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Phytochemicals and bioactive compounds effective against acute myeloid leukemia: A systematic review

This systematic review identified various bioactive compounds which have the potential to serve as novel drugs or leads against acute myeloid leukemia. Acute myeloid leukemia (AML) is a heterogeneous hematopoietic malignancy that arises from the dysregulation of cell differentiation, proliferation,...

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Autores principales: Egbuna, Chukwuebuka, Patrick‐Iwuanyanwu, Kingsley C., Onyeike, Eugene N., Khan, Johra, Palai, Santwana, Patel, Sandip B., Parmar, Vijaykumar K., Kushwaha, Garima, Singh, Omkar, Jeevanandam, Jaison, Kumarasamy, Suresh, Uche, Chukwuemelie Zedech, Narayanan, Mathiyazhagan, Rudrapal, Mithun, Odoh, Uchenna, Chikeokwu, Ikenna, Găman, Mihnea‐Alexandru, Saravanan, Kaliyaperumal, Ifemeje, Jonathan C., Ezzat, Shahira M., Olisah, Michael C., Chikwendu, Chukwudi Jude, Adedokun, Kamoru A., Imodoye, Sikiru O., Bello, Ibrahim O., Twinomuhwezi, Hannington, Awuchi, Chinaza Godswill
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10345688/
https://www.ncbi.nlm.nih.gov/pubmed/37457145
http://dx.doi.org/10.1002/fsn3.3420
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author Egbuna, Chukwuebuka
Patrick‐Iwuanyanwu, Kingsley C.
Onyeike, Eugene N.
Khan, Johra
Palai, Santwana
Patel, Sandip B.
Parmar, Vijaykumar K.
Kushwaha, Garima
Singh, Omkar
Jeevanandam, Jaison
Kumarasamy, Suresh
Uche, Chukwuemelie Zedech
Narayanan, Mathiyazhagan
Rudrapal, Mithun
Odoh, Uchenna
Chikeokwu, Ikenna
Găman, Mihnea‐Alexandru
Saravanan, Kaliyaperumal
Ifemeje, Jonathan C.
Ezzat, Shahira M.
Olisah, Michael C.
Chikwendu, Chukwudi Jude
Adedokun, Kamoru A.
Imodoye, Sikiru O.
Bello, Ibrahim O.
Twinomuhwezi, Hannington
Awuchi, Chinaza Godswill
author_facet Egbuna, Chukwuebuka
Patrick‐Iwuanyanwu, Kingsley C.
Onyeike, Eugene N.
Khan, Johra
Palai, Santwana
Patel, Sandip B.
Parmar, Vijaykumar K.
Kushwaha, Garima
Singh, Omkar
Jeevanandam, Jaison
Kumarasamy, Suresh
Uche, Chukwuemelie Zedech
Narayanan, Mathiyazhagan
Rudrapal, Mithun
Odoh, Uchenna
Chikeokwu, Ikenna
Găman, Mihnea‐Alexandru
Saravanan, Kaliyaperumal
Ifemeje, Jonathan C.
Ezzat, Shahira M.
Olisah, Michael C.
Chikwendu, Chukwudi Jude
Adedokun, Kamoru A.
Imodoye, Sikiru O.
Bello, Ibrahim O.
Twinomuhwezi, Hannington
Awuchi, Chinaza Godswill
author_sort Egbuna, Chukwuebuka
collection PubMed
description This systematic review identified various bioactive compounds which have the potential to serve as novel drugs or leads against acute myeloid leukemia. Acute myeloid leukemia (AML) is a heterogeneous hematopoietic malignancy that arises from the dysregulation of cell differentiation, proliferation, and cell death. The risk factors associated with the onset of AML include long‐term exposure to radiation and chemicals such as benzene, smoking, genetic disorders, blood disorders, advancement in age, and others. Although novel strategies to manage AML, including a refinement of the conventional chemotherapy regimens, hypomethylating agents, and molecular targeted drugs, have been developed in recent years, resistance and relapse remain the main clinical problems. In this study, three databases, PubMed/MEDLINE, ScienceDirect, and Google Scholar, were systematically searched to identify various bioactive compounds with antileukemic properties. A total of 518 articles were identified, out of which 59 were viewed as eligible for the current report. From the data extracted, over 60 bioactive compounds were identified and divided into five major groups: flavonoids, alkaloids, organosulfur compounds, terpenes, and terpenoids, and other known and emerging bioactive compounds. The mechanism of actions of the analyzed individual bioactive molecules differs remarkably and includes disrupting chromatin structure, upregulating the synthesis of certain DNA repair proteins, inducing cell cycle arrest and apoptosis, and inhibiting/regulating Hsp90 activities, DNA methyltransferase 1, and histone deacetylase 1.
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spelling pubmed-103456882023-07-15 Phytochemicals and bioactive compounds effective against acute myeloid leukemia: A systematic review Egbuna, Chukwuebuka Patrick‐Iwuanyanwu, Kingsley C. Onyeike, Eugene N. Khan, Johra Palai, Santwana Patel, Sandip B. Parmar, Vijaykumar K. Kushwaha, Garima Singh, Omkar Jeevanandam, Jaison Kumarasamy, Suresh Uche, Chukwuemelie Zedech Narayanan, Mathiyazhagan Rudrapal, Mithun Odoh, Uchenna Chikeokwu, Ikenna Găman, Mihnea‐Alexandru Saravanan, Kaliyaperumal Ifemeje, Jonathan C. Ezzat, Shahira M. Olisah, Michael C. Chikwendu, Chukwudi Jude Adedokun, Kamoru A. Imodoye, Sikiru O. Bello, Ibrahim O. Twinomuhwezi, Hannington Awuchi, Chinaza Godswill Food Sci Nutr Original Articles This systematic review identified various bioactive compounds which have the potential to serve as novel drugs or leads against acute myeloid leukemia. Acute myeloid leukemia (AML) is a heterogeneous hematopoietic malignancy that arises from the dysregulation of cell differentiation, proliferation, and cell death. The risk factors associated with the onset of AML include long‐term exposure to radiation and chemicals such as benzene, smoking, genetic disorders, blood disorders, advancement in age, and others. Although novel strategies to manage AML, including a refinement of the conventional chemotherapy regimens, hypomethylating agents, and molecular targeted drugs, have been developed in recent years, resistance and relapse remain the main clinical problems. In this study, three databases, PubMed/MEDLINE, ScienceDirect, and Google Scholar, were systematically searched to identify various bioactive compounds with antileukemic properties. A total of 518 articles were identified, out of which 59 were viewed as eligible for the current report. From the data extracted, over 60 bioactive compounds were identified and divided into five major groups: flavonoids, alkaloids, organosulfur compounds, terpenes, and terpenoids, and other known and emerging bioactive compounds. The mechanism of actions of the analyzed individual bioactive molecules differs remarkably and includes disrupting chromatin structure, upregulating the synthesis of certain DNA repair proteins, inducing cell cycle arrest and apoptosis, and inhibiting/regulating Hsp90 activities, DNA methyltransferase 1, and histone deacetylase 1. John Wiley and Sons Inc. 2023-05-15 /pmc/articles/PMC10345688/ /pubmed/37457145 http://dx.doi.org/10.1002/fsn3.3420 Text en © 2023 The Authors. Food Science & Nutrition published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Egbuna, Chukwuebuka
Patrick‐Iwuanyanwu, Kingsley C.
Onyeike, Eugene N.
Khan, Johra
Palai, Santwana
Patel, Sandip B.
Parmar, Vijaykumar K.
Kushwaha, Garima
Singh, Omkar
Jeevanandam, Jaison
Kumarasamy, Suresh
Uche, Chukwuemelie Zedech
Narayanan, Mathiyazhagan
Rudrapal, Mithun
Odoh, Uchenna
Chikeokwu, Ikenna
Găman, Mihnea‐Alexandru
Saravanan, Kaliyaperumal
Ifemeje, Jonathan C.
Ezzat, Shahira M.
Olisah, Michael C.
Chikwendu, Chukwudi Jude
Adedokun, Kamoru A.
Imodoye, Sikiru O.
Bello, Ibrahim O.
Twinomuhwezi, Hannington
Awuchi, Chinaza Godswill
Phytochemicals and bioactive compounds effective against acute myeloid leukemia: A systematic review
title Phytochemicals and bioactive compounds effective against acute myeloid leukemia: A systematic review
title_full Phytochemicals and bioactive compounds effective against acute myeloid leukemia: A systematic review
title_fullStr Phytochemicals and bioactive compounds effective against acute myeloid leukemia: A systematic review
title_full_unstemmed Phytochemicals and bioactive compounds effective against acute myeloid leukemia: A systematic review
title_short Phytochemicals and bioactive compounds effective against acute myeloid leukemia: A systematic review
title_sort phytochemicals and bioactive compounds effective against acute myeloid leukemia: a systematic review
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10345688/
https://www.ncbi.nlm.nih.gov/pubmed/37457145
http://dx.doi.org/10.1002/fsn3.3420
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