Vdoviaková Katarína, Jenca Andrej, Jenca Andrej, Danko Ján, Kresáková Lenka, Simaiová Veronika, Reichel Peter, Rusnák Pavol, Pribula Jozef, Vrzgula Marko, Askin Sarah J, Giretová Maria, Briancin Jaroslav, Medvecký Lubomír
Department of Morphological Disciplines, University of Veterinary Medicine and Pharmacy in Kosice, Komenskeho 73, 041 81 Kosice, Slovakia.
Solmea s.r.o., Bacikova 7, 040 01 Kosice, Slovakia.
Biomedicines. 2023 Mar 13;11(3):877. doi: 10.3390/biomedicines11030877.
Reconstruction of bone defects and maintaining the continuity of the mandible is still a challenge in the maxillofacial surgery. Nowadays, the biomedical research within bone defect treatment is focussed on the therapy of using innovative biomaterials with specific characteristics consisting of the body's own substances. Hydroxyapatite ceramic scaffolds have fully acceptable phase compositions, microstructures and compressive strengths for their use in regenerative medicine. The innovative hydroxyapatite ceramics used by us were prepared using the tape-casting method, which allows variation in the shape of samples after packing hydroxyapatite paste to 3D-printed plastic form. The purpose of our qualitative study was to evaluate the regenerative potential of the innovative ceramic biomaterial prepared using this method in the therapy of the cortical bone of the lower jaw in four mature pigs. The mandible bone defects were evaluated after different periods of time (after 3, 4, 5 and 6 months) and compared with the control sample (healthy cortical bone from the opposite side of the mandible). The results of the morphological, clinical and radiological investigation and hardness examination confirmed the positive regenerative potential of ceramic implants after treatment of the mandible bone defects in the porcine mandible model.
骨缺损的修复以及维持下颌骨的连续性仍是颌面外科手术中的一项挑战。如今,骨缺损治疗方面的生物医学研究聚焦于使用具有特定特性且由人体自身物质构成的创新生物材料进行治疗。羟基磷灰石陶瓷支架具有完全可接受的相组成、微观结构和抗压强度,可用于再生医学。我们所使用的创新型羟基磷灰石陶瓷是采用流延成型法制备的,该方法能使羟基磷灰石糊料填充到3D打印塑料模具后样品形状发生变化。我们这项定性研究的目的是评估用这种方法制备的创新型陶瓷生物材料在四只成年猪下颌骨皮质骨治疗中的再生潜力。在不同时间段(3、4、5和6个月后)对下颌骨缺损进行评估,并与对照样本(取自下颌骨另一侧的健康皮质骨)进行比较。形态学、临床和放射学检查以及硬度检测结果证实了在猪下颌骨模型中治疗下颌骨缺损后陶瓷植入物具有积极的再生潜力。