Mao Mengting, Zhu Shengbo, Zhang Lan, Liu Fuwei, Kong Liang, Xue Yang, Rotello Vincent M, Han Yong
State-Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, China.
Department of Chemistry, University of Massachusetts Amherst, Amherst, Massachusetts 01003, United States.
ACS Appl Mater Interfaces. 2022 Sep 28;14(38):43955-43964. doi: 10.1021/acsami.2c12513. Epub 2022 Sep 13.
Zn-based alloys are promising biodegradable implants for bone defect repair due to their good mechanical performance and degradability. However, local Zn released from Zn-based implants can seriously affect adhering cell behaviors as well as new bone formation on implant surfaces. To address this issue, we have fabricated a bone-mimetic extracellular matrix (ECM)-like surface on Zn-1Ca implants using a hybrid process of anodization, hydrothermal treatment (HT), and fluorous-curing. The ECM-like surface consisted of ZnSiO nanorods layered with collagen I (Col-I). The ZnSiO nanorods were hemicrystallized and transformed by the reaction of Zn(OH) and SiO during the HT. The ZnSiO nanorods effectively protected the substrate from corrosion; the Col-I layer decreased the degradation of ZnSiO nanorods and further reduced Zn release into the medium. This ECM-like surface generated a microenvironment with appropriate Zn levels, nanorod-like topography, and Col-I. It significantly improved adhesion, proliferation, and differentiation of osteoblasts on implant surfaces and vascularization of endothelial cells in the extract medium. The results are in good agreement with tests, with the ECM-like surface significantly enhancing new bone formation and bone-implant contact compared to the bare implant surface. Overall, this bone-mimetic ECM-like material of Col-I layered ZnSiO nanorods is a promising scaffold that promotes the bone regeneration of Zn-based implants.
锌基合金因其良好的力学性能和可降解性,是用于骨缺损修复的有前景的可生物降解植入物。然而,从锌基植入物中释放的局部锌会严重影响粘附细胞行为以及植入物表面的新骨形成。为了解决这个问题,我们通过阳极氧化、水热处理(HT)和氟固化的混合工艺,在Zn-1Ca植入物上制备了一种仿骨细胞外基质(ECM)样表面。这种ECM样表面由层状胶原I(Col-I)的硅酸锌纳米棒组成。在水热处理过程中,硅酸锌纳米棒通过Zn(OH)和SiO的反应发生半结晶和转变。硅酸锌纳米棒有效地保护了基底免受腐蚀;Col-I层减少了硅酸锌纳米棒的降解,并进一步减少了锌向培养基中的释放。这种ECM样表面产生了一个具有适当锌水平、纳米棒状形貌和Col-I的微环境。它显著改善了植入物表面成骨细胞的粘附、增殖和分化以及提取物培养基中内皮细胞的血管生成。结果与测试结果高度一致,与裸露的植入物表面相比,ECM样表面显著增强了新骨形成和骨-植入物接触。总体而言,这种由Col-I层状硅酸锌纳米棒组成的仿骨ECM样材料是一种有前景的支架,可促进锌基植入物的骨再生。