双相磷酸钙掺杂氧化锆纳米颗粒用于犬下颌缺损的重建:锥形束计算机断层扫描和组织病理学评估

IF 4.2 3区 医学 Q2 ENGINEERING, BIOMEDICAL Journal of Materials Science: Materials in Medicine Pub Date : 2023-05-19 DOI:10.1007/s10856-023-06731-5
Said K. Taha, Elham A. Hassan, Sahar Mousa, Gehan T. El-Bassyouni, Heba N. Shalash, Mohamed A. Abdel Hamid
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引用次数: 1

摘要

本研究旨在评价两相磷酸钙与氧化锆纳米颗粒(4Zr TCP/HA)联合修复犬下颌骨缺损的成骨潜力和生物相容性,并与两相磷酸钙(TCP/HA)进行比较。制备TCP/HA和4Zr TCP/HA支架。对其进行了形态、理化、抗菌、细胞相容性等方面的表征。在体内应用进行了12只狗,其中三个临界大小的下颌骨缺损在每只狗。骨缺损随机分为:对照组、TCP/HA组和4Zr TCP/HA组。12周时采用锥形束计算机断层扫描、组织病理学、组织形态学检查评估骨密度和骨面积百分比。在矢状面和冠状面上,TCP/HA和4Zr TCP/HA组的骨面积密度与对照组相比均有统计学增加(p < 0.001)。与TCP/HA和4Zr TCP/HA组比较,冠状面骨面积密度增加(p = 0.002),矢状面骨面积密度增加(p = 0.05)均有统计学意义。TCP/HA组组织病理切片显示骨样组织不完全填充缺损。与TCP/HA组相比,掺杂氧化锆(4Zr TCP/HA组)导致骨形成(骨面积百分比)和成熟(马松三色染色证实)有统计学意义(p < 0.001)的增加。新形成的骨成熟且有组织,骨小梁厚度增加,骨小梁之间的空间减少。氧化锆与TCP/HA复合材料的理化、形态和杀菌性能均得到改善。氧化锆与TCP/HA结合可产生协同作用,具有有效的骨诱导、骨传导和骨整合作用,适用于临床修复损伤骨。图形抽象
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Biphasic calcium phosphate doped with zirconia nanoparticles for reconstruction of induced mandibular defects in dogs: cone-beam computed tomographic and histopathologic evaluation

The present study aimed to evaluate osteogenic potential and biocompatibility of combining biphasic calcium phosphate with zirconia nanoparticles (4Zr TCP/HA) compared to biphasic calcium phosphate (TCP/HA) for reconstruction of induced mandibular defects in dog model. TCP/HA and 4Zr TCP/HA scaffolds were prepared. Morphological, physicochemical, antibacterial, cytocompatibility characterization were tested. In vivo application was performed in 12 dogs where three critical-sized mandibular defects were created in each dog. Bone defects were randomly allocated into: control, TCP/HA, and 4Zr TCP/HA groups. Bone density and bone area percentage were evaluated at 12 weeks using cone-beam computed tomographic, histopathologic, histomorphometric examination. Bone area density was statistically increased (p < 0.001) in TCP/HA and 4Zr TCP/HA groups compared to control group both in sagittal and coronal views. Comparing TCP/HA and 4Zr TCP/HA groups, the increase in bone area density was statistically significant in coronal view (p = 0.002) and sagittal view (p = 0.05). Histopathologic sections of TCP/HA group demonstrated incomplete filling of the defect with osteoid tissue. Doping with zirconia (4Zr TCP/HA group), resulted in statistically significant increase (p < 0.001) in bone formation (as indicated by bone area percentage) and maturation (as confirmed by Masson trichrome staining) compared to TCP/HA group. The newly formed bone was mature and organized with more trabecular thickness and less trabecular space in between. Physicochemical, morphological and bactericidal properties of combining zirconia and TCP/HA were improved. Combining zirconia and TCP/HA resulted in synergistic action with effective osteoinduction, osteoconduction and osteointegration suggesting its suitability to restore damaged bone in clinical practice.

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来源期刊
Journal of Materials Science: Materials in Medicine
Journal of Materials Science: Materials in Medicine 工程技术-材料科学:生物材料
CiteScore
8.00
自引率
0.00%
发文量
73
审稿时长
3.5 months
期刊介绍: The Journal of Materials Science: Materials in Medicine publishes refereed papers providing significant progress in the application of biomaterials and tissue engineering constructs as medical or dental implants, prostheses and devices. Coverage spans a wide range of topics from basic science to clinical applications, around the theme of materials in medicine and dentistry. The central element is the development of synthetic and natural materials used in orthopaedic, maxillofacial, cardiovascular, neurological, ophthalmic and dental applications. Special biomedical topics include biomaterial synthesis and characterisation, biocompatibility studies, nanomedicine, tissue engineering constructs and cell substrates, regenerative medicine, computer modelling and other advanced experimental methodologies.
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