Lorenz Jonas, Schlee Markus, Al-Maawi Sarah, Chia Poju, Sader Robert A, Ghanaati Shahram
FORM-Lab, Department of Oral, Cranio-Maxillofacial and Facial Plastic Surgery, Medical Center of the Goethe University Frankfurt, Frankfurt am Main, Germany.
Equally contributed.
Acta Stomatol Croat. 2017 Jun;51(2):141-147. doi: 10.15644/asc51/2/7.
This short communication reports on a histological analysis of the composition of the commercially available Maxgraft® allogeneic bone block.
Based on previously published, easily applicable histological methods, blanc samples of the Maxgraft® allogeneic bone block been decalcified, dehydrated and embedded in paraffin before histological and histochemical staining. Afterwards, the slides were evaluated for their material characteristics, such as the bone matrix structure and other components, including collagen or cells/cell remnants.
The results show that this bone block exhibits a trabecular structure with lamellar sub-organization. Additionally, cellular remnants within the osteocyte lacunae and at the outer trabecular surfaces reside together with remnants of the former inter-trabecular fatty and connective tissue, i.e., collagenous structures and connective tissue cells or cell remnants.
Consistent with a previous study on this topic, the data presented here demonstrate that some of the certified purification techniques might not allow for the production of allogeneic materials free of organic cell and tissue components.
本简短通讯报道了对市售Maxgraft®同种异体骨块成分的组织学分析。
基于先前发表的、易于应用的组织学方法,将Maxgraft®同种异体骨块的空白样本进行脱钙、脱水并嵌入石蜡,然后进行组织学和组织化学染色。之后,对玻片进行材料特性评估,如骨基质结构和其他成分,包括胶原蛋白或细胞/细胞残余物。
结果表明,该骨块呈现出具有板层亚结构的小梁结构。此外,骨细胞陷窝内和小梁外表面的细胞残余物与先前小梁间脂肪和结缔组织的残余物共存,即胶原结构和结缔组织细胞或细胞残余物。
与先前关于该主题的研究一致,此处呈现的数据表明,一些经认证的纯化技术可能无法生产出不含有机细胞和组织成分的同种异体材料。