From Infection to Oncology: AI-Assisted Drug Repurposing Uncovers Anti-Infective and Excipient-Class Compounds as PPAR-α-Linked Anticancer Agents

Drug repurposing offers an efficient strategy to identify novel anticancer agents from marketed compounds. We screened a library of ~1400 approved drugs using a PPARE–PPAR-α luciferase reporter assay to uncover modulators of lipid metabolism that induce cancer cell death without direct binding to PPARα. This primary screen identified 224 compounds inhibiting reporter activity by >50%, of which 26 demonstrated ≥50% cytotoxicity in KAIMRC1 breast cancer and HCT116 colorectal cancer cells at 10 µM after 48 h incubation. AI-based DrTarget analysis classified these hits, with Group 1 comprising four previously unrecognized anticancer agents: antibiotics cefditoren pivoxil, tebipenem pivoxil, broxyquinoline, and cosmetic ingredient 1-hexadecanol. Dose–response studies across KAIMRC1, HCT116, and SW480 cells revealed IC50 values as low as ~10 µM, comparable to daunorubicin, a well-known anti-cancer drug. Apoptosis profiling confirmed activation of intrinsic/extrinsic pathways via cytochrome c, SMAC/Diablo, TRAIL-R1/DR4, and phospho-p53 modulation. Based on these findings, we propose the repurposing of Broxyquinoline, 1-Hexadecanol, Cefditoren Pivoxil, and Tebipenem Pivoxil as potential anti-cancer drugs.

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Publication Details

Journal
Cancers
Published
2026-10-08
DOI
https://doi.org/10.3390/cancers18193231
Primary Topic
Peroxisome Proliferator-Activated Receptors
Type
article
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article

From Infection to Oncology: AI-Assisted Drug Repurposing Uncovers Anti-Infective and Excipient-Class Compounds as PPAR-α-Linked Anticancer Agents

Reem A. Alkhodier, Amani R. Alsharidah, Shoeb Ikhlas, Mohamed Boudjelal et al.
Cancers
Peroxisome Proliferator-Activated Receptors
article

From Infection to Oncology: AI-Assisted Drug Repurposing Uncovers Anti-Infective and Excipient-Class Compounds as PPAR-α-Linked Anticancer Agents

Reem A. Alkhodier, Amani R. Alsharidah, Shoeb Ikhlas, Mohamed Boudjelal, Sergio Senar
article en

Abstract

Drug repurposing offers an efficient strategy to identify novel anticancer agents from marketed compounds. We screened a library of ~1400 approved drugs using a PPARE–PPAR-α luciferase reporter assay to uncover modulators of lipid metabolism that induce cancer cell death without direct binding to PPARα. This primary screen identified 224 compounds inhibiting reporter activity by >50%, of which 26 demonstrated ≥50% cytotoxicity in KAIMRC1 breast cancer and HCT116 colorectal cancer cells at 10 µM after 48 h incubation. AI-based DrTarget analysis classified these hits, with Group 1 comprising four previously unrecognized anticancer agents: antibiotics cefditoren pivoxil, tebipenem pivoxil, broxyquinoline, and cosmetic ingredient 1-hexadecanol. Dose–response studies across KAIMRC1, HCT116, and SW480 cells revealed IC50 values as low as ~10 µM, comparable to daunorubicin, a well-known anti-cancer drug. Apoptosis profiling confirmed activation of intrinsic/extrinsic pathways via cytochrome c, SMAC/Diablo, TRAIL-R1/DR4, and phospho-p53 modulation. Based on these findings, we propose the repurposing of Broxyquinoline, 1-Hexadecanol, Cefditoren Pivoxil, and Tebipenem Pivoxil as potential anti-cancer drugs.

CancersVol. 18(19)
King Saud bin Abdulaziz University for Health Sciences (SA), King Saud University (SA), King Abdullah International Medical Research Center (SA), National Guard Health Affairs (SA)
Openalex Percentile: Top 23%
Peroxisome Proliferator-Activated Receptors
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From Infection to Oncology: AI-Assisted Drug Repurposing Uncovers Anti-Infective and Excipient-Class Compounds as PPAR-α-Linked Anticancer Agents — Reem A. Alkhodier, Amani R. Alsharidah, et al. · Cancers (2026) | TGRS Research Map | TGRS