Swain Subhasmita, Ong Joo L, Narayanan Ramaswamy, Rautray Tapash R
Biomaterials and Tissue Regeneration Laboratory, Centre of Excellence in Theoretical and Mathematical Sciences, Siksha 'O' Anusandhan (Deemed to be University), Bhubaneswar, India.
Biomedical Engineering, The University of Texas at San Antonio, One UTSA circle, San Antonio, Texas, USA.
J Biomed Mater Res B Appl Biomater. 2021 Dec;109(12):2154-2161. doi: 10.1002/jbm.b.34863. Epub 2021 May 11.
Ti-9Mn and Ti-15Mn were prepared using an arc furnace in order to understand their osteogenic behavior as a biomedical implant. Ti-9Mn surface showed a significantly lower contact angle value (41%) as compared with the Ti-15Mn surface. The higher Ra and lower hydrophilicity values of Ti-9Mn alloy as compared with Ti-15Mn alloy indicates that Ti-9Mn can have better osteoconductive properties. ALP activity of the osteoblast cells on the Ti-9Mn alloy was elevated by 45% on day 7 and 20% on day 14 as compared to the Ti-15Mn alloy that reflects faster induction of osteoblast phenotypes of MG63 cells. Filopodia and lamellipodia structures were spread more on the Ti-9Mn specimens as compared to the Ti-15Mn alloy. Cell viability on Ti-9Mn alloy increased by 25% and 32%, respectively after 7 and 14 days of culture as compared to Ti-15Mn alloy. On day 14 of culture, the relative expression of RUNX2, COL1, and OC on Ti-9Mn alloy were elevated by 35%, 21%, and 30% respectively than the Ti-15Mn alloy. Ti-9Mn alloy also exhibited an inductive effect on the cell proliferation, and upregulation in the expression of ALP, RUNX2, and OC that is, the genes related to osteoblastic differentiation. Hence, the present in vitro results suggest that Ti-9Mn can be a preferred implant material than the Ti-15Mn alloy.
为了解Ti-9Mn和Ti-15Mn作为生物医学植入物的成骨行为,使用电弧炉制备了这两种材料。与Ti-15Mn表面相比,Ti-9Mn表面的接触角值显著更低(41%)。与Ti-15Mn合金相比,Ti-9Mn合金的粗糙度平均值(Ra)更高且亲水性更低,这表明Ti-9Mn可能具有更好的骨传导性能。与Ti-15Mn合金相比,在Ti-9Mn合金上培养的成骨细胞的碱性磷酸酶(ALP)活性在第7天提高了45%,在第14天提高了20%,这反映了MG63细胞成骨细胞表型的诱导更快。与Ti-15Mn合金相比,丝状伪足和片状伪足结构在Ti-9Mn样品上分布更广泛。与Ti-15Mn合金相比,在培养7天和14天后,Ti-9Mn合金上的细胞活力分别提高了25%和32%。在培养第14天,与Ti-15Mn合金相比Ti-9Mn合金上RUNX2、COL1和OC的相对表达分别提高了35%、21%和30%。Ti-9Mn合金还对细胞增殖表现出诱导作用,并上调了ALP、RUNX2和OC的表达,即与成骨细胞分化相关的基因。因此,目前的体外实验结果表明,与Ti-15Mn合金相比,Ti-9Mn可能是一种更优的植入材料。