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Front Physiol. 2016 Feb 23;7:50. doi: 10.3389/fphys.2016.00050. eCollection 2016.
3
Periodontal tissue regeneration by transplantation of rat adipose-derived stromal cells in combination with PLGA-based solid scaffolds.通过移植大鼠脂肪来源的基质细胞与聚乳酸-羟基乙酸共聚物(PLGA)基固体支架相结合实现牙周组织再生。
Biomed Res. 2014;35(2):91-103. doi: 10.2220/biomedres.35.91.
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Periodontal regeneration following implantation of cementum and periodontal ligament-derived cells.牙周膜细胞和牙骨质来源细胞植入后的牙周再生。
J Periodontal Res. 2012 Feb;47(1):33-44. doi: 10.1111/j.1600-0765.2011.01402.x. Epub 2011 Sep 12.
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Evaluation of biomimetic scaffold of gelatin-hydroxyapatite crosslink as a novel scaffold for tissue engineering: biocompatibility evaluation with human PDL fibroblasts, human mesenchymal stromal cells, and primary bone cells.评价明胶-羟磷灰石交联仿生支架作为一种新型组织工程支架:与人牙周膜成纤维细胞、人骨髓间充质干细胞和原代骨细胞的生物相容性评价。
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二氧化氢处理对鸭喙骨源天然生物陶瓷微粒成骨潜能的影响

Effect of Hydrogen Dioxide Treatment on the Osteogenic Potential of Duck-beak Bone-derived Natural Bioceramic Microparticles.

作者信息

Kim Joong-Hyun, Park Min-Ho, Jang Seok Jin, Son Soo Jin, Lee Jae Yeon, Son Jun Sik, Kim Se Eun, Kang Seong Soo, Choi Seok Hwa

机构信息

Department of Periodontology, School of Dentistry, Chonbuk National University, Jeonju, Republic of Korea.

Department of Veterinary Surgery, Veterinary Medical Center and College of Veterinary Medicine, Chungbuk National University, Cheongju, Republic of Korea.

出版信息

In Vivo. 2017 May-Jun;31(3):373-379. doi: 10.21873/invivo.11069.

DOI:10.21873/invivo.11069
PMID:28438865
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5461447/
Abstract

As an alternative material to the autogenous bone, duck-beak bone particle for bone substitute have been attracting great attention due to their biological properties. To deliver the most favorable outcome of medical treatment, it is essential to study the effect of various processing methods of the duck-beak bone. In this study, we compared the two deproteinizing agents for manufacturing duck-beak bone. Group 1 was treated by a conventional chemical agent (ethylenediamine) and Group 2 by hydrogen dioxide (HO). In vitro and in vivo experiments were conducted in parallel to compare the cytocompatibility and osteogenic capability between two processing methods. For in vitro tests, human adipose-derived mesenchymal stem cells (hAD-MSCs) were planted onto each sample and their attachment and growing were evaluated. For in vivo biocompatibility and osteogenic properties, the samples were applied on the critical-sized calvarial bone defect of rats. Group 2 showed significantly higher cell attachment but Group1 showed slightly higher cell proliferation. In in vivo tests, all groups have shown biocompatibility and increased level of osteogenic potential. However, Group 2 had significantly higher bone regeneration (p<0.05). This experiment confirmed that HO can be an optimal processing method for duck-beak bone particle.

摘要

作为自体骨的替代材料,鸭喙骨颗粒因其生物学特性在骨替代物方面备受关注。为了实现最佳的治疗效果,研究鸭喙骨的各种加工方法的效果至关重要。在本研究中,我们比较了两种用于制造鸭喙骨的脱蛋白剂。第1组用传统化学试剂(乙二胺)处理,第2组用二氧化氢(HO)处理。同时进行体外和体内实验,以比较两种加工方法之间的细胞相容性和成骨能力。体外试验中,将人脂肪来源的间充质干细胞(hAD-MSCs)接种到每个样本上,评估其附着和生长情况。在体内生物相容性和成骨特性方面,将样本应用于大鼠的临界尺寸颅骨缺损处。第2组显示出明显更高的细胞附着,但第1组显示出略高的细胞增殖。在体内试验中,所有组均显示出生物相容性和成骨潜能水平增加。然而,第2组的骨再生明显更高(p<0.05)。本实验证实,HO可以作为鸭喙骨颗粒的一种最佳加工方法。