scholarly journals Multiplex Analysis of Adipose-Derived Stem Cell (ASC) Immunophenotype Adaption to In Vitro Expansion

Cells ◽  
2021 ◽  
Vol 10 (2) ◽  
pp. 218
Author(s):  
Qiuyue Peng ◽  
Martyna Duda ◽  
Guoqiang Ren ◽  
Zongzhe Xuan ◽  
Cristian Pablo Pennisi ◽  
...  

In order to enhance the therapeutic potential, it is important that sufficient knowledge regarding the dynamic changes of adipose-derived stem cell (ASC) immunophenotypical and biological properties during in vitro growth is available. Consequently, we embarked on a study to follow the evolution of highly defined cell subsets from three unrelated donors in the course of eight passages on tissue culture polystyrene. The co-expression patterns were defined by panels encompassing seven and five cell surface markers, including CD34, CD146, CD166, CD200, CD248, CD271, and CD274 and CD29, CD31, CD36, CD201, and Stro-1, respectively. The analysis was performed using multichromatic flow cytometry. We observed a major paradigm shift, where the CD166-CD34+ combination which was found across all cell subsets early in the culture was replaced by the CD166+ phenotype as the population homogeneity increased with time. At all analysis points, the cultures were dominated by a few major clones that were highly prevalent in most of the donors. The selection process resulted in two predominant clones in the larger panel (CD166+CD34−CD146−CD271− CD274−CD248−CD200− and CD166+CD34+ CD146−CD271−CD274−CD248−CD200−) and one clone in the smaller panel (CD29+CD201+CD36− Stro-1− CD31−). The minor subsets, including CD166+CD34−CD146−CD271+CD274−CD248−CD200− and CD166+CD34+CD146+CD271−CD274−CD248−CD200−, and CD29+CD201−CD36−Stro-1−CD31−, CD29+CD201+CD36−Stro-1+CD31−, and CD29+CD201+CD36+Stro-1−CD31−, in the seven and five marker panels, respectively, were, on the other, hand highly fluctuating and donor-dependent. The results demonstrate that only a limited number of phenotypical repertoires are possible in ASC cultures. Marked differences in their relative occurrence between distinct individuals underscore the need for potency standardization of different ASC preparation to improve the clinical outcome.

2016 ◽  
Vol 22 (7) ◽  
pp. 679-690 ◽  
Author(s):  
Thanavel Rajangam ◽  
Min Hee Park ◽  
Sang-Heon Kim

2018 ◽  
Vol 63 (5) ◽  
pp. 272-274 ◽  
Author(s):  
Yanghua Shi ◽  
Lian Wang ◽  
Yichang Li ◽  
Congdi Xu ◽  
Xiaowen Shao ◽  
...  

2020 ◽  
Vol 17 (5) ◽  
pp. 1282-1290
Author(s):  
Dong Yeon Kim ◽  
Eunjin Kim ◽  
Ki Joo Kim ◽  
Young‐Joon Jun ◽  
Jong‐Won Rhie

2012 ◽  
Vol 2012 ◽  
pp. 1-7 ◽  
Author(s):  
Zhaohui Li ◽  
Congqin Ning ◽  
Dongyan Ding ◽  
Hegang Liu ◽  
Lin Huang

Surface modification of low modulus implant alloys with oxide nanostructures is one of the important ways to achieve favorable biological behaviors. In the present work, amorphous Ti-Nb-Zr-O nanostructures were grown on a peak-aged Ti35Nb5Zr alloy through anodization. Biological properties of the Ti-Nb-Zr-O nanostructures were investigated throughin vitrobioactivity testings, stem cell interactions, and drug release experiments. The Ti-Nb-Zr-O nanostructures demonstrated a good capability of inducing apatite formation after immersion in simulated body fluids (SBFs). Drug delivery experiment based on gentamicin and the Ti-Nb-Zr-O nanostructures indicated that a high drug loading content could result in a prolonged release process and a higher quantity of drug residues in the oxide nanostructures after drug release. Quick stem cell adhesion and spreading, as well as fast formation of extracellular matrix materials on the surfaces of the Ti-Nb-Zr-O nanostructures, were found. These findings make it possible to further explore the biomedical applications of the Ti-Nb-Zr-O nanostructure modified alloys especially clinical operation of orthopaedics by utilizing the nanostructures-based drug-release system.


2019 ◽  
Vol 71 (2) ◽  
pp. 553-561 ◽  
Author(s):  
Ana K. Gutiérrez-García ◽  
José M. Flores-Kelly ◽  
Tomás Ortiz-Rodríguez ◽  
Marco Antonio Kalixto-Sánchez ◽  
Antonio De León-Rodríguez

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