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Updated: Oct 14, 2025

Real-Time Monitoring of Aurora kinase A Activation using Conformational FRET Biosensors in Live Cells
Published on: July 30, 2020
Indolin-2-one derivatives as selective Aurora B kinase inhibitors targeting breast cancer
Eman M E Dokla1, Amal Kamal Abdel-Aziz2, Sandra N Milik3
1Pharmaceutical Chemistry Department, Faculty of Pharmacy, Ain Shams University, Abbassia, Cairo 11566, Egypt.
Abstract:
Aurora B is a pivotal cell cycle regulator where errors in its function results in polyploidy, genetic instability, and tumorigenesis. It is overexpressed in many cancers, consequently, targeting Aurora B with small molecule inhibitors constitutes a promising approach for anticancer therapy. Guided by structure-based design and molecular hybridization approach we developed a series of fifteen indolin-2-one derivatives based on a previously reported indolin-2-one-based multikinase inhibitor (1). Seven derivatives, 5g, 6a, 6c-e, 7, and 8a showed preferential antiproliferative activity in NCI-60 cell line screening and out of these, carbamate 6e and cyclopropylurea 8a derivatives showed optimum activity against Aurora B (IC50 = 16.2 and 10.5 nM respectively) and MDA-MB-468 cells (IC50 = 32.6 ± 9.9 and 29.1 ± 7.3 nM respectively). Furthermore, 6e and 8a impaired the clonogenic potential of MDA-MB-468 cells. Mechanistic investigations indicated that 6e and 8a induced G2/M cell cycle arrest, apoptosis, and necrosis of MDA-MB-468 cells and western blot analysis of 8a effect on MDA-MB-468 cells revealed 8a's ability to reduce Aurora B and its downstream target, Histone H3 phosphorylation. 6e and 8a displayed better safety profiles than multikinase inhibitors such as sunitinib, showing no cytotoxic effects on normal rat cardiomyoblasts and murine hepatocytes. Finally, 8a demonstrated a more selective profile than 1 when screened against ten related kinases. Based on these findings, 8a represents a promising candidate for further development to target breast cancer via Aurora B selective inhibition.
Insights
New indolin-2-one derivatives were developed to target Aurora B kinase, a key regulator in cell division. Compound 8a showed potent and selective inhibition of Aurora B, demonstrating significant anticancer activity against breast cancer cells with a good safety profile.
Area of Science:
- Biochemistry
- Molecular Biology
- Medicinal Chemistry
Background:
- Aurora B kinase is crucial for cell cycle regulation, and its dysregulation is linked to cancer development.
- Targeting Aurora B with small molecule inhibitors is a promising anticancer therapeutic strategy.
Purpose of the Study:
- To design and synthesize novel indolin-2-one derivatives as potential Aurora B inhibitors.
- To evaluate the antiproliferative activity and selectivity of these derivatives against cancer cell lines.
Main Methods:
- Structure-based design and molecular hybridization were employed to create new compounds.
- NCI-60 cell line screening was used to assess antiproliferative activity.
- In vitro assays measured Aurora B inhibition, cell cycle arrest, apoptosis, and kinase selectivity.
Main Results:
- Seven derivatives exhibited preferential antiproliferative activity.
- Carbamate 6e and cyclopropylurea 8a showed potent Aurora B inhibition (IC50 = 16.2 and 10.5 nM) and antiproliferative effects on MDA-MB-468 cells.
- Compound 8a demonstrated selective Aurora B inhibition, induced G2/M cell cycle arrest, apoptosis, and reduced phosphorylation of Aurora B and Histone H3.
Conclusions:
- Indolin-2-one derivatives 6e and 8a are effective inhibitors of Aurora B kinase.
- Compound 8a exhibits potent and selective Aurora B inhibition, anticancer activity, and a favorable safety profile, making it a promising candidate for breast cancer therapy.
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