Furko Monika, Detsch Rainer, Horváth Zsolt E, Balázsi Katalin, Boccaccini Aldo R, Balázsi Csaba
Centre for Energy Research, HUN-REN, 1121, Konkoly-Thege Road 29-33, 1121 Budapest, Hungary.
Institute of Biomaterials, Department of Materials Science and Engineering, University of Erlangen-Nuremberg, Cauer Str. 6, 91058 Erlangen, Germany.
Nanomaterials (Basel). 2024 Jan 29;14(3):279. doi: 10.3390/nano14030279.
A biodegradable amorphous carbonated calcium phosphate (caCP)-incorporated polycaprolactone (PCL) composite layer was successfully deposited by a spin coater. In this specific coating, the PCL acts as a bioadhesive, since it provides a better adherence of the coatings to the substrate compared to powder coatings. The caCP-PCL coatings were deposited and formed thin layers on the surface of a SiN-3 wt% MWCNT (multiwalled carbon nanotube) substrate, which is an emerging type of implant material in the biomedical field. The composite coatings were examined regarding their morphology, structure and biological performance. The biocompatibility of the samples was tested in vitro with MC3T3-E1 preosteoblast cells. Owing to the caCP-PCL thin layer, the cell viability values were considerably increased compared to the substrate material. The ALP and LDH tests showed numerous living cells on the investrigated coatings. The morphology of the MC3T3-E1 cells was examined by fluorescent staining (calcein and DAPI) and scanning electron microscopy, both of which revealed a well-spread, adhered and confluent monolayer of cells. All performed biocompatibility tests were positive and indicated the applicability of the deposited thin composite layers as possible candidates for orthopaedic implants for an extended period.
通过旋涂器成功沉积了一种可生物降解的含无定形碳酸磷酸钙(caCP)的聚己内酯(PCL)复合层。在这种特定涂层中,PCL起到生物粘合剂的作用,因为与粉末涂层相比,它能使涂层与基材的粘附性更好。caCP-PCL涂层沉积在SiN-3 wt% MWCNT(多壁碳纳米管)基材表面并形成薄层,该基材是生物医学领域一种新兴的植入材料。对复合涂层的形态、结构和生物学性能进行了研究。用MC3T3-E1前成骨细胞在体外测试了样品的生物相容性。由于caCP-PCL薄层,与基材材料相比,细胞活力值显著提高。碱性磷酸酶(ALP)和乳酸脱氢酶(LDH)测试表明,在所研究的涂层上有大量活细胞。通过荧光染色(钙黄绿素和DAPI)和扫描电子显微镜检查了MC3T3-E1细胞的形态,两者均显示细胞单层铺展良好、粘附且汇合。所有进行的生物相容性测试均为阳性,表明所沉积的复合薄层作为骨科植入物的可能候选材料在较长时期内具有适用性。