Kalisz Grzegorz, Przekora Agata, Kazimierczak Paulina, Gieroba Barbara, Lewalska-Graczyk Agnieszka, Pieta Izabela S, Holdynski Marcin, Ginalska Grazyna, Sroka-Bartnicka Anna
Department of Biopharmacy, Medical University of Lublin, Chodzki 4a, 20-093 Lublin, Poland.
Department of Biochemistry and Biotechnology, Medical University of Lublin, Chodzki 1, 20-093 Lublin, Poland.
Spectrochim Acta A Mol Biomol Spectrosc. 2021 Apr 15;251:119439. doi: 10.1016/j.saa.2021.119439. Epub 2021 Jan 6.
In the present study structural characteristics and physicochemical properties of tri-component biomaterial (consisting of chitosan, β-1,3-glucan and hydroxyapatite) seeded with mesenchymal stem cells were investigated with the use of diffuse reflectance infrared Fourier transform spectroscopy (DRIFT), X-ray photoelectron spectroscopy (XPS), and scanning electron microscopy (SEM). In this study we use non-conventional approach of DRIFT spectroscopy for investigating biomaterial changes under simulated physiological conditions. Particular cell-induced changes were intended to be properly evaluated with analytical methods. Abovementioned techniques allowed to precisely assess the changes on the surface of the biomaterial caused by two kinds of stem cells (ADSCs - Adipose tissue-Derived Stem Cells and BMDSCs - Bone Marrow-Derived Stem Cells) cultured directly on the surface of bioceramic-based biomaterial. The bioactivity and biocompatibility of designed bone biomaterial were demonstrated and hence it seems to be a promising scaffold used in tissue engineering. Designed chitosan, β-1,3-glucan, and hydroxyapatite biomaterial was proven to be non-toxic, surgically handy with cellular compatibility. The obtained results are interesting and promising in terms of spectroscopic methods suitability for qualitative assessment of material-cell interactions.
在本研究中,使用漫反射红外傅里叶变换光谱(DRIFT)、X射线光电子能谱(XPS)和扫描电子显微镜(SEM)研究了接种间充质干细胞的三组分生物材料(由壳聚糖、β-1,3-葡聚糖和羟基磷灰石组成)的结构特征和物理化学性质。在本研究中,我们使用非传统的DRIFT光谱方法来研究模拟生理条件下生物材料的变化。特定的细胞诱导变化旨在通过分析方法进行适当评估。上述技术能够精确评估直接培养在生物陶瓷基生物材料表面的两种干细胞(ADSCs - 脂肪组织来源的干细胞和BMDSCs - 骨髓来源的干细胞)引起的生物材料表面变化。所设计的骨生物材料的生物活性和生物相容性得到了证明,因此它似乎是一种用于组织工程的有前途的支架。所设计的壳聚糖、β-1,3-葡聚糖和羟基磷灰石生物材料被证明是无毒的,手术操作方便且具有细胞相容性。就光谱方法适用于材料-细胞相互作用的定性评估而言,所获得的结果是有趣且有前景的。