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A Journey to Reach the Ovary Using Next-Generation Technologies

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MDPI
DOI: 10.3390/ijms242316593

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gold nanoparticles; microRNA therapies; ovaries; fertility preservation

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The current methods for fertility preservation are not suitable for all cancer patients, and an emerging strategy called pharmacoprotection shows potential in filling this gap. Gold nanoparticles have unique properties that make them an attractive candidate for drug delivery systems. MicroRNA therapy is also considered a next-generation approach, but its clinical availability is hindered by obstacles.
Although effective in terms of the chances of future live birth, the current methods for fertility preservation, such as oocyte, embryo, or ovarian tissue cryopreservation, cannot be offered to all cancer patients in all clinical contexts. Expanding options for fertility preservation is crucial to addressing the need to encompass all situations. One emerging strategy is pharmacoprotection, a non-invasive approach that has the potential to fill existing gaps in fertility preservation. In addition to the identification of the most effective therapeutic agents, the potential for off-target effects remains one of the main limitations of this strategy for clinical application, particularly when healthy ovarian tissue is targeted. This review focuses on the advances in pharmacoprotective approaches and the challenge of targeting the ovaries to deliver these agents. The unique properties of gold nanoparticles (AuNPs) make them an attractive candidate for this purpose. We discuss how AuNPs meet many of the requirements for an ideal drug delivery system, as well as the existing limitations that have hindered the progression of AuNP research into more clinical trials. Additionally, the review highlights microRNA (miRNA) therapy as a next-generation approach to address the issues of fertility preservation and discusses the obstacles that currently impede its clinical availability.

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