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Strategic engineering of imidazopyridine-benzoxazole hybrids targeting microtubule dynamics: comprehensive inhibition of the metastatic cascade.

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Bioorganic chemistry 📖 저널 OA 2.3% 2024: 0/13 OA 2025: 1/75 OA 2026: 4/129 OA 2024~2026 2026 Vol.172() p. 109615 Microtubule and mitosis dynamics
TL;DR Findings identify Imp-18 and Imp-20 as promising microtubule-targeting agents with robust anticancer potential, providing a strong basis for further mechanistic studies and structural optimization within the framework of medicinal and bioorganic chemistry.
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PubMed DOI OpenAlex Semantic 마지막 보강 2026-04-29
OpenAlex 토픽 · Microtubule and mitosis dynamics Synthesis and biological activity Cancer Treatment and Pharmacology

Kuzu B, Cakir M, Acikgoz E

📝 환자 설명용 한 줄

Findings identify Imp-18 and Imp-20 as promising microtubule-targeting agents with robust anticancer potential, providing a strong basis for further mechanistic studies and structural optimization wit

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APA Burak Kuzu, Mustafa Çakır, Eda Açıkgöz (2026). Strategic engineering of imidazopyridine-benzoxazole hybrids targeting microtubule dynamics: comprehensive inhibition of the metastatic cascade.. Bioorganic chemistry, 172, 109615. https://doi.org/10.1016/j.bioorg.2026.109615
MLA Burak Kuzu, et al.. "Strategic engineering of imidazopyridine-benzoxazole hybrids targeting microtubule dynamics: comprehensive inhibition of the metastatic cascade.." Bioorganic chemistry, vol. 172, 2026, pp. 109615.
PMID 41653679 ↗

Abstract

A series of twenty novel imidazopyridine-benzoxazole hybrid (Imp1-20) derivatives was designed and synthesized, and their antiproliferative activities were evaluated against MDA-MB-231 breast and DLD-1 colorectal cancer cell lines. Among them, Imp-18 and Imp-20 emerged as the most potent candidates, with low micromolar to nanomolar IC values and significant reductions in cancer cell adhesion and colony formation. Flow cytometry analyses demonstrated that both compounds induced apoptosis and promoted cell-cycle arrest, reflected by Sub-G1 accumulation and perturbations in G1/G0 and G2/M phases. Immunofluorescence imaging of β-tubulin confirmed that Imp-18 and Imp-20 compromise microtubule integrity, with Imp-18 displaying stronger tubulin-disrupting activity than nocodazole. The resulting microtubule destabilization was consistent with mitotic arrest and activation of apoptotic signaling pathways. Additionally, both compounds markedly inhibited cancer cell migration, indicating an ability to impair metastatic behavior. Overall, these findings identify Imp-18 and Imp-20 as promising microtubule-targeting agents with robust anticancer potential, providing a strong basis for further mechanistic studies and structural optimization within the framework of medicinal and bioorganic chemistry.

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