Decellularization of the mouse ovary: comparison of different scaffold generation protocols for future ovarian bioengineering

被引:51
作者
Alshaikh, Ahmed Baker [1 ,2 ]
Padma, Arvind Manikantan [1 ,2 ]
Dehlin, Matilda [1 ,2 ]
Akouri, Randa [1 ,2 ]
Song, Min Jong [1 ,2 ,3 ]
Brannstrom, Mats [1 ,2 ,4 ]
Hellstrom, Mats [1 ,2 ,5 ]
机构
[1] Univ Gothenburg, Sahlgrenska Acad, Lab Transplantat & Regenerat Med, Gothenburg, Sweden
[2] Univ Gothenburg, Sahlgrenska Acad, Dept Obstet & Gynecol, Gothenburg, Sweden
[3] Catholic Univ Korea, Daejeon St Marys Hosp, Dept Obstet & Gynecol, Div Gynecol Oncol, Daejeon, South Korea
[4] Stockholm IVF EUGIN, Stockholm, Sweden
[5] Kvinnokliniken, Bla Straket 6, SE-41345 Gothenburg, Sweden
基金
芬兰科学院;
关键词
Ovary; Decellularization; Tissue engineering; Extracellular matrix; Scaffold; Biomaterial; Malignancy; ISOLATED MURINE FOLLICLES; QUALITY-OF-LIFE; FERTILITY PRESERVATION; CANCER-PATIENTS; TISSUE; TRANSPLANTATION; ALGINATE; FIBRIN; CHEMOTHERAPY; PREGNANCY;
D O I
10.1186/s13048-019-0531-3
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
BackgroundIn order to preserve fertility in young women with disseminated cancer, e.g. leukemia, an approach that has been suggested is to retransplant isolated small follicles within an ovarian matrix free from malignant cells and with no risk for contamination. The present study evaluates the first step to create a bioengineered ovarian construct that can act as growth-supporting tissue for isolated small follicles that are dependent on a stroma for normal follicular maturation. The present study used the intact mouse ovary to develop a mouse ovarian scaffold through various protocols of decellularization.Material and methodsPotential Immunogenic DNA and intracellular components were removed from whole mouse ovaries by agitation in a 0.5% sodium dodecyl sulfate solution (Protocol 1; P1), or in a 2% sodium deoxycholate solution (P2) or by a combination of the two (P3). The remaining decelluralized ovarian extracellular matrix structure was then assessed based on the DNA- and protein content, and was further evaluated histologically by haematoxylin and eosin-, Verhoeff's van gieson- (for elastin), Masson's trichrome- (for collagens) and Alcian blue (for glycosaminoglycans) staining. We also evaluated the decellularization efficiency using the mild detergent Triton-X100 (1%).ResultsSodium dodecyl sulfate efficiently removed DNA and intracellular components from the ovarian tissue but also significantly reduced the integrity of the remaining ovarian extracellular matrix. Sodium deoxycholate, a considerably milder detergent compared to sodium dodecyl sulfate, preserved the ovarian extracellular matrix better, evident by a more distinct staining for glycosaminoglycan, collagen and elastic fibres. Triton-X100 was found ineffective as a decellularization reagent for mouse ovaries in our settings.ConclusionsThe sodium dodecyl sulfate generated ovarian scaffolds contained minute amounts of DNA that may be an advantage to evade a detrimental immune response following engraftment. The sodium deoxycholate generated ovarian scaffolds had higher donor DNA content, yet, retained the extracellular composition better and may therefore have improved recellularization and other downstream bioengineering applications. These two novel types of mouse ovarian scaffolds serve as promising scaffold-candidates for future ovarian bioengineering experiments.
引用
收藏
页数:9
相关论文
共 46 条
  • [1] Long-Term Follow-Up of Chemotherapy-Induced Ovarian Failure in Young Breast Cancer Patients: The Role of Vascular Toxicity
    Ben-Aharon, Irit
    Granot, Tal
    Meizner, Israel
    Hasky, Noa
    Tobar, Ana
    Rizel, Shulamith
    Yerushalmi, Rinat
    Ben-Haroush, Avi
    Fisch, Benjamin
    Stemmer, Salomon M.
    [J]. ONCOLOGIST, 2015, 20 (09) : 985 - 991
  • [2] Fertility information needs and concerns post-treatment contribute to lowered quality of life among young adult female cancer survivors
    Benedict, Catherine
    Thom, Bridgette
    Friedman, Danielle N.
    Pottenger, Elaine
    Raghunathan, Nirupa
    Kelvin, Joanne F.
    [J]. SUPPORTIVE CARE IN CANCER, 2018, 26 (07) : 2209 - 2215
  • [3] Brännström M, 2008, NAT MED, V14, P1182, DOI 10.1038/nm1108-1182
  • [4] Fibrin in Reproductive Tissue Engineering: A Review on Its Application as a Biomaterial for Fertility Preservation
    Chiti, M. C.
    Dolmans, M. M.
    Donnez, J.
    Amorim, C. A.
    [J]. ANNALS OF BIOMEDICAL ENGINEERING, 2017, 45 (07) : 1650 - 1663
  • [5] An overview of tissue and whole organ decellularization processes
    Crapo, Peter M.
    Gilbert, Thomas W.
    Badylak, Stephen F.
    [J]. BIOMATERIALS, 2011, 32 (12) : 3233 - 3243
  • [6] Oocyte vitrification versus ovarian cortex transplantation in fertility preservation for adult women undergoing gonadotoxic treatments: a prospective cohort study
    Diaz-Garcia, Cesar
    Domingo, Javier
    Garcia-Velasco, Juan Antonio
    Herraiz, Sonia
    Mirabet, Vicente
    Iniesta, Ignacio
    Cobo, Ana
    Remohi, Jose
    Pellicer, Antonio
    [J]. FERTILITY AND STERILITY, 2018, 109 (03) : 478 - +
  • [7] Reimplantation of cryopreserved ovarian tissue from patients with acute lymphoblastic leukemia is potentially unsafe
    Dolmans, Marie-Madeleine
    Marinescu, Cristina
    Saussoy, Pascale
    Van Langendonckt, Anne
    Amorim, Christiani
    Donnez, Jacques
    [J]. BLOOD, 2010, 116 (16) : 2908 - 2914
  • [8] Fertility Preservation in Women
    Donnez, Jacques
    Dolmans, Marie-Madeleine
    [J]. NEW ENGLAND JOURNAL OF MEDICINE, 2017, 377 (17) : 1657 - 1665
  • [9] Restoration of ovarian activity and pregnancy after transplantation of cryopreserved ovarian tissue: a review of 60 cases of reimplantation
    Donnez, Jacques
    Dolmans, Marie-Madeleine
    Pellicer, Antonio
    Diaz-Garcia, Cesar
    Sanchez Serrano, Maria
    Schmidt, Kristen Tryde
    Ernst, Erik
    Luyckx, Valerie
    Andersen, Claus Yding
    [J]. FERTILITY AND STERILITY, 2013, 99 (06) : 1503 - 1513
  • [10] Preservation of aortic root architecture and properties using a detergent-enzymatic perfusion protocol
    Friedrich, Linda H.
    Jungebluth, Philipp
    Sjoqvist, Sebastian
    Lundin, Vanessa
    Haag, Johannes C.
    Lemon, Greg
    Gustafsson, Ylva
    Ajalloueian, Fatemeh
    Sotnichenko, Alexander
    Kielstein, Heike
    Burguillos, Miguel A.
    Joseph, Bertrand
    Teixeira, Ana I.
    Lim, Mei Ling
    Macchiarini, Paolo
    [J]. BIOMATERIALS, 2014, 35 (06) : 1907 - 1913