journal article Nov 01, 2021

A review on biomaterials for ovarian tissue engineering

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References
281
[1]
Gomes "Three-dimensional environments preserve extracellular matrix compartments of ovarian follicles and increase FSH-dependent growth" Mol. Reprod. Dev. Inc. Gamete Res. (1999) 10.1002/(sici)1098-2795(199910)54:2<163::aid-mrd8>3.0.co;2-4
[2]
He (2017)
[3]
Belli "Towards a 3D culture of mouse ovarian follicles" Int. J. Dev. Biol. (2013) 10.1387/ijdb.120175mz
[4]
Amorim "Survival of human pre-antral follicles after cryopreservation of ovarian tissue, follicular isolation and in vitro culture in a calcium alginate matrix" Hum. Reprod. (2009) 10.1093/humrep/den343
[5]
Woodruff "The role of the extracellular matrix in ovarian follicle development" Reprod. Sci. (2007) 10.1177/1933719107309818
[6]
Eppig "Development in vitro of mouse oocytes from primordial follicles" Biol. Reprod. (1996) 10.1095/biolreprod54.1.197
[7]
Jin "A novel two-step strategy for in vitro culture of early-stage ovarian follicles in the mouse" Fertil. Steril. (2010) 10.1016/j.fertnstert.2009.10.027
[8]
Abdi "Quality of oocytes derived from vitrified ovarian follicles cultured in two-and three-dimensional culture system in the presence and absence of kit ligand" Biopreserv. Biobank. (2016) 10.1089/bio.2015.0069
[9]
Desai "Three-dimensional in vitro follicle growth: overview of culture models, biomaterials, design parameters and future directions" Reprod. Biol. Endocrinol. (2010) 10.1186/1477-7827-8-119
[10]
Albertini "Ovarian follicle culture systems for mammals" Methods Enzymol. (2010) 10.1016/s0076-6879(10)76007-9
[11]
Araújo "In vitro development of bovine secondary follicles in two-and three-dimensional culture systems using vascular endothelial growth factor, insulin-like growth factor-1, and growth hormone" Theriogenology (2014) 10.1016/j.theriogenology.2014.08.004
[12]
Shikanov "Interpenetrating fibrin–alginate matrices for in vitro ovarian follicle development" Biomaterials (2009) 10.1016/j.biomaterials.2009.06.054
[13]
Drummond "The role of steroids in follicular growth" Reprod. Biol. Endocrinol. (2006) 10.1186/1477-7827-4-16
[14]
Obregón (2017)
[15]
Boccaccini (2007)
[16]
Biomaterials &amp; scaffolds for tissue engineering

Fergal J. O'Brien

Materials Today 2011 10.1016/s1369-7021(11)70058-x
[17]
Chiti "Fibrin in reproductive tissue engineering: a review on its application as a biomaterial for fertility preservation" Ann. of Biomed. Eng. (2017) 10.1007/s10439-017-1817-5
[18]
Chiti "Fibrin-based artificial ovary prototype: from animal models to human clinical application" Curr. Trends Clin. Embryol. (2018)
[19]
Smith (2010)
[20]
Wood "Multi-modal magnetic resonance elastography for noninvasive assessment of ovarian tissue rigidity in vivo" Acta Biomater. (2015) 10.1016/j.actbio.2014.11.022
[21]
Nandy "Correlating optical coherence elastography based strain measurements with collagen content of the human ovarian tissue" Biomed. Opt. Express (2015) 10.1364/boe.6.003806
[22]
Pedde "Emerging biofabrication strategies for engineering complex tissue constructs" Adv. Mater. (2017) 10.1002/adma.201606061
[23]
Tessmar "Customized PEG-derived copolymers for tissue-engineering applications" Macromol. Biosci. (2007) 10.1002/mabi.200600096
[24]
Qasim "3D printing approaches for cardiac tissue engineering and role of immune modulation in tissue regeneration" Int. J. Nanomed. (2019) 10.2147/ijn.s189587
[25]
Bajaj "3D biofabrication strategies for tissue engineering and regenerative medicine" Ann. Rev. Biomed. Eng. (2014) 10.1146/annurev-bioeng-071813-105155
[26]
Pereira "Advanced biofabrication strategies for skin regeneration and repair" Nanomedicine (2013) 10.2217/nnm.13.50
[27]
Moroni "Biofabrication strategies for 3D in vitro models and regenerative medicine" Nat. Rev. Mater. (2018) 10.1038/s41578-018-0006-y
[28]
Heise "Calcium alginate microencapsulation of ovarian follicles impacts FSH delivery and follicle morphology" Reprod. Biol. Endocrinol. (2005) 10.1186/1477-7827-3-47
[29]
Blaustein (1982)
[30]
Gibson "Anatomy, Abdomen and Pelvis, Ovary" (2021)
[31]
Oktem "The ovary: anatomy and function throughout human life" Ann. N. Y. Acad. Sci. (2008) 10.1196/annals.1434.009
[32]
Irving-Rodgers "Phenotypes of the ovarian follicular basal lamina predict developmental competence of oocytes" Hum. Reprod. (2009) 10.1093/humrep/den447
[33]
Desai "Three dimensional culture of fresh and vitrified mouse pre-antral follicles in a hyaluronan-based hydrogel: a preliminary investigation of a novel biomaterial for in vitro follicle maturation" Reprod. Biol. Endocrinol. (2012) 10.1186/1477-7827-10-29
[34]
Orsi (2014)
[35]
Donnez "Fertility preservation in women" Nat. Rev. Endocrinol. (2013) 10.1038/nrendo.2013.205
[36]
Dolmans "Fertility preservation: the challenge of freezing and transplanting ovarian tissue" Trends Mol. Med. (2020)
[37]
Silber "Chapter 13 human ovarian tissue vitrification" Methods Mol. Biol. (2017) 10.1007/978-1-4939-6828-2_13
[38]
[39]
Xiao "Hyaluronidase pretreatment improves the cryopreservation of human ovarian tissue" Cryo Lett. (2019)
[40]
Rivas Leonel "Cryopreservation of human ovarian tissue: a review" Transfus. Med. Hemother. (2019) 10.1159/000499054
[41]
Camboni "Alginate beads as a tool to handle, cryopreserve and culture isolated human primordial/primary follicles" Cryobiology (2013) 10.1016/j.cryobiol.2013.05.002
[42]
Vanacker "Should we isolate human preantral follicles before or after cryopreservation of ovarian tissue?" Fertil. Steril. (2013) 10.1016/j.fertnstert.2012.12.016
[43]
Amorim "The artificial ovary: current status and future perspectives" Future Oncol. (2016) 10.2217/fon-2016-0202
[44]
Dolmans "Fertility preservation: construction and use of artificial ovaries" Reproduction (2019) 10.1530/rep-18-0536
[45]
Telfer "Fertility preservation: progress and prospects for developing human immature oocytes in vitro" Reproduction (2019) 10.1530/rep-19-0077
[46]
Soares "Evaluation of a human ovarian follicle isolation technique to obtain disease-free follicle suspensions before safely grafting to cancer patients" Fertil. Steril. (2015) 10.1016/j.fertnstert.2015.05.021
[47]
Soares "Is transplantation of a few leukemic cells inside an artificial ovary able to induce leukemia in an experimental model?" J. Assist. Reprod. Genet. (2015) 10.1007/s10815-015-0438-x
[48]
Asiabi "In vitro differentiation of theca cells from ovarian cells isolated from postmenopausal women" Hum. Reprod. (2020) 10.1093/humrep/deaa246
[49]
Brito "Three-dimensional systems for in vitro follicular culture: overview of alginate-based matrices" Reprod. Fertil. Dev. (2014) 10.1071/rd12401
[50]
Choi "The crucial role of mechanical heterogeneity in regulating follicle development and ovulation with engineered ovarian microtissue" Biomaterials (2014) 10.1016/j.biomaterials.2014.03.028

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Materials Today Communications
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Citations
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Details
Published
Nov 01, 2021
Vol/Issue
135
Pages
48-63
License
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Funding
FNRS Award: 30443682
Fondation Louvain
Cite This Article
Arezoo Dadashzadeh, Saeid Moghassemi, Amin Shavandi, et al. (2021). A review on biomaterials for ovarian tissue engineering. Acta Biomaterialia, 135, 48-63. https://doi.org/10.1016/j.actbio.2021.08.026
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