- Kerr JB, Myers M, Anderson RA. The dynamics of the primordial follicle reserve. Reproduction 2013; 146(6):R205-15.
- Dittrich R, Maltaris T, Hoffmann I, Oppelt PG, Beckmann MW, Mueller A. Fertility preservation in cancer patients. Minerva ginecologica 2010; 62(1):63-80.
- Picton HM. Preservation of female fertility in humans and animal species. Animal reproduction 2018; 15(3):301.
- Fathi R, Rezazadeh Valojerdi M, Salehnia M, Ebrahimi B, SalmanYazdi R. Ovarian tissue transplantation: advantages, disadvantages and upcoming challenges (A review article). Journal of Mazandaran University of Medical Sciences 2014; 24(113):253-65.
- Rezaie M, Fathi F, Seyyedoshohadaie F, Rah Hagh R. Comparison of cryopreservation of bovine ovarian tissue: slow and rapid cryopreservation. The Iranian Journal of Obstetrics, Gynecology and Infertility 2012; 15(2):1-6.
- Rivas Leonel EC, Lucci CM, Amorim CA. Cryopreservation of human ovarian tissue: a review. Transfusion medicine and hemotherapy 2019; 46(3):173-81.
- Jones AS, Shikanov A. Ovarian tissue cryopreservation and novel bioengineering approaches for fertility preservation. Current breast cancer reports 2020; 12(4):351-60.
- Sahoo DR, Biswal T. Alginate and its application to tissue engineering. SN Applied Sciences 2021; 3(1):30.
- Gattazzo F, Urciuolo A, Bonaldo P. Extracellular matrix: a dynamic microenvironment for stem cell niche. Biochimica et Biophysica Acta (BBA)-General Subjects 2014; 1840(8):2506-19.
- Ghahremani-Nasab M, Babaie S, Bazdar S, Paiva-Santos AC, Del Bakhshayesh MR, Akbari-Gharalari N, et al. Infertility treatment using polysaccharides-based hydrogels: new strategies in tissue engineering and regenerative medicine. Journal of Nanobiotechnology 2025; 23(1):162.
- Asgari F, Valojerdi MR, Ebrahimi B, Fatehi R. Three dimensional in vitro culture of preantral follicles following slow-freezing and vitrification of mouse ovarian tissue. Cryobiology 2015; 71(3):529-36.
- Sadeghnia S, Akhondi MM, Hossein G, Mobini S, Hosseini L, Naderi MM, et al. Development of sheep primordial follicles encapsulated in alginate or in ovarian tissue in fresh and vitrified samples. Cryobiology 2016; 72(2):100-5.
- Kavand A, Noverraz F, Gerber-Lemaire S. Recent advances in alginate-based hydrogels for cell transplantation applications. Pharmaceutics 2024; 16(4):469.
- Huang H, Choi JK, Rao W, Zhao S, Agarwal P, Zhao G, et al. Alginate hydrogel microencapsulation inhibits devitrification and enables large‐volume low‐CPA cell vitrification. Advanced functional materials 2015; 25(44):6839-50.
- Mohanty S, Wu Y, Chakraborty N, Mohanty P, Ghosh G. Impact of alginate concentration on the viability, cryostorage, and angiogenic activity of encapsulated fibroblasts. Materials Science and Engineering: C 2016; 65:269-77.
- Jamalzaei P, Valojerdi MR, Montazeri L, Baharvand H. Applicability of hyaluronic acid-alginate hydrogel and ovarian cells for in vitro development of mouse preantral follicles. Cell Journal (Yakhteh). 2020 Sep 8; 22(Suppl 1):49.
- Feng Q, Wang J, Yi D, Li S, Cheng Y, Chen Z, et al. Epigallocatechin Gallate Cooperated with Hydrogel Encapsulation Enable High-performance Cryopreservation of Mouse Ovaries. Materials Today Bio 2025: 101883.
- Aminian S, Mazoochi T, Hosseini ES, Jamalzaei P, Taheri MA. Protective Effect of Bio-Scaffold Against Vitrification Damage in Mouse Ovarian Tissue. Reproductive Sciences 2024; 31(11):3512-20.
- Shahrbabak SM, Jalali SM, Fathabadi MF, Tayebi-Khorrami V, Amirinejad M, Forootan S, et al. Modified alginates for precision drug delivery: Advances in controlled-release and targeting systems. International Journal of Pharmaceutics: X 2025: 100381.
- Chu Y, Zhang J, Wang L, Xie J, Chen J, Hu X, et al. The mechanism and protective strategies of follicle injury after ovarian tissue cryopreservation and thawed transplantation: a review. Journal of Ovarian Research 2025; 18(1):217.
- Kuo CK, Ma PX. Ionically crosslinked alginate hydrogels as scaffolds for tissue engineering: Part 1. Structure, gelation rate and mechanical properties. Biomaterials 2001; 22(6):511-21.
- Lierman S, Bus A, Andries S, Trias E, Bols PE, Tilleman K. Passive slow freezing is an efficacious and cost-effective alternative to controlled slow freezing for ovarian tissue cryopreservation. Cryobiology 2021; 100:164-72.
- Vermeulen M, Poels J, De Michele F, Des Rieux A, Wyns C. Restoring fertility with cryopreserved prepubertal testicular tissue: perspectives with hydrogel encapsulation, nanotechnology, and bioengineered scaffolds. Annals of biomedical engineering 2017; 45(7):1770-81.
- Fathiraja P, Gopalrajan S, Karunanithi M, Nagarajan M, Obaiah MC, Durairaj S, et al. Response surface methodology model to optimize concentration of agar, alginate and carrageenan for the improved properties of biopolymer film. Polymer Bulletin 2022; 79(8):6211-37.
- Bartnikowski M, Bartnikowski NJ, Woodruff MA, Schrobback K, Klein TJ. Protective effects of reactive functional groups on chondrocytes in photocrosslinkable hydrogel systems. Acta biomaterialia 2015; 27:66-76.
- Li L, Wang S, Chen Y, Dong S, Zhang C, Liao L, et al. Hydrogels mimicking the viscoelasticity of extracellular matrix for regenerative medicine: Design, application, and molecular mechanism. Chemical Engineering Journal 2024; 498:155206.
- Li Z, Song P, Li G, Han Y, Ren X, Bai L, et al. AI energized hydrogel design, optimization and application in biomedicine. Materials Today Bio 2024; 25:101014.
|