Bone Regeneration in SLS-Manufactured Resorbable 3D-Scaffolds-An Experimental Pilot Study in Minipigs.

IF 4.9 3区 工程技术 Q1 POLYMER SCIENCE
Polymers Pub Date : 2025-09-16 DOI:10.3390/polym17182498
Philipp Kauffmann, Susanne Wolfer, Tim Gellhaus, Christina Behrens, Christian Dullin, Frank Reinauer, Tobias Wolfram, Stefanie Grom, Marijan Vučak, Sabrina Hauspurg, Claudia Rode, Ralf Wyrwa, Henning Schliephake
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引用次数: 0

Abstract

Background: The aim of this experimental pilot study was to evaluate the effect of pore volume and material composition on bone ingrowth into a resorbable poly-L-lactide-CaCO3/CaP scaffold. Methods: Cylindric scaffolds of 7 mm diameter and 5 mm height and two different degrees of porosity were produced using selective laser sintering of poly-L-lactide-powder containing 24% CaCO3 spherulites with and without surface modification with 4% CaP. Six minipigs received the four types of macroporous cylindrical scaffolds, inserted press fit into trephine defects of the tibial metaphyses, and left to heal for 4 and 13 weeks in three animals each. The specimens were evaluated using µCT for pore volume fill, and histomorphometry for bone formation and immunohistochemistry for expression of osteocalcin. Results: After 4 weeks, newly formed bone ranged from 2.73 mm2 to 5.28 mm2 mean total area. Mean pore volume fill varied between 12.25% and 20.35% and the average level of osteocalcin expression ranged from 2.49 mm2 to 4.48 mm2 mean total area. No significant differences were found between the different scaffolds. After 13 weeks, bone formation and pore fill volume had significantly increased in all scaffold groups up to a mean value of 14.79 mm2 and 96.04%, respectively. Again, differences between the groups were not significant. Conclusions: The tested SLS produced scaffolds allowed for bone ingrowth, almost completely filling the pore volume after 13 weeks. Newly formed bone was in direct contact with the scaffold walls. Differences in pore volume did not account for significant differences in bone formation inside the scaffolds. The addition of CaP likewise did not lead to increased bone formation, most likely due to low availability of CaP to the biological environment.

sls制造的可吸收3d支架的骨再生-小型猪的实验前期研究。
背景:本实验的目的是评估孔隙体积和材料组成对骨长入可吸收聚l -乳酸- caco3 /CaP支架的影响。方法:采用含24% CaCO3球粒的聚l -丙交酯粉末选择性激光烧结制备直径7 mm、高度5 mm、两种不同孔隙度的圆柱形支架,表面改性和未表面改性分别为4% CaP。6只小型猪分别接受4种大孔圆柱形支架,将压片插入胫骨外骺环甲缺损,静置治疗4周和13周。采用微CT检测孔体积填充,组织形态学检测骨形成,免疫组化检测骨钙素表达。结果:术后4周,新生骨平均总面积2.73 ~ 5.28 mm2。平均孔隙体积填充在12.25%至20.35%之间,骨钙素平均表达水平为2.49 mm2至4.48 mm2平均总面积。不同支架间无明显差异。13周后,所有支架组的骨形成和孔隙填充体积均显著增加,平均分别增加14.79 mm2和96.04%。同样,两组之间的差异并不显著。结论:所测试的SLS制备的支架允许骨向内生长,在13周后几乎完全填充孔隙体积。新形成的骨与支架壁直接接触。孔体积的差异并不能解释支架内部骨形成的显著差异。同样,添加CaP也没有导致骨形成增加,很可能是由于生物环境中CaP的可用性较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Polymers
Polymers POLYMER SCIENCE-
CiteScore
8.00
自引率
16.00%
发文量
4697
审稿时长
1.3 months
期刊介绍: Polymers (ISSN 2073-4360) is an international, open access journal of polymer science. It publishes research papers, short communications and review papers. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Polymers provides an interdisciplinary forum for publishing papers which advance the fields of (i) polymerization methods, (ii) theory, simulation, and modeling, (iii) understanding of new physical phenomena, (iv) advances in characterization techniques, and (v) harnessing of self-assembly and biological strategies for producing complex multifunctional structures.
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