Literature DB >> 18451318

Arsenic trioxide, arsenic pentoxide, and arsenic iodide inhibit human keratinocyte proliferation through the induction of apoptosis.

Wai-Pui Tse1, Christopher H K Cheng, Chun-Tao Che, Zhi-Xiu Lin.   

Abstract

Arsenic compounds have been traditionally used to treat a variety of ailments, including skin diseases. Our previous study identified the extract of realgar to possess potent antiproliferative action on HaCaT cells. The present study aimed at evaluating whether several inorganic arsenics found in realgar also possess similar antiproliferative properties. The results showed that arsenic trioxide, arsenic pentoxide, and arsenic iodide had significant antiproliferative action on HaCaT cells, with IC(50) values at 2.4, 16, and 6.8 microM, respectively. However, these compounds only modestly inhibited the growth of Hs-68 cells, a normal human skin fibroblast cell line, with IC(50) values at 43.4, 223, and 89 microM, respectively, conferring a favorable toxicity profile. In mechanistic studies, all three compounds caused DNA fragmentation as demonstrated by gel electrophoresis and the terminal deoxynucleotidyl transferase biotin-dUTP nick-end labeling method. Morphologically, nuclear condensation and DNA fragmentation were observed when the cells were exposed to arsenic compounds. Cell cycle analysis with propidium iodide (PI) staining demonstrated the appearance of sub-G(1) peak and cell arrest at the G(1) phase in the presence of these compounds. Quantitative analysis by annexin V-PI staining revealed that the arsenic-induced apoptotic event was dose-dependent. Moreover, the arsenic compounds were able to activate caspase-3 expression when examined by Western blot analysis. Our experimental data unambiguously demonstrated that induction of cellular apoptosis was mainly responsible for the observed antiproliferation brought about by the arsenic compounds on HaCaT keratinocytes, suggesting that these arsenic compounds are putative agents from which psoriasis-treating topical formulae could be developed.

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Year:  2008        PMID: 18451318     DOI: 10.1124/jpet.107.134080

Source DB:  PubMed          Journal:  J Pharmacol Exp Ther        ISSN: 0022-3565            Impact factor:   4.030


  8 in total

1.  Arsenic-exposed Keratinocytes Exhibit Differential microRNAs Expression Profile; Potential Implication of miR-21, miR-200a and miR-141 in Melanoma Pathway.

Authors:  Horacio Gonzalez; Carolina Lema; Robert A Kirken; Rosa A Maldonado; Armando Varela-Ramirez; Renato J Aguilera
Journal:  Clin Cancer Drugs       Date:  2015

2.  Acid Water-ground Nano-realgar Is Superior to Crude Realgar in Promoting Apoptosis of MCF-7 Breast Cancer Cells.

Authors:  Juan Xi; Jia-Hui Fang; Xiao-Mei Xiong; Chun Gui; Yu-Xue Wang; Xiu-Qiao Zhang
Journal:  Curr Med Sci       Date:  2022-07-05

3.  Genomics and proteomics approaches to the study of cancer-stroma interactions.

Authors:  Flávia C Rodrigues-Lisoni; Paulo Peitl; Alessandra Vidotto; Giovana M Polachini; José V Maniglia; Juliana Carmona-Raphe; Bianca R Cunha; Tiago Henrique; Caique F Souza; Rodrigo A P Teixeira; Erica E Fukuyama; Pedro Michaluart; Marcos B de Carvalho; Sonia M Oliani; Eloiza H Tajara; P M Cury; M B de Carvalho; E Dias-Neto; D L A Figueiredo; E E Fukuyama; J F Góis-Filho; A M Leopoldino; R C M Mamede; P Michaluart-Junior; R A Moyses; F G Nóbrega; M P Nóbrega; F D Nunes; E F B Ojopi; L N Serafini; P Severino; A M A Silva; W A Silva; N J F Silveira; S C O M Souza; E H Tajara; V Wünsch-Filho; A Amar; C M Bandeira; M A Braconi; L G Brandão; R M Brandão; A L Canto; M Cerione; R Cicco; M J Chagas; H Chedid; A Costa; B R Cunha; O A Curioni; C S Fortes; S A Franzi; A P Z Frizzera; D Gazito; P E M Guimarães; C M Kaneto; R V M López; R Macarenco; M R Magalhães; C Meneses; A M C Mercante; D G Pinheiro; G M Polachini; A Rapoport; C O Rodini; F C Rodrigues-Lisoni; R V Rodrigues; L Rossi; A R D Santos; M Santos; F Settani; F A M Silva; I T Silva; T B Souza; E Stabenow; J T Takamori; P J Valentim; A Vidotto; F C A Xavier; F Yamagushi; M L Cominato; P M S Correa; G S Mendes; R Paiva; O Ramos; C Silva; M J Silva; M V C Tarlá
Journal:  BMC Med Genomics       Date:  2010-05-04       Impact factor: 3.063

4.  Antitumor effects of arsenic disulfide on the viability, migratory ability, apoptosis and autophagy of breast cancer cells.

Authors:  Yuxue Zhao; Kenji Onda; Kentaro Sugiyama; Bo Yuan; Sachiko Tanaka; Norio Takagi; Toshihiko Hirano
Journal:  Oncol Rep       Date:  2018-10-09       Impact factor: 3.906

Review 5.  Apoptotic or Antiproliferative Activity of Natural Products against Keratinocytes for the Treatment of Psoriasis.

Authors:  Tse-Hung Huang; Chwan-Fwu Lin; Ahmed Alalaiwe; Shih-Chun Yang; Jia-You Fang
Journal:  Int J Mol Sci       Date:  2019-05-24       Impact factor: 6.208

6.  A Critical Function for the Transcription Factors GLI1 and GLI2 in the Proliferation and Survival of Human Mast Cells.

Authors:  Guido Hernan Falduto; Annika Pfeiffer; Qunshu Zhang; Yuzhi Yin; Dean Darrel Metcalfe; Ana Olivera
Journal:  Front Immunol       Date:  2022-02-16       Impact factor: 7.561

7.  A Promising Method for the Determination of Cell Viability: The Membrane Potential Cell Viability Assay.

Authors:  Eneko Madorran; Andraž Stožer; Zoran Arsov; Uroš Maver; Jan Rožanc
Journal:  Cells       Date:  2022-07-27       Impact factor: 7.666

8.  Novel factors in the pathogenesis of psoriasis and potential drug candidates are found with systems biology approach.

Authors:  Máté Manczinger; Lajos Kemény
Journal:  PLoS One       Date:  2013-11-26       Impact factor: 3.240

  8 in total

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