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Published on: July 5, 2019
A nanocomplex that is both tumor cell-selective and cancer gene-specific for anaplastic large cell lymphoma
Nianxi Zhao1, Hitesh G Bagaria, Michael S Wong
1Department of Pathology, the Methodist Hospital and the Methodist Hospital Research Institute, Houston, TX 77030, USA.
Background:
Many in vitro studies have demonstrated that silencing of cancerous genes by siRNAs is a potential therapeutic approach for blocking tumor growth. However, siRNAs are not cell type-selective, cannot specifically target tumor cells, and therefore have limited in vivo application for siRNA-mediated gene therapy.
Results:
In this study, we tested a functional RNA nanocomplex which exclusively targets and affects human anaplastic large cell lymphoma (ALCL) by taking advantage of the abnormal expression of CD30, a unique surface biomarker, and the anaplastic lymphoma kinase (ALK) gene in lymphoma cells. The nanocomplexes were formulated by incorporating both ALK siRNA and a RNA-based CD30 aptamer probe onto nano-sized polyethyleneimine-citrate carriers. To minimize potential cytotoxicity, the individual components of the nanocomplexes were used at sub-cytotoxic concentrations. Dynamic light scattering showed that formed nanocomplexes were ~140 nm in diameter and remained stable for more than 24 hours in culture medium. Cell binding assays revealed that CD30 aptamer probes selectively targeted nanocomplexes to ALCL cells, and confocal fluorescence microscopy confirmed intracellular delivery of the nanocomplex. Cell transfection analysis showed that nanocomplexes silenced genes in an ALCL cell type-selective fashion. Moreover, exposure of ALCL cells to nanocomplexes carrying both ALK siRNAs and CD30 RNA aptamers specifically silenced ALK gene expression, leading to growth arrest and apoptosis.
Conclusions:
Taken together, our findings indicate that this functional RNA nanocomplex is both tumor cell type-selective and cancer gene-specific for ALCL cells.
Insights
This study developed a novel RNA nanocomplex that selectively targets and silences cancer genes in anaplastic large cell lymphoma (ALCL) cells. This targeted approach offers a promising strategy for effective siRNA gene therapy in ALCL treatment.
Area of Science:
- Nanomedicine
- RNA therapeutics
- Cancer biology
Background:
- siRNA gene therapy shows potential for blocking tumor growth.
- Current siRNAs lack cell type selectivity, limiting in vivo applications.
- Targeted delivery is crucial for effective siRNA-mediated gene therapy.
Purpose of the Study:
- To develop a functional RNA nanocomplex for targeted gene silencing in anaplastic large cell lymphoma (ALCL).
- To leverage CD30 biomarker and ALK gene for specific targeting of lymphoma cells.
- To evaluate the efficacy and selectivity of the nanocomplex in vitro.
Main Methods:
- Formulation of nanocomplexes with ALK siRNA and CD30 aptamer on polyethyleneimine-citrate carriers.
- Characterization of nanocomplex size and stability using dynamic light scattering.
- Assessment of cell targeting, intracellular delivery, and gene silencing in ALCL cells via cell binding assays and confocal microscopy.
Main Results:
- Nanocomplexes (~140 nm) demonstrated stability in culture medium.
- CD30 aptamer probes enabled selective targeting of ALCL cells.
- Intracellular delivery and ALK gene silencing were confirmed, leading to growth arrest and apoptosis.
Conclusions:
- The developed RNA nanocomplex exhibits tumor cell type selectivity for ALCL.
- The nanocomplex demonstrates cancer gene specificity for ALK in lymphoma cells.
- This targeted approach represents a significant advancement for ALCL gene therapy.
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