Leukemia therapy by flavonoids: Future and involved mechanisms

被引:33
作者
Saraei, Raedeh [1 ,2 ,3 ]
Marofi, Faroogh [1 ,2 ]
Naimi, Adel [2 ]
Talebi, Mehdi [1 ,3 ]
Ghaebi, Mahnaz [4 ]
Javan, Naser [5 ]
Salimi, Omid [6 ]
Hassanzadeh, Ali [2 ,3 ]
机构
[1] Tabriz Univ Med Sci, Hematol & Oncol Res Ctr, Tabriz, Iran
[2] Tabriz Univ Med Sci, Div Hematol, Dept Immunol, Fac Med, Golgasht St, Tabriz 516615731, Iran
[3] Tabriz Univ Med Sci, Immunol Res Ctr, Tabriz, Iran
[4] Tabriz Univ Med Sci, Sch Med, Dept Immunol, Tabriz, Iran
[5] Tabriz Univ Med Sci, Dept Clin Biochem & Labs Med, Tabriz, Iran
[6] Tabriz Univ Med Sci, Neurosci Res Ctr, Tabriz, Iran
关键词
Apoptosis; CDKs and Caspase 3; 8; and; 9; Flavonoids; leukemia; NF-kB; p21/53; STAT3; VEGF/HSP27; ACUTE LYMPHOBLASTIC-LEUKEMIA; NF-KAPPA-B; EPITHELIAL-MESENCHYMAL TRANSITION; CELL-CYCLE ARREST; INDUCED APOPTOSIS; SIGNALING PATHWAY; CERVICAL-CANCER; IN-VITRO; MATRIX METALLOPROTEINASES; DEPENDENT APOPTOSIS;
D O I
10.1002/jcp.27628
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Flavonoids are a varied family of phytonutrients (plant chemicals) usually are detected in fruits and vegetables. In this big family, there exist more than 10,000 members that is separated into six chief subtypes: isoflavonols, flavonoenes, flavones, flavonols, anthocyanins, and chalcones. The natural compounds, such as fruits, have visible positive effects in regulating of survival involved signaling pathways that performance as the regulator of cell survival, growth, and proliferation. Researchers have established that commonly consumption up flavonoids decreases incidence and development risk of certain cancers, especially leukemia. Flavonoids have been able to induce apoptosis and stimulate cell cycle arrest in cancer cells via different pathways. Similarly, they have antiangiogenesis and antimetastasis capability, which were shown in wide ranges of cancer cells, particularly, leukemia. It seems that flavonoid because of their widespread approval, evident safety and low rate of side effects, have hopeful anticarcinogenic potential for leukemia therapy. Based on the last decade reports, the most important acting mechanisms of these natural compounds in leukemia cells are stimulating of apoptosis pathways by upregulation of caspase 3, 8, 9 and poly ADP-ribose polymerase (PARP) and proapoptotic proteins, particularly Bax activation. As well, they can induce cell cycle arrest in target cells not only via increasing of activated levels of p21 and p53 but also by inhibition of cyclins and cyclin-dependent kinases. Furthermore, attenuation of neclear factor-kappa B and signal transducer and activator of transcription 3 activation, suppression of signaling pathway and downregulation of intracellular antiapoptotic proteins are other significant antileukemic function mechanism of flavonoids. Overall, it appears that flavonoids are promising and effective compounds in the field of leukemia therapy. In this review, we tried to accumulate and revise most promising flavonoids and finally declared their major working mechanisms in leukemia cells.
引用
收藏
页码:8203 / 8220
页数:18
相关论文
共 201 条
[131]   Morin, a Flavonoid from Moraceae, Induces Apoptosis by Induction of BAD Protein in Human Leukemic Cells [J].
Park, Cheol ;
Lee, Won Sup ;
Go, Se-Il ;
Nagappan, Arulkumar ;
Han, Min Ho ;
Hong, Su Hyun ;
Kim, Gon Sup ;
Kim, Gi Young ;
Kwon, Taeg Kyu ;
Ryu, Chung Ho ;
Shin, Sung Chul ;
Choi, Yung Hyun .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2015, 16 (01) :645-659
[132]   Apoptosis induction of human leukemia U937 cells by 7,8-dihydroxyflavone hydrate through modulation of the Bcl-2 family of proteins and the MAPKs signaling pathway [J].
Park, Hye Young ;
Kim, Gi-Young ;
Kwon, Taeg Kyu ;
Hwang, Hye Jin ;
Kim, Nam Deuk ;
Yoo, Young Hyun ;
Choi, Yung Hyun .
MUTATION RESEARCH-GENETIC TOXICOLOGY AND ENVIRONMENTAL MUTAGENESIS, 2013, 751 (02) :101-108
[133]   Distinct Combinatorial Effects of the Plant Polyphenols Curcumin, Carnosic Acid, and Silibinin on Proliferation and Apoptosis in Acute Myeloid Leukemia Cells [J].
Pesakhov, Stella ;
Khanin, Marina ;
Studzinski, George P. ;
Danilenko, Michael .
NUTRITION AND CANCER-AN INTERNATIONAL JOURNAL, 2010, 62 (06) :811-824
[134]  
Philchenkov A A, 2015, Ukr Biochem J, V87, P122
[135]   Src Cooperates with Oncogenic Ras in Tumourigenesis via the JNK and PI3K Pathways in Drosophila epithelial Tissue [J].
Poon, Carole L. C. ;
Brumby, Anthony M. ;
Richardson, Helena E. .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2018, 19 (06)
[136]   Cyclin D1, cancer progression, and opportunities in cancer treatment [J].
Qie, Shuo ;
Diehl, J. Alan .
JOURNAL OF MOLECULAR MEDICINE-JMM, 2016, 94 (12) :1313-1326
[137]   Exploring the Mechanism of Flavonoids Through Systematic Bioinformatics Analysis [J].
Qiu, Tanyi ;
Wu, Dingfeng ;
Yang, LinLin ;
Ye, Hao ;
Wang, Qiming ;
Cao, Zhiwei ;
Tang, Kailin .
FRONTIERS IN PHARMACOLOGY, 2018, 9
[138]   BCL2: A promising cancer therapeutic target [J].
Radha, Gudapureddy ;
Raghavan, Sathees C. .
BIOCHIMICA ET BIOPHYSICA ACTA-REVIEWS ON CANCER, 2017, 1868 (01) :309-314
[139]   Superoxide radical- and peroxynitrite-scavenging activity of anthocyanins; structure-activity relationship and their synergism [J].
Rahman, M. Mamunur ;
Ichiyanagi, Takashi ;
Komiyama, Tadazumi ;
Hatano, Yoshihiko ;
Konishi, Tetsuya .
FREE RADICAL RESEARCH, 2006, 40 (09) :993-1002
[140]   Differential cytotoxic activity of Quercetin on colonic cancer cells depends on ROS generation through COX-2 expression [J].
Raja, Subramaniya Bharathi ;
Rajendiran, Vijayabharathi ;
Kasinathan, Nirmal Kumar ;
Amrithalakshmi, P. ;
Venkatabalasubramanian, Sivaramakrishnan ;
Murali, Malliga Raman ;
Devaraj, Halagowder ;
Devaraj, Sivasithamparam Niranjali .
FOOD AND CHEMICAL TOXICOLOGY, 2017, 106 :92-106