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Published on: April 26, 2016
Design, Synthesis, Anticancer Activity, and Solid Lipid Nanoparticle Formulation of Indole- and Benzimidazole-Based
Manar I Nagy1, Khaled M Darwish1, Safaa M Kishk1
1Department of Medicinal Chemistry, Faculty of Pharmacy, Suez Canal University, Ismailia 41522, Egypt.
Abstract:
Cancer is a multifactorial disease necessitating identification of novel targets for its treatment. Inhibition of Bcl-2 for triggered pro-apoptotic signaling is considered a promising strategy for cancer treatment. Within the current work, we aimed to design and synthesize a new series of benzimidazole- and indole-based derivatives as inhibitors of Bcl-2 protein. The market pan-Bcl-2 inhibitor, obatoclax, was the lead framework compound for adopted structural modifications. The obatoclax's pyrrolylmethine linker was replaced with straight alkylamine or carboxyhydrazine methylene linkers providing the new compounds. This strategy permitted improved structural flexibility of synthesized compounds adopting favored maneuvers for better fitting at the Bcl-2 major hydrophobic pocket. Anti-cancer activity of the synthesized compounds was further investigated through MTT-cytotoxic assay, cell cycle analysis, RT-PCR, ELISA and DNA fragmentation. Cytotoxic results showed compounds 8a, 8b and 8c with promising cytotoxicity against MDA-MB-231/breast cancer cells (IC50 = 12.69 ± 0.84 to 12.83 ± 3.50 µM), while 8a and 8c depicted noticeable activities against A549/lung adenocarcinoma cells (IC50 = 23.05 ± 1.45 and 11.63 ± 2.57 µM, respectively). The signaling Bcl-2 inhibition pathway was confirmed by molecular docking where significant docking energies and interactions with key Bcl-2 pocket residues were depicted. Moreover, the top active compound, 8b, showed significant upregulated expression levels of pro-apoptotic/anti-apoptotic of genes; Bax, Bcl-2, caspase-3, -8, and -9 through RT-PCR assay. Improving the compound's pharmaceutical profile was undertaken by introducing 8b within drug-solid/lipid nanoparticle formulation prepared by hot melting homogenization technique and evaluated for encapsulation efficiency, particle size, and zeta potential. Significant improvement was seen at the compound's cytotoxic activity. In conclusion, 8b is introduced as a promising anti-cancer lead candidate that worth future fine-tuned lead optimization and development studies while exploring its potentiality through in-vivo preclinical investigation.
Insights
Researchers developed novel benzimidazole and indole derivatives targeting Bcl-2 protein for cancer treatment. Compound 8b demonstrated significant anti-cancer activity and improved drug delivery via nanoparticles, showing promise as a lead candidate.
Area of Science:
- Medicinal Chemistry
- Molecular Biology
- Nanotechnology
Background:
- Cancer requires novel therapeutic targets; Bcl-2 inhibition is a promising strategy.
- Obatoclax, a known Bcl-2 inhibitor, served as the lead compound for structural modification.
- Modifications focused on replacing the pyrrolylmethine linker to enhance binding flexibility.
Purpose of the Study:
- To design and synthesize novel benzimidazole- and indole-based derivatives as Bcl-2 inhibitors.
- To evaluate the anti-cancer activity and mechanism of action of synthesized compounds.
- To formulate the lead compound into nanoparticles to improve its pharmaceutical profile.
Main Methods:
- Synthesis of new benzimidazole and indole derivatives based on obatoclax scaffold.
- In vitro anti-cancer evaluation using MTT assays, cell cycle analysis, RT-PCR, ELISA, and DNA fragmentation.
- Molecular docking studies to assess binding interactions with the Bcl-2 protein.
- Preparation and characterization of drug-loaded nanoparticles using hot melting homogenization.
Main Results:
- Compounds 8a, 8b, and 8c exhibited significant cytotoxicity against breast and lung cancer cell lines.
- Molecular docking confirmed favorable interactions with the Bcl-2 hydrophobic pocket.
- Compound 8b demonstrated upregulated expression of pro-apoptotic genes (Bax, caspase-3, -8, -9) and modulated Bcl-2 expression.
- Nanoparticle formulation of compound 8b significantly enhanced its cytotoxic activity.
Conclusions:
- Compound 8b is identified as a promising anti-cancer lead candidate with potent Bcl-2 inhibitory activity.
- The novel linker strategy improved compound flexibility and binding affinity.
- Nanoparticle formulation enhances the therapeutic potential of compound 8b, warranting further preclinical development.
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