A testis-derived macroporous 3D scaffold as a platform for the generation of mouse testicular organoids

被引:70
|
作者
Topraggaleh, Tohid Rezaei [1 ]
Valojerdi, Mojtaba Rezazadeh [1 ,2 ]
Montazeri, Leila [3 ]
Baharvand, Hossein [4 ,5 ]
机构
[1] Tarbiat Modares Univ, Dept Anat, Fac Med Sci, Tehran, Iran
[2] ACECR, Dept Embryol, Reprod Biomed Res Ctr, Royan Inst Reprod Biomed, Tehran, Iran
[3] ACECR, Dept Cell Engn, Cell Sci Res Ctr, Royan Inst Stem Cell Biol & Technol, Tehran, Iran
[4] ACECR, Dept Stem Cells & Dev Biol, Cell Sci Res Ctr, Royan Inst Stem Cell Biol & Technol, Tehran, Iran
[5] Univ Sci & Culture, Dept Dev Biol, Tehran, Iran
关键词
IN-VITRO SPERMATOGENESIS; EXTRACELLULAR-MATRIX; STEM-CELLS; FERTILITY PRESERVATION; POROUS SCAFFOLDS; PROGENITOR CELLS; DECELLULARIZATION; CULTURE; COLLAGEN; LIVER;
D O I
10.1039/c8bm01001c
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Extracellular matrix-derived scaffolds provide an efficient platform for the generation of organ-like structures. Successful development of testicular organoids (TOs) with the capability of supporting complete spermatogenesis has not been reported yet. Here, we have developed an optimized method for the decellularization of ram testicular tissue fragments. Our findings showed that testicular fragments treated with a serial combination of Triton X-100 and SDS in PBS for 48 h resulted in the efficient removal of cellular materials and retention of the extracellular matrix (ECM) components. In order to fabricate testis-derived scaffolds (TDSs), the testicular ECM (T-ECM) was digested in acid/pepsin, followed by neutralization of pre-gel solution to form a hydrogel. Then, the hydrogels were freeze-dried and cross-linked using a chemical method. To reach the optimal concentration for the T-ECM in the fabrication of TDSs, the scaffold properties including porosity, pore size, swelling behavior, and degradation were evaluated. Our study suggested that 25 mg ml(-1) of the T-ECM is the best concentration for the fabrication of macroporous TDSs for demonstrating lower pore size, homogeneously distributed pores, and a higher swelling ratio. Furthermore, inoculation of neonatal mouse testicular cells onto TDSs resulted in the generation of multicellular TOs in which the differentiation of spermatogonial cells into post-meiotic cells was confirmed. Hormonal analysis of TDSs revealed the functionality of TOs in the secretion of testosterone and inhibin B. The current study also demonstrated that macroporous TDSs could provide a novel platform for testicular tissue engineering and in vitro spermatogenesis.
引用
收藏
页码:1422 / 1436
页数:15
相关论文
共 50 条
  • [41] Chondrogenesis of Infrapatellar Fat Pad Derived Adipose Stem Cells in 3D Printed Chitosan Scaffold
    Ye, Ken
    Felimban, Raed
    Traianedes, Kathy
    Moulton, Simon E.
    Wallace, Gordon G.
    Chung, Johnson
    Quigley, Anita
    Choong, Peter F. M.
    Myers, Damian E.
    PLOS ONE, 2014, 9 (06):
  • [42] Decellularized natural 3D cellulose scaffold derived from Borassus flabellifer (Linn.) as extracellular matrix for tissue engineering applications
    Mahendiran, Balaji
    Muthusamy, Shalini
    Selvakumar, R.
    Rajeswaran, Narmadha
    Sampath, Sowndarya
    Jaisankar, S. N.
    Krishnakumar, Gopal Shankar
    CARBOHYDRATE POLYMERS, 2021, 272
  • [43] Culture and establishment of self-renewing human and mouse adult liver and pancreas 3D organoids and their genetic manipulation
    Broutier, Laura
    Andersson-Rolf, Amanda
    Hindley, Christopher J.
    Boj, Sylvia F.
    Clevers, Hans
    Koo, Bon-Kyoung
    Huch, Meritxell
    NATURE PROTOCOLS, 2016, 11 (09) : 1724 - 1743
  • [44] Bioelectric Potential in Next-Generation Organoids: Electrical Stimulation to Enhance 3D Structures of the Central Nervous System
    O'Hara-Wright, Michelle
    Mobini, Sahba
    Gonzalez-Cordero, Anai
    FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2022, 10
  • [45] Spheroids and organoids as humanized 3D scaffold-free engineered tissues for SARS-CoV-2 viral infection and drug screening
    Kronemberger, Gabriela S.
    Carneiro, Fabiana A.
    Rezende, Danielle F.
    Baptista, Leandra S.
    ARTIFICIAL ORGANS, 2021, 45 (06) : 548 - 558
  • [46] Adipose-Derived Stromal Cells Preserve Pancreatic Islet Function in a Transplantable 3D Bioprinted Scaffold
    Abadpour, Shadab
    Niemi, Essi M.
    Orrhult, Linnea Strid
    Hermanns, Carolin
    de Vries, Rick
    Nogueira, Liebert Parreiras
    Haugen, Havard Jostein
    Josefsen, Dag
    Krauss, Stefan
    Gatenholm, Paul
    van Apeldoorn, Aart
    Scholz, Hanne
    ADVANCED HEALTHCARE MATERIALS, 2023, 12 (32)
  • [47] Marine plankton exoskeletone-derived hydroxyapatite/polycaprolactone composite 3D scaffold for bone tissue engineering
    Baek, Ji Won
    Kim, Ki Su
    Park, Ho
    Kim, Beom-Su
    BIOMATERIALS SCIENCE, 2022, 10 (24) : 7055 - 7066
  • [48] Advancements in 3D bioprinting for precision medicine: Enhancing patient-derived organoids and extracellular vesicle applications in inflammatory diseases
    Park, Hyun Sung
    Park, Jae Han
    Oh, Mi-Kyung
    Yu, Kyung-Rok
    INTERNATIONAL JOURNAL OF BIOPRINTING, 2024, 10 (05)
  • [49] Generation of Otic Sensory Neurons from Mouse Embryonic Stem Cells in 3D Culture
    Perny, Michael
    Ting, Ching-Chia
    Kleinlogel, Sonja
    Senn, Pascal
    Roccio, Marta
    FRONTIERS IN CELLULAR NEUROSCIENCE, 2017, 11
  • [50] A 3D matrix platform for the rapid generation of therapeutic anti-human carcinoma monoclonal antibodies
    Dudley, David T.
    Li, Xiao-Yan
    Hu, Casey Y.
    Kleer, Celina G.
    Willis, Amanda L.
    Weiss, Stephen J.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2014, 111 (41) : 14882 - 14887