4.8 Article

Carboxymethyl Dextran-Stabilized Polyethylenimine-Poly(epsilon-caprolactone) Nanoparticles-Mediated Modulation of MicroRNA-34a Expression via Small-Molecule Modulator for Hepatocellular Carcinoma Therapy

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 8, 期 27, 页码 17068-17079

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b03122

关键词

carboxymethyl dextran; polyethylenimine-poly(epsilon-caprolactone); nanoparticles; microRNA modulation; small-molecule modulator; hepatocellular carcinoma

资金

  1. National Natural Science Foundation [NSFC31440059, NSFC81272453]
  2. Project of Construction of Innovative Teams and Teacher Career Development for Universities and Colleges Under Beijing Municipality [IDHT20140504]
  3. Beijing Natural Science Foundation [5153024]
  4. Beijing City Board of Education Science and Technology Program [KM201510005027]
  5. Enterprise Project [40015001201504]
  6. Rixin Talent Program of BJUT [2013 RX-15]

向作者/读者索取更多资源

MicroRNA-34a (miR-34a) modulation therapy has shown great promise to treat hepatocellular carcinoma (HCC). 2'-Hydroxy-2,4,4',5,6'-pentamethoxychalcone, termed Rubone, has been shown to specifically upregulate miR-34a expression in HCC cells and considered as novel anticancer agent. However, the extremely low aqueous solubility of Rubone hampers its use in cancer treatment. In the present study, surface-stabilized nanoparticles-based delivery strategy was engaged to overcome this impediment. In our preparation, Rubone was encapsulated in the micelles composed of polyethylenimine-poly(epsilon-caprolactone) (PEI-PCL) through hydrophobic interactions, which were subsequently stabilized with anionic carboxymethyl dextran CMD via electronic interaction. We found that Rubone-encapsulating nanoparticles are dispersed well in aqueous solution. The results further demonstrated that Rubone could be efficiently delivered in HCC cells by nanoparticles and upregulate miR-34a expression, which in turn led to inhibition of proliferation, migration, and increased apoptosis of HCC cells. In vivo experiments showed that Rubone can be preferentially delivered into tumor tissues by CMD-stabilized PEI-PCL nanoparticles after intravenous administration and significantly inhibited tumor growth. Furthermore, low cytotoxicity of the nanoparticles was observed in vitro and in vivo analyses, indicating a good compatibility of generated nanoparticles. The obtained results suggest that CMD-stabilized PEI-PCL nanoparticles may serve as a novel approach for small-molecule-modulator mediated miR-34a restoration for HCC therapy.

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