Abstract
Background: Acute myeloid leukemia (AML) represents the largest number of annual deaths from hematologic malignancy. In the United States, it was estimated that 21.380 individuals would be diagnosed with AML and 49.5% of patients would die in 2017. Therefore, the search for novel compounds capable of increasing the overall survival rate to the treatment of AML cells is urgent.
Objectives: To investigate the cytotoxicity effect of the natural compound pomolic acid (PA) and to explore the mechanism of action of PA in AML cell lines with different phenotypes.
Methods: Three different AML cell lines, HL60, U937 and Kasumi-1 cells with different mechanisms of resistance were used to analyze the effect of PA on the cell cycle progression, on DNA intercalation and on human DNA topoisomerases (hTopo I and IIα) in vitro studies. Theoretical experiments of the inhibition of hTopo I and IIα were done to explore the binding modes of PA.
Results: PA reduced cell viability, induced cell death, increased sub-G0/G1 accumulation and activated caspases pathway in all cell lines, altered the cell cycle distribution and inhibited the catalytic activity of both human DNA topoisomerases.
Conclusion: Finally, this study showed that PA has powerful antitumor activity against AML cells, suggesting that this natural compound might be a potent antineoplastic agent to improve the treatment scheme of this neoplasm.
Keywords: Acute myeloid leukemia, natural compound, pomolic acid, human DNA topoisomerases, Topo I, Topo IIα, anticancer agent, drug discovery.
Anti-Cancer Agents in Medicinal Chemistry
Title:Antitumor Effect of Pomolic Acid in Acute Myeloid Leukemia Cells Involves Cell Death, Decreased Cell Growth and Topoisomerases Inhibition
Volume: 18 Issue: 10
Author(s): Michelle X.G. Pereira, Amanda S.O. Hammes, Flavia C. Vasconcelos, Aline R. Pozzo, Thaís H. Pereira, Ernesto R. Caffarena, Cerli R. Gattass and Raquel C. Maia*
Affiliation:
- Laboratorio de Hemato-Oncologia Celular e Molecular, Programa de Pesquisa em Hemato-Oncologia Molecular, Instituto Nacional de Cancer (INCA), Rio de Janeiro, (RJ),Brazil
Keywords: Acute myeloid leukemia, natural compound, pomolic acid, human DNA topoisomerases, Topo I, Topo IIα, anticancer agent, drug discovery.
Abstract: Background: Acute myeloid leukemia (AML) represents the largest number of annual deaths from hematologic malignancy. In the United States, it was estimated that 21.380 individuals would be diagnosed with AML and 49.5% of patients would die in 2017. Therefore, the search for novel compounds capable of increasing the overall survival rate to the treatment of AML cells is urgent.
Objectives: To investigate the cytotoxicity effect of the natural compound pomolic acid (PA) and to explore the mechanism of action of PA in AML cell lines with different phenotypes.
Methods: Three different AML cell lines, HL60, U937 and Kasumi-1 cells with different mechanisms of resistance were used to analyze the effect of PA on the cell cycle progression, on DNA intercalation and on human DNA topoisomerases (hTopo I and IIα) in vitro studies. Theoretical experiments of the inhibition of hTopo I and IIα were done to explore the binding modes of PA.
Results: PA reduced cell viability, induced cell death, increased sub-G0/G1 accumulation and activated caspases pathway in all cell lines, altered the cell cycle distribution and inhibited the catalytic activity of both human DNA topoisomerases.
Conclusion: Finally, this study showed that PA has powerful antitumor activity against AML cells, suggesting that this natural compound might be a potent antineoplastic agent to improve the treatment scheme of this neoplasm.
Export Options
About this article
Cite this article as:
Pereira X.G. Michelle , Hammes S.O. Amanda , Vasconcelos C. Flavia , Pozzo R. Aline , Pereira H. Thaís, Caffarena R. Ernesto , Gattass R. Cerli and Maia C. Raquel *, Antitumor Effect of Pomolic Acid in Acute Myeloid Leukemia Cells Involves Cell Death, Decreased Cell Growth and Topoisomerases Inhibition, Anti-Cancer Agents in Medicinal Chemistry 2018; 18 (10) . https://dx.doi.org/10.2174/1871520618666180412120128
DOI https://dx.doi.org/10.2174/1871520618666180412120128 |
Print ISSN 1871-5206 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5992 |
Call for Papers in Thematic Issues
Advances in Nanomedicines and Targeted Therapies for Colorectal Cancer
Colorectal cancer remains a significant global health challenge, with high incidence and mortality rates despite advancements in treatment strategies. Conventional therapies often face limitations such as systemic toxicity, drug resistance, and suboptimal targeting. The advent of nanomedicines and innovative drug delivery systems offers new hope for overcoming these challenges and ...read more
Discovery of Lead compounds targeting transcriptional regulation
Transcriptional regulation plays key physiological functions in body growth and development. Transcriptional dysregulation is one of the important biomarkers of tumor genesis and progression, which is involved in regulating tumor cell processes such as cell proliferation, differentiation, and apoptosis. Additionally, it plays a pivotal role in angiogenesis and promotes tumor ...read more
Induction of cell death in cancer cells by modulating telomerase activity using small molecule drugs
Telomeres are distinctive but short stretches present at the corners of chromosomes that aid in stabilizing chromosomal makeup. The resynthesis of telomeres is supported by the activity of reverse transcriptase ribonucleoprotein complex telomerase. There is no telomerase activity in human somatic cells, but the stem cells and germ cells undergo ...read more
Innovative targets in medicinal chemistry
Medicinal chemistry continuously evolves in response to emerging healthcare needs and advancements in scientific understanding. This special issue explores the current landscape of innovative targets in medicinal chemistry, highlighting the quest for novel therapeutic avenues. From traditional drug targets such as enzymes and receptors to emerging targets like protein-protein interactions ...read more
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
Related Articles
-
Interactions of Cisplatin with non-DNA Targets and their Influence on Anticancer Activity and Drug Toxicity: The Complex World of the Platinum Complex
Current Cancer Drug Targets Peptide Receptor Radionuclide Therapy with Somatostatin Analogues in Neuroendocrine Tumors
Anti-Cancer Agents in Medicinal Chemistry MRP1-dependent Collateral Sensitivity of Multidrug-resistant Cancer Cells: Identifying Selective Modulators Inducing Cellular Glutathione Depletion
Current Medicinal Chemistry Investigation of the Pharmacokinetics of the ABCG2 Transporter Inhibitor Ko134 in Mice by a Newly Developed and Validated HPLC Method
Current Pharmaceutical Analysis Notch Signaling in Leukemias and Lymphomas
Current Molecular Medicine HDAC as a Therapeutic Target for Treatment of Endometrial Cancers
Current Pharmaceutical Design Biologic Therapy in Immune Mediated Inflammatory Disease: Basic Science and Clinical Concepts
Current Drug Safety Targeting Cancer Cells with Photoactive Silica Nanoparticles
Current Pharmaceutical Design WT1 Peptide Vaccine as a Paradigm for “Cancer Antigen-Derived Peptide”-Based Immunotherapy for Malignancies: Successful Induction of Anti-Cancer Effect by Vaccination with a Single Kind of WT1 Peptide
Anti-Cancer Agents in Medicinal Chemistry Biological and Clinical Implications of Clonal Heterogeneity and Clonal Evolution in Multiple Myeloma
Current Cancer Therapy Reviews Glucose-6-Phosphate Dehydrogenase Deficiency: Disadvantages and Possible Benefits
Cardiovascular & Hematological Disorders-Drug Targets Autologus Stem Cell Transplatation as a Care Option in Elderly Patients. A Review
Anti-Cancer Agents in Medicinal Chemistry Advances in Nanomaterials for Diagnosis and Therapy of Leukemia
Recent Patents on Nanomedicine Invasive Aspergillosis: Focus on New Approaches and New Therapeutic Agents
Current Medicinal Chemistry - Anti-Infective Agents Gene Silencing in the Development of Personalized Cancer Treatment: The Targets, the Agents and the Delivery Systems
Current Gene Therapy Protein Kinase C Modulates Aurora-kinase Inhibition Induced by CCT129202 in HMC-1560,816 Cell Line
Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry Caenorhabditis elegans: A Model for Studying Human Pathogen Biology
Recent Patents on Biotechnology S1P Regulation of Macrophage Functions in the Context of Cancer
Anti-Cancer Agents in Medicinal Chemistry Strategies for Increasing the Solubility and Bioavailability of Anticancer Compounds: β-Lapachone and Other Naphthoquinones
Current Pharmaceutical Design Editorial (Thematic Issue: Induced Pluripotent Stem Cells (iPSCs) in the Gastroenterology and Hepatology: from Basic Research to Clinical Applications)
Current Stem Cell Research & Therapy