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Targeted Delivery of siRNA‐Generating DNA Nanocassettes Using Multifunctional Nanoparticles
Authors:Gee Young Lee  Hari Krishna Sajja  Weiping Qian  Zehong Cao  Weiling He  Prasanthi Karna  Xiaoyuan Chen  Hui Mao  Y Andrew Wang  Lily Yang
Affiliation:1. Emory University School of Medicine, Atlanta, GA 30322, USA;2. First Affiliated Hospital, Sun Yat‐Sen University, Guangzhou, Guangdong 510180, PR China;3. National Institute of Biomedical Imaging and Bioengineering, Bethesda, MD 20892, USA;4. Ocean Nanotech, LLC, Springdale, AR 72764, USA;5. Department of Surgery, Emory University School of Medicine, Clinic C, Room C‐4088, 1365 C Clifton Road, NE, Atlanta, GA 30322, USA
Abstract:Molecular therapy using a small interfering RNA (siRNA) has shown promise in the development of novel therapeutics. Various formulations have been used for in vivo delivery of siRNAs. However, the stability of short double‐stranded RNA molecules in the blood and efficiency of siRNA delivery into target organs or tissues following systemic administration have been the major issues that limit applications of siRNA in human patients. In this study, multifunctional siRNA delivery nanoparticles are developed that combine imaging capability of nanoparticles with urokinase plasminogen activator receptor‐targeted delivery of siRNA expressing DNA nanocassettes. This theranostic nanoparticle platform consists of a nanoparticle conjugated with targeting ligands and double‐stranded DNA nanocassettes containing a U6 promoter and a shRNA gene for in vivo siRNA expression. Targeted delivery and gene silencing efficiency of firefly luciferase siRNA nanogenerators are demonstrated in tumor cells and in animal tumor models. Delivery of survivin siRNA expressing nanocassettes into tumor cells induces apoptotic cell death and sensitizes cells to chemotherapy drugs. The ability of expression of siRNAs from multiple nanocassettes conjugated to a single nanoparticle following receptor‐mediated internalization should enhance the therapeutic effect of the siRNA‐mediated cancer therapy.
Keywords:DNA nanocassettes  targeted nanoparticles  siRNA expression  cancer therapy  drug delivery
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