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New Oxazolo[5,4-d]pyrimidines as Potential Anticancer Agents: Their Design, Synthesis, and In Vitro Biological
Aleksandra Sochacka-Ćwikła1, Marcin Mączyński1, Żaneta Czyżnikowska2
1Department of Organic Chemistry and Drug Technology, Faculty of Pharmacy, Wroclaw Medical University, 211A Borowska Street, 50-556 Wrocław, Poland.
Abstract:
Cancer is a large group of diseases in which the rapid proliferation of abnormal cells generally leads to metastasis to surrounding tissues or more distant ones through the lymphatic and blood vessels, making it the second leading cause of death worldwide. The main challenge in designing a modern anticancer therapy is to develop selective compounds that exploit specific molecular targets. In this work, novel oxazolo[5,4-d]pyrimidine derivatives were designed, synthesized, and evaluated in vitro for their cytotoxic activity against a panel of four human cancer cell lines (lung carcinoma: A549, breast adenocarcinoma: MCF7, metastatic colon adenocarcinoma: LoVo, primary colon adenocarcinoma: HT29), along with their P-glycoprotein-inhibitory ability and pro-apoptotic activity. These oxazolo[5,4-d]pyrimidine derivatives, which are structurally similar to nucleic purine bases in general, are characterized by the presence of a pharmacologically favorable isoxazole substituent at position 2 and aliphatic amino chains at position 7 of the condensed heterocyclic system. In silico analysis of the obtained compounds identified their potent inhibitory activity towards human vascular endothelial growth factor receptor-2 (VEGFR-2). Molecular docking was performed to assess the binding mode of new derivatives to the VEGFR-2 active site. Then, their physicochemical, pharmacokinetic, and pharmacological properties (i.e., ADME-administration, distribution, metabolism, and excretion) were also predicted to assess their druglikeness. In particular, compound 3g (with a 3-(N,N-dimethylamino)propyl substituent) was found to be the most potent against the HT29 cell line, with a 50% cytotoxic concentration (CC50) of 58.4 µM, exceeding the activity of fluorouracil (CC50 = 381.2 μM) and equaling the activity of cisplatin (CC50 = 47.2 µM), while being less toxic to healthy human cells (such as normal human dermal fibroblasts (NHDFs)) than these reference drugs. The results suggest that compound 3g is a potentially promising candidate for the treatment of primary colorectal cancer.
Insights
Novel oxazolo[5,4-d]pyrimidine derivatives show potent anticancer activity. Compound 3g is a promising candidate for colorectal cancer treatment, demonstrating high efficacy and lower toxicity than standard drugs.
Area of Science:
- Medicinal Chemistry
- Organic Synthesis
- Pharmacology
Background:
- Cancer is a leading cause of death worldwide, necessitating novel therapeutic strategies.
- Developing selective anticancer agents targeting specific molecular pathways remains a critical challenge.
- Oxazolo[5,4-d]pyrimidine derivatives offer a promising scaffold due to their structural similarity to nucleic purines.
Purpose of the Study:
- To design, synthesize, and evaluate novel oxazolo[5,4-d]pyrimidine derivatives for anticancer activity.
- To investigate the P-glycoprotein inhibitory and pro-apoptotic effects of these compounds.
- To identify potent inhibitors of vascular endothelial growth factor receptor-2 (VEGFR-2) for cancer therapy.
Main Methods:
- In vitro cytotoxic evaluation against human cancer cell lines (A549, MCF7, LoVo, HT29).
- In silico analysis including molecular docking to VEGFR-2 and prediction of ADME properties.
- Assessment of P-glycoprotein inhibition and pro-apoptotic activity.
Main Results:
- Novel oxazolo[5,4-d]pyrimidine derivatives were synthesized and characterized.
- Compound 3g exhibited significant cytotoxic activity against HT29 cells (CC50 = 58.4 µM), outperforming fluorouracil and matching cisplatin.
- Compound 3g demonstrated lower toxicity to normal human dermal fibroblasts (NHDFs) compared to reference drugs.
Conclusions:
- Compound 3g is a highly potent and selective anticancer agent.
- The study suggests compound 3g as a promising candidate for treating primary colorectal cancer.
- Oxazolo[5,4-d]pyrimidine derivatives targeting VEGFR-2 represent a viable strategy for novel cancer therapies.
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