Rational Design of Nanomedicine for Placental Disorders: Birthing a New Era in Women's Reproductive Health

Author:

Geisler Hannah C.1ORCID,Safford Hannah C.1ORCID,Mitchell Michael J.12345ORCID

Affiliation:

1. Department of Bioengineering University of Pennsylvania Philadelphia PA 19104 USA

2. Penn Institute for RNA Innovation Perelman School of Medicine University of Pennsylvania Philadelphia PA 19104 USA

3. Abramson Cancer Center Perelman School of Medicine University of Pennsylvania Philadelphia PA 19104 USA

4. Institute for Immunology Perelman School of Medicine University of Pennsylvania Philadelphia PA 19104 USA

5. Cardiovascular Institute Perelman School of Medicine University of Pennsylvania Philadelphia PA 19014 USA

Abstract

AbstractThe placenta is a transient organ that forms during pregnancy and acts as a biological barrier, mediating exchange between maternal and fetal circulation. Placental disorders, such as preeclampsia, fetal growth restriction, placenta accreta spectrum, and gestational trophoblastic disease, originate in dysfunctional placental development during pregnancy and can lead to severe complications for both the mother and fetus. Unfortunately, treatment options for these disorders are severely lacking. Challenges in designing therapeutics for use during pregnancy involve selectively delivering payloads to the placenta while protecting the fetus from potential toxic side effects. Nanomedicine holds great promise in overcoming these barriers; the versatile and modular nature of nanocarriers, including prolonged circulation times, intracellular delivery, and organ‐specific targeting, can control how therapeutics interact with the placenta. In this review, nanomedicine strategies are discussed to treat and diagnose placental disorders with an emphasis on understanding the unique pathophysiology behind each of these diseases. Finally, prior study of the pathophysiologic mechanisms underlying these placental disorders has revealed novel disease targets. These targets are highlighted here to motivate the rational design of precision nanocarriers to improve therapeutic options for placental disorders.

Funder

National Center for Advancing Translational Sciences

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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