生蛋白 2(BMP-2)掺入其中,从而赋予其这一特性。DBB 颗粒带有涂层和 BMP-2 储存库的涂层-一起与适当的对照物(带有涂层但没有 BMP-2 的 DBB;带有吸附 BMP-2 的未涂层 DBB;没有 BMP-2 的未涂层 DBB)一起植入大鼠皮下。5 周后,取出植入物进行组织形态计量学分析,测量(i)骨,(ii)骨髓,(iii)异物巨细胞和(iv)纤维囊组织的体积密度。与带有涂层和 BMP-2 储存库的 DBB 相关的参数(i)和(ii)最高,而参数(iii)和(iv)最低。因此,这种功能化方式不仅赋予 DBB 骨诱导性,还提高了其生物相容性-从而双重提高了其在修复骨缺损方面的临床潜力。

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