Storage effect on viability and biofunctionality of human adipose tissue-derived stromal cells

被引:4
|
作者
Falah, Mizied [1 ]
Rayan, Anwar [1 ]
Srouji, Samer [2 ,3 ]
机构
[1] Al Qasemi Acad Coll, QRC Qasemi Res Ctr, Drug Discovery Informat Lab, Baka El Garbiah, Israel
[2] Galilee Med Ctr, Bone Regenerat Lab, Oral & Maxillofacial Surg Dept, Nahariyya, Israel
[3] Bar Ilan Univ, Fac Med Galilee, Ramat Gan, Israel
关键词
adipose tissue-derived cells; cell functionality; cell viability; human serum albumin; hyaluronic acid; OraGraft; transplantation mixture; SINUS FLOOR AUGMENTATION; MESENCHYMAL STEM-CELLS; BONE ALLOGRAFT; BOVINE BONE; TRANSPLANTATION; THERAPY; DIFFERENTIATION; BIOMATERIALS; SCAFFOLD; ALBUMIN;
D O I
10.1016/j.jcyt.2015.05.014
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Background aims. In our recent studies, the transplantation of human adipose tissue derived stromal cells (ASCs) has shown promise for treatment of diseases related to bone and joint disorders. Methods. For the current clinical applications, ASCs were formulated and suspended in PlasmaLyte A supplemented with heparin, glucose and human serum albumin, balanced to pH 7.4 with sodium bicarbonate. This cell solution constitutes 20% of the overall transplanted mixture and is supplemented with hyaluronic acid (60%) and OraGraft particles (20%). We intended to investigate the effect of this transplantation mixture on the viability and biofunctionality of ASCs in bone formation. Freshly harvested cells were resuspended and incubated in the indicated mixture for up to 48 h at 4 degrees C. Cell viability was assessed using trypan blue and AlamarBlue, and cell functionality was determined by quantifying their adhesion rate in vitro and bone formation in an ectopic mouse model. Results. More than 80% of the ASCs stored in the transplantation mixture were viable for up to 24 h. Cell viability beyond 24 h in storage decreased to approximately 50%. In addition, an equal degree of bone formation was observed between the cells transplanted following incubation in transplantation mixture for up to 24 h and zero-time non-incubated cells (control). Conclusions. The viability and functionality of ASCs stored in the presented formulation will make such cell therapy accessible to larger and more remote populations.
引用
收藏
页码:1220 / 1229
页数:10
相关论文
共 50 条
  • [1] Research progress in Human Adipose Tissue-derived Stromal Cells
    Sun Jianhua
    中国输血杂志, 2010, (S1) : 103 - 104
  • [2] Surface protein characterization of human adipose tissue-derived stromal cells
    Gronthos, S
    Franklin, DM
    Leddy, HA
    Robey, PG
    Storms, RW
    Gimble, JM
    JOURNAL OF CELLULAR PHYSIOLOGY, 2001, 189 (01) : 54 - 63
  • [3] Human adipose tissue-derived mesenchymal stromal cells and their phagocytic capacity
    Ruiz, Victor J. Costela
    Rodriguez, Lucia Melguizo
    Montes, Rebeca Illescas
    Recio, Enrique Garcia
    Santiago, Salvador Arias
    Ruiz, Concepcion
    Bertos, Elvira De Luna
    JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2022, 26 (01) : 178 - 185
  • [4] Adipose Tissue-Derived Stromal Cells for Wound Healing
    Goodarzi, Parisa
    Alavi-Moghadam, Sepideh
    Sarvari, Masoumeh
    Beik, Akram Tayanloo
    Falahzadeh, Khadijeh
    Aghayan, Hamidreza
    Payab, Moloud
    Larijani, Bagher
    Gilany, Kambiz
    Rahim, Fakher
    Adibi, Hossein
    Arjmand, Babak
    CELL BIOLOGY AND TRANSLATIONAL MEDICINE, VOL 4: STEM CELLS AND CELL BASED STRATEGIES IN REGENERATION, 2018, 1119 : 133 - 149
  • [5] Differential Effect of Leptin on Adipose Tissue-Derived Stromal Cells and Bone Marrow-Derived Stromal Cells
    Jang, Hoon
    Hong, Seong Chul
    FASEB JOURNAL, 2009, 23
  • [6] Effects of NSAIDs on the osteogenic differentiation of human adipose tissue-derived stromal cells
    Hadjicharalambous, Chrystalleni
    Alexaki, Vasileia Ismini
    Alpantaki, Kalliopi
    Chatzinikolaidou, Maria
    JOURNAL OF PHARMACY AND PHARMACOLOGY, 2016, 68 (11) : 1403 - 1408
  • [7] Evaluation of storage conditions on equine adipose tissue-derived multipotent mesenchymal stromal cells
    Mercati, Francesca
    Pascucci, Luisa
    Curina, Giovanni
    Scocco, Paola
    Tardella, Federico Maria
    Dall'Aglio, Cecilia
    Marini, Carla
    Ceccarelli, Piero
    VETERINARY JOURNAL, 2014, 200 (02): : 339 - 342
  • [8] Interaction of human adipose tissue-derived mesenchymal stromal cells with breast cancer cells
    Kucerova, L.
    Kovacovicova, M.
    Polak, S.
    Bohac, M.
    Fedeles, J.
    Palencar, D.
    Matuskova, M.
    NEOPLASMA, 2011, 58 (05) : 361 - 370
  • [9] Human subcutaneous adipose tissue-derived stromal cells support hematopoiesis.
    Storms, RW
    Leddy, HA
    Franklin, DM
    Smith, CA
    Gimble, JM
    BLOOD, 2000, 96 (11) : 685A - 685A
  • [10] THE EFFECT OF GROWTH FACTORS ON OSTEOGENIC DIFFERENTIATION OF ADIPOSE TISSUE-DERIVED STROMAL CELLS
    Kim, Uk-Kyu
    Choi, Yeon-Sik
    Jung, Jin-Sup
    JOURNAL OF THE KOREAN ASSOCIATION OF ORAL AND MAXILLOFACIAL SURGEONS, 2006, 32 (04) : 327 - 333