Developing MiR-133a zipper nanoparticles for targeted enhancement of thermogenic adipocyte generation Journal Article


Authors: Yi, S. A.; Pongkulapa, T.; Nevins, S.; Goldston, L. L.; Chen, M.; Lee, K. B.
Article Title: Developing MiR-133a zipper nanoparticles for targeted enhancement of thermogenic adipocyte generation
Abstract: Existing delivery methods for RNAi therapeutics encounter challenges, including stability, specificity, and off-target effects, which restrict their clinical effectiveness. In this study, a novel miR-133a zipper nanoparticle (NP) system that integrates miRNA zipper technology with rolling circle transcription (RCT) to achieve targeted delivery and specific regulation of miR-133a in adipocytes, is presented. This innovative approach can greatly enhance the delivery and release of miR-133a zippers, increasing the expression of thermogenic genes and mitochondrial biogenesis. he miR-133a zipper NP is utilized for the delivery of miRNA zipper-blocking miR-133a, an endogenous inhibitor of Prdm16 expression, to enhance the thermogenic activity of adipocytes by modulating their transcriptional program. Inhibition of miR-133a through the miR-133a zipper NP leads to more significant upregulation of thermogenic gene expression (Prdm16 and Ucp1) than with the free miR-133a zipper strand. Furthermore, miR-133a zipper NPs increase the number of mitochondria and induce heat production, reducing the size of 3D adipose spheroids. In short, this study emphasizes the role of RNA NPs in improving RNAi stability and specificity and paves the way for broader applications in gene therapy. Moreover, this research represents a significant advancement in RNAi-based treatments, pointing toward a promising direction for future therapeutic strategies. © 2024 The Author(s). Advanced Healthcare Materials published by Wiley-VCH GmbH.
Keywords: dna binding protein; genetics; dna-binding proteins; mouse; animal; cytology; metabolism; animals; mice; microrna; transcription factor; transcription factors; rna; chemistry; transcription; gene therapy; nanoparticles; nanoparticle; clinical effectiveness; micrornas; mitochondria; molecular weight; mitochondrion; adipocyte; adipocytes; 3t3-l1 cells; delivery methods; thermogenesis; humans; human; rnai therapeutics; adipocyte browning; mirna-133a zipper nanoparticles; rna nanotechnology; thermogenic adipocytes; mirn133 microrna, mouse; mirna-133a zipper nanoparticle; nanoparticle systems; rnai therapeutic; thermogenic adipocyte; 3t3-l1 cell line
Journal Title: Advanced Healthcare Materials
Volume: 13
Issue: 22
ISSN: 2192-2640
Publisher: Wiley V C H Verlag Gmbh  
Date Published: 2024-09-01
Start Page: 2400654
Language: English
DOI: 10.1002/adhm.202400654
PUBMED: 38795000
PROVIDER: scopus
DOI/URL:
Notes: Article -- Source: Scopus
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  1. Sang Ah Yi
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