El Backly Rania M, Zaky Samer H, Canciani Barbara, Saad Manal M, Eweida Ahmed M, Brun Francesco, Tromba Giuliana, Komlev Vladimir S, Mastrogiacomo Maddalena, Marei Mona K, Cancedda Ranieri
Dipartimento di Medicina Sperimentale (D.I.M.E.S.) (Head: Prof. Maria Adelaide Pronzato), Università di Genova & AOU San Martino - Istituto Nazionale per la Ricerca sul Cancro, Largo Rosanna Benzi 10, 16132 Genova, Italy; Tissue Engineering Labs, Faculty of Dentistry (Dean: Prof. Dr. Ihab Hammad), Alexandria University, El-Guish Road, El-Shatby, 21526 Alexandria, Egypt.
Dipartimento di Medicina Sperimentale (D.I.M.E.S.) (Head: Prof. Maria Adelaide Pronzato), Università di Genova & AOU San Martino - Istituto Nazionale per la Ricerca sul Cancro, Largo Rosanna Benzi 10, 16132 Genova, Italy.
J Craniomaxillofac Surg. 2014 Jul;42(5):e70-9. doi: 10.1016/j.jcms.2013.06.012. Epub 2013 Aug 7.
The use of platelet rich plasma (PRP) in bone repair remains highly controversial. In this work, we evaluated the effect of lyophilized PRP on bone regeneration when associated with a silicon stabilized hydroxyapatite tricalcium phosphate scaffold in a rabbit calvarial defect (Skelite). Critical defects were created in the calvaria of twenty-four rabbits. The periosteum was removed and the defects were either left empty or filled with allogeneic PRP gel; Skelite particles; Skelite and PRP gel. Four animals were killed after 4 weeks, 10 animals after 8 and 10 after 16 weeks. Specimens were processed for X-ray microtomography (μCT) and for resin embedded histology. μCT analysis revealed significant osteoid-like matrix and new bone deposition in PRP + Skelite group at both 8 and 16 weeks in respect to Skelite alone. Histologically, PRP + Skelite defects were highly cellular with more abundant osteoid deposition and more regular collagen fibres. Moreover, in vitro migration assays confirmed the chemotactic effect of PRP to endothelial and osteoprogenitor cells. We conclude that the addition of PRP influenced the local tissue microenvironment by providing key cryptic factors for regeneration, thereby enhancing progenitor cell recruitment, collagen and bone matrix deposition, and by creating a bridging interface between the scaffold and bone.
富血小板血浆(PRP)在骨修复中的应用仍存在很大争议。在本研究中,我们评估了冻干PRP与硅稳定羟基磷灰石磷酸三钙支架(Skelite)联合应用于兔颅骨缺损时对骨再生的影响。在24只兔的颅骨上制造临界性缺损。去除骨膜,缺损处要么保持空置,要么填充异体PRP凝胶、Skelite颗粒、Skelite与PRP凝胶。4周后处死4只动物,8周后处死10只,16周后处死10只。对标本进行X线显微断层扫描(μCT)和树脂包埋组织学检查。μCT分析显示,与单独使用Skelite相比,PRP + Skelite组在8周和16周时均有明显的类骨质样基质和新骨沉积。组织学上,PRP + Skelite缺损处细胞丰富,类骨质沉积更多,胶原纤维更规则。此外,体外迁移试验证实了PRP对内皮细胞和骨祖细胞的趋化作用。我们得出结论,PRP的添加通过提供关键的再生隐性因子影响局部组织微环境,从而增强祖细胞募集、胶原和骨基质沉积,并在支架与骨之间形成桥接界面。