Bone-Marrow-Derived Mesenchymal Stromal Cells (MSC) from Diabetic and Nondiabetic Rats Have Similar Therapeutic Potentials

被引:3
|
作者
de Sao Jose, Vitoria Santorio [1 ]
Monnerat, Gustavo [1 ]
Guerra, Barbara [1 ]
Paredes, Bruno Dias [1 ]
Kasai-Brunswick, Tais Hanae [1 ]
Campos de Carvalho, Antonio Carlos [1 ]
Medei, Emiliano [1 ]
机构
[1] Univ Fed Rio de Janeiro, Rio De Janeiro, Brazil
关键词
Diabetes Mellitus; Mesenchymal Stromal Cells; Cardiac Electrophysiology; Cell and Tissue-Based Therapy; Rats; STEM-CELLS; NLRP3; INFLAMMASOME; IN-VITRO; MELLITUS; DISEASE; COMPLICATIONS; HYPERGLYCEMIA; IMPROVEMENT; ACTIVATION; MORTALITY;
D O I
10.5935/abc.20170176
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background: Diabetes mellitus is a severe chronic disease leading to systemic complications, including cardiovascular dysfunction. Previous cell therapy studies have obtained promising results with the use bone marrow mesenchymal stromal cells derived from healthy animals (MSCc) in diabetes animal models. However, the ability of MSC derived from diabetic rats to improve functional cardiac parameters is still unknown. Objectives: To investigate whether bone-marrow-derived MSC from diabetic rats (MSCd) would contribute to recover metabolic and cardiac electrical properties in other diabetic rats. Methods: Diabetes was induced in Wistar rats with streptozotocin. MSCs were characterized by flow cytometry, morphological analysis, and immunohistochemistry. Cardiac electrical function was analyzed using recordings of ventricular action potential. Differences between variables were considered significant when p < 0.05. Results: In vitro properties of MSCc and MSCd were evaluated. Both cell types presented similar morphology, growth kinetics, and mesenchymal profile, and could differentiate into adipogenic and osteogenic lineages. However, in an assay for fibroblast colony-forming units (CFU-F), MSCd formed more colonies than MSCc when cultured in expansion medium with or without hydrocortisone (1 mu M). In order to compare the therapeutic potential of the cells, the animals were divided into four experimental groups: nondiabetic (CTRL), diabetic (DM), diabetic treated with MSCc (DM + MSCc), and diabetic treated with MSCd (DM + MSCd). The treated groups received a single injection of MSC 4 weeks after the development of diabetes. MSCc and MSCd controlled hyperglycemia and body weight loss and improved cardiac electrical remodeling in diabetic rats. Conclusions: MSCd and MSCc have similar in vitro properties and therapeutic potential in a rat model of diabetes induced with streptozotocin.
引用
收藏
页码:579 / 589
页数:11
相关论文
共 50 条
  • [1] Bioimaging assessment and effect of skin wound healing using bone-marrow-derived mesenchymal stromal cells with the artificial dermis in diabetic rats
    Inoue, Hirokazu
    Murakami, Takashi
    Ajiki, Takashi
    Hara, Mayumi
    Hoshino, Yuichi
    Kobayashi, Eiji
    JOURNAL OF BIOMEDICAL OPTICS, 2008, 13 (06)
  • [2] Effect of High-Dose Irradiation on Human Bone-Marrow-Derived Mesenchymal Stromal Cells
    Fekete, Natalie
    Erle, Alexander
    Amann, Elisa Maria
    Fuerst, Daniel
    Rojewski, Markus Thomas
    Langonne, Alain
    Sensebe, Luc
    Schrezenmeier, Hubert
    Schmidtke-Schrezenmeier, Gerlinde
    TISSUE ENGINEERING PART C-METHODS, 2015, 21 (02) : 112 - 122
  • [3] Exosomes Derived from Bone Marrow-Derived Mesenchymal Stem Cells (BM-MSC) Protect Submandibular Glands in Diabetic Rats
    Zhang, Cong
    Zhang, Xiaohong
    Zhang, Min
    JOURNAL OF BIOMATERIALS AND TISSUE ENGINEERING, 2021, 11 (11) : 2168 - 2173
  • [4] Bone-Marrow-Derived Mesenchymal Stem Cells for Organ Repair
    Li, Ming
    Ikehara, Susumu
    STEM CELLS INTERNATIONAL, 2013, 2013
  • [5] Mitochondrial transfer from bone-marrow-derived mesenchymal stromal cells to chondrocytes protects against cartilage degenerative mitochondrial dysfunction in rats chondrocytes
    Wang, Rui
    Maimaitijuma, Talatibaike
    Ma, Yuan-Yuan
    Jiao, Yang
    Cao, Yong-Ping
    CHINESE MEDICAL JOURNAL, 2021, 134 (02) : 212 - 218
  • [6] Mitochondrial transfer from bone-marrow-derived mesenchymal stromal cells to chondrocytes protects against cartilage degenerative mitochondrial dysfunction in rats chondrocytes
    Wang Rui
    Maimaitijuma Talatibaike
    Ma Yuan-Yuan
    Jiao Yang
    Cao Yong-Ping
    中华医学杂志英文版, 2021, 134 (02) : 212 - 218
  • [7] High Mannose N-Glycans Promote Migration of Bone-Marrow-Derived Mesenchymal Stromal Cells
    Alonso-Garcia, Vivian
    Chaboya, Cutter
    Li, Qiongyu
    Le, Bryan
    Congleton, Timothy J.
    Florez, Jose
    Tran, Victoria
    Liu, Gang-Yu
    Yao, Wei
    Lebrilla, Carlito B.
    Fierro, Fernando A.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2020, 21 (19) : 1 - 21
  • [8] Derivation of human stromal (skeletal) stem (MSC)-like cells from embryonic stems with similar molecular signature to bone marrow derived MSC
    Harkness, L.
    Dawud, R. A.
    Jafari, A.
    Adjaye, J.
    Kassem, M.
    BONE, 2012, 50 : S79 - S79
  • [9] Effect of Bone-Marrow-Derived Mesenchymal Stem Cells on the Healing of Bone Fractures
    Mohammed, Shuzan Ali
    Abd Elsattar, Mahasen
    Abd-Allah, Somia Hassan
    Habashy, Omnia Youssif
    Abdelghany, Eman M. A.
    Hussein, Samia
    Abdullah, Omnia
    JOURNAL OF INTERFERON AND CYTOKINE RESEARCH, 2021, 41 (09): : 336 - 346
  • [10] Effects of in vitro chondrogenic priming time of bone-marrow-derived mesenchymal stromal cells on in vivo endochondral bone formation
    Yang, Wanxun
    Both, Sanne K.
    van Osch, Gerjo J. V. M.
    Wang, Yining
    Jansen, John A.
    Yang, Fang
    ACTA BIOMATERIALIA, 2015, 13 : 254 - 265