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Pyrrolo[2',3':3,4]cyclohepta[1,2-d][1,2]oxazoles, a New Class of Antimitotic Agents Active against Multiple Malignant Cell Types
- Publication Year :
- 2020
- Publisher :
- American Chemical Society, 2020.
-
Abstract
- A new class of pyrrolo[2',3':3,4]cyclohepta[1,2-d][1,2]oxazoles was synthesized for the treatment of hyperproliferative pathologies, including neoplasms. The new compounds were screened in the 60 human cancer cell lines of the NCI drug screen and showed potent activity with GI50 values reaching the nanomolar level, with mean graph midpoints of 0.08-0.41 μM. All compounds were further tested on six lymphoma cell lines, and eight showed potent growth inhibitory effects with IC50 values lower than 500 nM. Mechanism of action studies showed the ability of the new [1,2]oxazoles to arrest cells in the G2/M phase in a concentration dependent manner and to induce apoptosis through the mitochondrial pathway. The most active compounds inhibited tubulin polymerization, with IC50 values of 1.9-8.2 μM, and appeared to bind to the colchicine site. The G2/M arrest was accompanied by apoptosis, mitochondrial depolarization, generation of reactive oxygen species, and PARP cleavage.
- Subjects :
- Cells
Mitosis
Antineoplastic Agents
Apoptosis
Antimitotic Agents
Drug Screening Assays
[1,2]oxazoles, antimitotic agents, lymphoma, tubulin polymerization inhibitors
Dose-Response Relationship
Structure-Activity Relationship
chemistry.chemical_compound
Models
Drug Discovery
medicine
Humans
Structure–activity relationship
Colchicine
Oxazoles
Cell Proliferation
Cells, Cultured
Dose-Response Relationship, Drug
Drug Screening Assays, Antitumor
G2 Phase Cell Cycle Checkpoints
HeLa Cells
Models, Molecular
Molecular Structure
chemistry.chemical_classification
Reactive oxygen species
Cultured
Chemistry
Molecular
Depolarization
Antitumor
Molecular biology
Mechanism of action
Cell culture
Molecular Medicine
Antimitotic Agent
Drug
medicine.symptom
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....05cbb3cdd2d20e999385936282a68ee0