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T7 Peptide-Conjugated Lipid Nanoparticles for Dual Modulation of Bcl-2 and Akt-1 in Lung and Cervical Carcinomas
Xinwei Cheng, Daorui Yu1, Guang Cheng2,3
1Department of Pharmacology, School of Basic Medicine and Life Science , Hainan Medical University , Haikou , China.
Abstract:
Expression of Bcl-2 and Akt-1 has been associated with human cancer. G3139 and RX-0201, targeting Bcl-2 and Akt-1, respectively, are antisense oligonucleotides (ASOs) that have shown limited efficacy in clinical trials. Herein, we report a combination of newly designed ASOs based on these agents and was delivered by tumor cell-targeting lipid nanoparticles (LNPs). A "Gapmer" design strategy was applied to these ASOs with the addition of 2'-O-methyl modifications on the nucleotides at 5' and 3' ends. A dual-channel syringe pump-based system was developed for the synthesis of the LNPs. ASO-LNPs composed of DODMA, egg PC, cholesterol, T7-PEG-DSPE, and PEG-DMG at a molar ratio of 35:39.5:20:0.5:5 and carrying either individual ASOs or co-loaded ASO combinations (Co-ASOs) were synthesized and evaluated in both KB and A549 cancer cells and in an A549 murine xenograft model to determine their antitumor effects and biological activities. The ASO-LNPs exhibited excellent colloidal stability and high ASO encapsulation efficiency with relatively small mean particle sizes and moderately positive zeta potentials. Transferrin receptor-targeting T7-conjugated LNPs showed enhanced cellular uptake compared to nontargeted LNPs. In addition, both T7-conjugated Co-ASOs-LNPs and non-T7-conjugated Co-ASOs-LNPs at a molar ratio of (G3139-GAP to RX-0201-GAP at 1:2) showed efficient downregulation of both Bcl-2 and Akt-1 in both A549 and KB cells. Furthermore, T7-conjugated Co-ASOs-LNPs (Co-ASOs-LNPs) produced superior antitumor activity, prolonged the overall survival time, and demonstrated tumor targeting activity in an A549 xenograft model.
Insights
Newly designed antisense oligonucleotides (ASOs) targeting Bcl-2 and Akt-1, delivered via tumor-targeting lipid nanoparticles (LNPs), show potent antitumor effects and improved survival in preclinical cancer models.
Area of Science:
- Oncology
- Nanomedicine
- Molecular Biology
Background:
- Bcl-2 and Akt-1 expression are linked to human cancers.
- Existing antisense oligonucleotides (ASOs) like G3139 and RX-0201 have shown limited clinical efficacy.
- Novel delivery systems are needed to enhance ASO therapeutic potential.
Purpose of the Study:
- To develop and evaluate novel, combination antisense oligonucleotides (Co-ASOs) encapsulated in tumor-targeting lipid nanoparticles (LNPs).
- To assess the efficacy of these targeted Co-ASO-LNPs in inhibiting Bcl-2 and Akt-1, and their subsequent antitumor activity.
Main Methods:
- Designed modified "Gapmer" ASOs targeting Bcl-2 and Akt-1.
- Synthesized lipid nanoparticles (LNPs) using a dual-channel syringe pump system.
- Formulated targeted (T7-conjugated) and non-targeted ASO-LNPs, including co-loaded ASO combinations (Co-ASOs).
- Evaluated ASO-LNPs in cancer cell lines (KB, A549) and a murine xenograft model.
Main Results:
- ASO-LNPs demonstrated excellent colloidal stability, high encapsulation efficiency, and optimal particle size.
- T7-conjugated LNPs showed enhanced cellular uptake.
- Co-ASOs-LNPs efficiently downregulated Bcl-2 and Akt-1 expression in cancer cells.
- T7-conjugated Co-ASO-LNPs exhibited superior antitumor activity and prolonged survival in a xenograft model.
Conclusions:
- Targeted delivery of combination antisense oligonucleotides via lipid nanoparticles represents a promising strategy for cancer therapy.
- This novel approach overcomes limitations of previous ASO therapies.
- Further investigation into T7-conjugated Co-ASO-LNPs warrants clinical translation for enhanced cancer treatment.
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