Literature DB >> 21266165

The melatonin action on stromal stem cells within pericryptal area in colon cancer model under constant light.

Vinicius Kannen1, Tassiana Marini, Dalila L Zanette, Fernando T Frajacomo, Gyl E B Silva, Wilson A Silva, Sérgio B Garcia.   

Abstract

Constant light (LL) is associated with high incidence of colon cancer. MLT supplementation was related to the significant control of preneoplastic patterns. We sought to analyze preneoplastic patterns in colon tissue from animals exposed to LL environment (14 days; 300 lx), MLT-supplementation (10mg/kg/day) and DMH-treatment (1,2 dimethylhydrazine; 125 mg/kg). Rodents were sacrificed and MLT serum levels were measured by radioimmunoassay. Our results indicated that LL induced ACF development (p < 0.001) with a great potential to increase the number of CD133(+) and CD68(+) cells (p < 0.05 and p < 0.001). LL also increased the proliferative process (PCNA-Li; p < 0.001) as well as decreased caspase-3 protein (p < 0.001), related to higher COX-2 protein expression (p < 0.001) within pericryptal colonic stroma (PCCS). However, MLT-supplementation controlled the development of dysplastic ACF (p < 0.001) diminishing preneoplastic patterns into PCCS as CD133 and CD68 (p < 0.05 and p < 0.001). These events were relative to decreased PCNA-Li index and higher expression of caspase-3 protein. Thus, MLT showed a great potential to control the preneoplastic patterns induced by LL.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21266165     DOI: 10.1016/j.bbrc.2011.01.074

Source DB:  PubMed          Journal:  Biochem Biophys Res Commun        ISSN: 0006-291X            Impact factor:   3.575


  11 in total

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4.  AA-NAT, MT1 and MT2 Correlates with Cancer Stem-Like Cell Markers in Colorectal Cancer: Study of the Influence of Stage and p53 Status of Tumors.

Authors:  Jorge Casado; Almudena Iñigo-Chaves; Sergio M Jiménez-Ruiz; Sandra Ríos-Arrabal; Ángel Carazo-Gallego; Cristina González-Puga; María Isabel Núñez; Ángeles Ruíz-Extremera; Javier Salmerón; Josefa León
Journal:  Int J Mol Sci       Date:  2017-06-11       Impact factor: 5.923

Review 5.  Melatonin as a potential anticarcinogen for non-small-cell lung cancer.

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Authors:  Hucong Wu; Jiaqi Liu; Yi Yin; Dong Zhang; Pengpeng Xia; Guoqiang Zhu
Journal:  Biomed Res Int       Date:  2019-09-17       Impact factor: 3.411

7.  Melatonin inhibits proliferation and viability and promotes apoptosis in colorectal cancer cells via upregulation of the microRNA-34a/449a cluster.

Authors:  Guangyu Ji; Wenjuan Zhou; Xian Li; Jingyi Du; Xinyue Li; Hongbo Hao
Journal:  Mol Med Rep       Date:  2021-01-05       Impact factor: 2.952

8.  Antiproliferative effects of fluoxetine on colon cancer cells and in a colonic carcinogen mouse model.

Authors:  Vinicius Kannen; Henning Hintzsche; Dalila L Zanette; Wilson A Silva; Sérgio B Garcia; Ana Maria Waaga-Gasser; Helga Stopper
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9.  Effect of Melatonin in Epithelial Mesenchymal Transition Markers and Invasive Properties of Breast Cancer Stem Cells of Canine and Human Cell Lines.

Authors:  Naiane do Nascimento Gonçalves; Jucimara Colombo; Juliana Ramos Lopes; Gabriela Bottaro Gelaleti; Marina Gobbe Moschetta; Nathália Martins Sonehara; Eva Hellmén; Caroline de Freitas Zanon; Sônia Maria Oliani; Debora Aparecida Pires de Campos Zuccari
Journal:  PLoS One       Date:  2016-03-02       Impact factor: 3.240

Review 10.  The role of melatonin in colorectal cancer treatment: a comprehensive review.

Authors:  Mindaugas Kvietkauskas; Viktorija Zitkute; Bettina Leber; Kestutis Strupas; Philipp Stiegler; Peter Schemmer
Journal:  Ther Adv Med Oncol       Date:  2020-07-17       Impact factor: 8.168

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