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1.
Tissue Eng Part B Rev ; 29(3): 260-298, 2023 Jun.
Article in English | MEDLINE | ID: mdl-36355603

ABSTRACT

Ovarian tissue has a unique microarchitecture and a complex cellular and molecular dynamics that are essential for follicular survival and development. Due to this great complexity, several factors may lead to ovarian insufficiency, and therefore to systemic metabolic disorders and female infertility. Techniques currently used in the reproductive clinic such as oocyte cryopreservation or even ovarian tissue transplant, although effective, have several limitations, which impair their wide application. In this scenario, mimetic ovarian tissue reconstruction comes as an innovative alternative to develop new methodologies for germ cells preservation and ovarian functions restoration. The ovarian extracellular matrix (ECM) is crucial for oocyte viability maintenance, once it acts actively in folliculogenesis. One of the key components of ovarian bioengineering is biomaterials application that mimics ECM and provides conditions for cell anchorage, proliferation, and differentiation. Therefore, this review aims at describing ovarian tissue engineering approaches and listing the main limitations of current methods for preservation and reestablishment of ovarian fertility. In addition, we describe the main elements that structure this study field, highlighting the main advances and the challenges to overcome to develop innovative methodologies to be applied in reproductive medicine. Impact Statement This review presents the main advances in the application of tissue bioengineering in the ovarian tissue reconstruction to develop innovative solutions for ovarian fertility reestablishment.


Subject(s)
Cryopreservation , Ovary , Female , Animals , Cryopreservation/methods , Bioengineering , Tissue Engineering , Biomedical Engineering
2.
Tissue Eng Part B Rev ; 28(4): 861-890, 2022 08.
Article in English | MEDLINE | ID: mdl-34476997

ABSTRACT

Tissue engineering is an innovative approach to develop allogeneic tissues and organs. The uterus is a very sensitive and complex organ, which requires refined techniques to properly regenerate and even, to rebuild itself. Many therapies were developed in 20th century to solve reproductive issues related to uterus failure and, more recently, tissue engineering techniques provided a significant evolution in this issue. Herein we aim to provide a broad overview and highlights of the general concepts involved in bioengineering to reconstruct the uterus and its tissues, focusing on strategies for tissue repair, production of uterine scaffolds, biomaterials and reproductive animal models, highlighting the most recent and effective tissue engineering protocols in literature and their application in regenerative medicine. In addition, we provide a discussion about what was achieved in uterine tissue engineering, the main limitations, the challenges to overcome, and future perspectives in this research field. Impact Statement This review presents the applications of tissue engineering in uterine reconstruction and in regenerative therapies of uterine wall injuries.


Subject(s)
Tissue Engineering , Tissue Scaffolds , Animals , Biocompatible Materials , Extracellular Matrix , Female , Regenerative Medicine/methods , Tissue Engineering/methods , Uterus
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