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Bis-arylidene oxindoles for colorectal cancer nanotherapy
Tithi Bhattacharyya1, Tanushree Mishra2, Debojyoti Das2
1Division of Oils, Lipid Science & Technology, CSIR-Indian Institute of Chemical Technology, Hyderabad 500007, India; Academy of Scientific and Innovative Research (AcSIR), CSIR-HRDC Campus, Ghaziabad 201002, India.
Abstract:
Oxindoles are potent anti-cancer agents and are also used against microbial and fungal infections and for treating neurodegenerative diseases. These oxindoles are earlier established as estrogen receptor (ER)-targeted agents for killing ER (+) cancer cells. Our previously developed bis-arylidene oxindole, Oxifen (OXF) exhibits effective targeting towards ER (+) cancer cells which has a structural resemblance with tamoxifen. Herein, we have designed and synthesized few structural analogues of OXF such as BPYOX, ACPOX and ACPOXF to examine its cytotoxicity in different cancer as well as non-cancer cell lines and its potential to form self- aggregates in aqueous solution. Among these series of molecules, ACPOXF showed maximum toxicity in colorectal cancer cell line which are ER (-) but it also kills non-cancer cell line HEK-293, thereby reducing its cancer cell selectivity. Incidentally, ACPOXF exhibits self-aggregation, without the help of a co-lipid with nanometric size in aqueous solution. ACPOXF self-aggregate was co-formulated with glucocorticoid receptor (GR) synthetic ligand, dexamethasone (Dex) (called, ACPOXF-Dex aggregate) which could selectively kill ER (-) colorectal cancer cells and also could increase survivability of colon-tumour bearing mice. ACPOXF-Dex induced ROS up-regulation followed by apoptosis through expression of caspase-3. Further, we observed upregulation of antiproliferative factor, p53 and epithelial-to-mesenchymal (EMT) reversal marker E-cadherin in tumour mass. In conclusion, a typical structural modification in ER-targeting Oxifen moiety resulted in its self-aggregation that enabled it to carry a GR-ligand, thus broadening its selective antitumor property especially as colon cancer therapeutics.
Insights
Structural modification of oxindoles led to self-aggregating nanoparticles. These nanoparticles, when combined with dexamethasone, selectively kill estrogen receptor-negative colorectal cancer cells and improve survival rates in mice.
Area of Science:
- Medicinal Chemistry
- Nanotechnology
- Oncology
Background:
- Oxindoles are established anti-cancer agents targeting estrogen receptor-positive (ER+) cells.
- Oxifen (OXF), a bis-arylidene oxindole, effectively targets ER+ cancer cells.
- Developing novel therapeutics for ER-negative cancers remains a challenge.
Purpose of the Study:
- To design and synthesize structural analogues of Oxifen (OXF).
- To evaluate the cytotoxicity and self-aggregation potential of novel oxindole derivatives.
- To develop a targeted therapeutic for estrogen receptor-negative (ER-) colorectal cancer.
Main Methods:
- Synthesis of oxindole analogues (BPYOX, ACPOX, ACPOXF).
- Cytotoxicity assays on various cancer and non-cancer cell lines.
- Characterization of ACPOXF self-aggregation in aqueous solution.
- Formulation of ACPOXF-dexamethasone (Dex) aggregates.
- In vivo studies using colon-tumour bearing mice.
Main Results:
- ACPOXF demonstrated cytotoxicity against ER-negative colorectal cancer cells but lacked selectivity.
- ACPOXF spontaneously formed nanometric self-aggregates in aqueous solution.
- ACPOXF-Dex aggregates selectively killed ER-negative colorectal cancer cells.
- ACPOXF-Dex treatment increased survival rates in tumor-bearing mice.
- ACPOXF-Dex induced apoptosis via ROS up-regulation and caspase-3 expression.
- Tumor tissues showed increased p53 and E-cadherin levels.
Conclusions:
- Structural modification of ER-targeting oxindoles can yield self-aggregating nanoparticles.
- Self-aggregating ACPOXF can be co-formulated with dexamethasone (Dex) for targeted cancer therapy.
- ACPOXF-Dex aggregates show selective anti-tumor activity against ER-negative colorectal cancer.
- This approach broadens the therapeutic potential of oxindoles, particularly for colon cancer.
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