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.

Bioorganic Chemistry
|March 20, 2024
PubMed

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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