Literature DB >> 28105189

Chrysin induces cell apoptosis in human uveal melanoma cells via intrinsic apoptosis.

Chunyan Xue1, Yueqin Chen2, Dan-Ning Hu3, Codrin Iacob4, Chengwei Lu5, Zhenping Huang1.   

Abstract

Uveal melanoma is the most common intraocular malignant tumor in adults. Chrysin is a flavonoid present in honey, propolis, various plants and herbs. In the present study, the cytotoxic effects of chrysin were investigated on human uveal melanoma cell lines (M17 and SP6.5) and associated signaling pathways, and a comparison to the effects on normal ocular cells [scleral fibroblasts and retinal pigment epithelial (RPE) cells] was performed. The effects of chrysin on cell viability were assessed by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay. Cell apoptosis was determined by using terminal deoxynucleotidyl transferase mediated dUTP nick end-labeling assay. Mitochondrial permeability was determined by JC-1 fluorescein analysis. Cytosol cytochrome c levels, and the activities of caspase-3, -8 and -9 were measured by enzyme-linked immunosorbent assay or colorimetric assay. Chrysin reduced the viability of cultured human melanoma cells in a dose-dependent manner (0, 10, 30 and 100 µM) with IC50 at 28.3 and 35.8 µM in SP6.5 and M17 cell lines, respectively. Chrysin at 30-100 µM levels selectively reduced the viability of melanoma cells without affecting the viability of scleral fibroblasts and RPE cells. Chrysin increased mitochondrial permeability, the levels of cytosol cytochrome c, and caspase-9 and -3 activities, but not capase-8 activity in uveal melanoma cells. The results of the present study indicate that chrysin induces apoptosis of human uveal melanoma cells via the mitochondrial signaling pathway and suggest that chrysin may be a promising agent in the treatment of uveal melanoma.

Entities:  

Keywords:  apoptosis; caspase-3; caspase-9; chrysin; cytochrome c; uveal melanoma

Year:  2016        PMID: 28105189      PMCID: PMC5228444          DOI: 10.3892/ol.2016.5251

Source DB:  PubMed          Journal:  Oncol Lett        ISSN: 1792-1074            Impact factor:   2.967


  37 in total

1.  Chrysin-induced apoptosis is mediated through caspase activation and Akt inactivation in U937 leukemia cells.

Authors:  Kyung Jin Woo; Yong-Jin Jeong; Jong-Wook Park; Taeg Kyu Kwon
Journal:  Biochem Biophys Res Commun       Date:  2004-12-24       Impact factor: 3.575

2.  Chrysin activates Notch1 signaling and suppresses tumor growth of anaplastic thyroid carcinoma in vitro and in vivo.

Authors:  Xiao-Min Yu; TramAnh Phan; Priyesh N Patel; Renata Jaskula-Sztul; Herbert Chen
Journal:  Cancer       Date:  2012-09-18       Impact factor: 6.860

3.  The MEK/ERK pathway is the primary conduit for Borrelia burgdorferi-induced inflammation and P53-mediated apoptosis in oligodendrocytes.

Authors:  Geetha Parthasarathy; Mario T Philipp
Journal:  Apoptosis       Date:  2014-01       Impact factor: 4.677

4.  Effect of selected flavones on cancer and endothelial cells.

Authors:  Martina Pilátová; Viktória Stupáková; Lenka Varinská; Marek Sarisský; Ladislav Mirossay; Andrej Mirossay; Peter Gál; Vladimír Kraus; Katarína Dianisková; Ján Mojzis
Journal:  Gen Physiol Biophys       Date:  2010-06       Impact factor: 1.512

5.  Chrysin-induced apoptosis is mediated through p38 and Bax activation in B16-F1 and A375 melanoma cells.

Authors:  Elena Pichichero; Rosella Cicconi; Maurizio Mattei; Antonella Canini
Journal:  Int J Oncol       Date:  2010-12-17       Impact factor: 5.650

6.  Population-based incidence of uveal melanoma in various races and ethnic groups.

Authors:  Dan-Ning Hu; Guo-Pei Yu; Steven A McCormick; Susan Schneider; Paul T Finger
Journal:  Am J Ophthalmol       Date:  2005-10       Impact factor: 5.258

7.  AMP-activated protein kinase (AMPK) activation is involved in chrysin-induced growth inhibition and apoptosis in cultured A549 lung cancer cells.

Authors:  Jun-jie Shao; Ai-ping Zhang; Wei Qin; Lin Zheng; Yi-fan Zhu; Xin Chen
Journal:  Biochem Biophys Res Commun       Date:  2012-05-31       Impact factor: 3.575

8.  Potential effects of chrysin on MDA-MB-231 cells.

Authors:  Teh Ban Hong; Anizah Rahumatullah; Thaneswary Yogarajah; Maimunah Ahmad; Khoo Boon Yin
Journal:  Int J Mol Sci       Date:  2010-03-11       Impact factor: 5.923

9.  Very long-term prognosis of patients with malignant uveal melanoma.

Authors:  Emma Kujala; Teemu Mäkitie; Tero Kivelä
Journal:  Invest Ophthalmol Vis Sci       Date:  2003-11       Impact factor: 4.799

10.  A new method for the cytofluorimetric analysis of mitochondrial membrane potential using the J-aggregate forming lipophilic cation 5,5',6,6'-tetrachloro-1,1',3,3'-tetraethylbenzimidazolcarbocyanine iodide (JC-1).

Authors:  A Cossarizza; M Baccarani-Contri; G Kalashnikova; C Franceschi
Journal:  Biochem Biophys Res Commun       Date:  1993-11-30       Impact factor: 3.575

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  4 in total

1.  Co-Application of Statin and Flavonoids as an Effective Strategy to Reduce the Activity of Voltage-Gated Potassium Channels Kv1.3 and Induce Apoptosis in Human Leukemic T Cell Line Jurkat.

Authors:  Andrzej Teisseyre; Mateusz Chmielarz; Anna Uryga; Kamila Środa-Pomianek; Anna Palko-Łabuz
Journal:  Molecules       Date:  2022-05-18       Impact factor: 4.927

Review 2.  Flavonoids as Anticancer Agents.

Authors:  Dalia M Kopustinskiene; Valdas Jakstas; Arunas Savickas; Jurga Bernatoniene
Journal:  Nutrients       Date:  2020-02-12       Impact factor: 5.717

Review 3.  Emerging cellular and molecular mechanisms underlying anticancer indications of chrysin.

Authors:  Marjan Talebi; Mohsen Talebi; Tahereh Farkhondeh; Jesus Simal-Gandara; Dalia M Kopustinskiene; Jurga Bernatoniene; Saeed Samarghandian
Journal:  Cancer Cell Int       Date:  2021-04-15       Impact factor: 5.722

Review 4.  Chrysin: Perspectives on Contemporary Status and Future Possibilities as Pro-Health Agent.

Authors:  Monika Stompor-Gorący; Agata Bajek-Bil; Maciej Machaczka
Journal:  Nutrients       Date:  2021-06-14       Impact factor: 5.717

  4 in total

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