Literature DB >> 20185418

Involvement of macrophage inflammatory protein 1alpha (MIP1alpha) in promotion of rat lung and mammary carcinogenic activity of nanoscale titanium dioxide particles administered by intra-pulmonary spraying.

Jiegou Xu1, Mitsuru Futakuchi, Masaaki Iigo, Katsumi Fukamachi, David B Alexander, Hideo Shimizu, Yuto Sakai, Seiko Tamano, Fumio Furukawa, Tadashi Uchino, Hiroshi Tokunaga, Tetsuji Nishimura, Akihiko Hirose, Jun Kanno, Hiroyuki Tsuda.   

Abstract

Titanium dioxide (TiO(2)) is evaluated by World Health Organization/International Agency for Research on Cancer as a Group 2B carcinogen. The present study was conducted to detect carcinogenic activity of nanoscale TiO(2) administered by a novel intrapulmonary spraying (IPS)-initiation-promotion protocol in the rat lung. Female human c-Ha-ras proto-oncogene transgenic rat (Hras128) transgenic rats were treated first with N-nitrosobis(2-hydroxypropyl)amine (DHPN) in the drinking water and then with TiO(2) (rutile type, mean diameter 20 nm, without coating) by IPS. TiO(2) treatment significantly increased the multiplicity of DHPN-induced alveolar cell hyperplasias and adenomas in the lung, and the multiplicity of mammary adenocarcinomas, confirming the effectiveness of the IPS-initiation-promotion protocol. TiO(2) aggregates were localized exclusively in alveolar macrophages and had a mean diameter of 107.4 nm. To investigate the underlying mechanism of its carcinogenic effects, TiO(2) was administered to wild-type rats by IPS five times over 9 days. TiO(2) treatment significantly increased 8-hydroxydeoxy guanosine level, superoxide dismutase activity and macrophage inflammatory protein 1alpha (MIP1alpha) expression in the lung. MIP1alpha, detected in the cytoplasm of TiO(2)-laden alveolar macrophages in vivo and in the media of rat primary alveolar macrophages treated with TiO(2) in vitro, enhanced proliferation of human lung cancer cells. Furthermore, MIP1alpha, also detected in the sera and mammary adenocarcinomas of TiO(2)-treated Hras128 rats, enhanced proliferation of rat mammary carcinoma cells. These data indicate that secreted MIP1alpha from TiO(2)-laden alveolar macrophages can cause cell proliferation in the alveoli and mammary gland and suggest that TiO(2) tumor promotion is mediated by MIP1alpha acting locally in the alveoli and distantly in the mammary gland after transport via the circulation.

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Year:  2010        PMID: 20185418     DOI: 10.1093/carcin/bgq029

Source DB:  PubMed          Journal:  Carcinogenesis        ISSN: 0143-3334            Impact factor:   4.944


  12 in total

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2.  Inflammatory Components of the Thyroid Cancer Microenvironment: An Avenue for Identification of Novel Biomarkers.

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3.  Chemokine (C-C motif) ligand 3 detection in the serum of persons exposed to asbestos: A patient-based study.

Authors:  Jiegou Xu; David B Alexander; Masaaki Iigo; Hirokazu Hamano; Satoru Takahashi; Takako Yokoyama; Munehiro Kato; Ikuji Usami; Takeshi Tokuyama; Masahiro Tsutsumi; Mouka Tamura; Tetsuya Oguri; Akio Niimi; Yoshimitsu Hayashi; Yoshifumi Yokoyama; Ken Tonegawa; Katsumi Fukamachi; Mitsuru Futakuchi; Yuto Sakai; Masumi Suzui; Michihiro Kamijima; Naomi Hisanaga; Toyonori Omori; Dai Nakae; Akihiko Hirose; Jun Kanno; Hiroyuki Tsuda
Journal:  Cancer Sci       Date:  2015-06-05       Impact factor: 6.716

4.  Nanosized zinc oxide particles do not promote DHPN-induced lung carcinogenesis but cause reversible epithelial hyperplasia of terminal bronchioles.

Authors:  Jiegou Xu; Mitsuru Futakuchi; David B Alexander; Katsumi Fukamachi; Takamasa Numano; Masumi Suzui; Hideo Shimizu; Toyonori Omori; Jun Kanno; Akihiko Hirose; Hiroyuki Tsuda
Journal:  Arch Toxicol       Date:  2013-07-06       Impact factor: 5.153

5.  Management of device-related malignant sarcoma.

Authors:  Arash Khamooshian; Theo J Klinkenberg; Alexander H Maass; Massimo A Mariani
Journal:  HeartRhythm Case Rep       Date:  2017-06-13

6.  Lung carcinogenicity of inhaled multi-walled carbon nanotube in rats.

Authors:  Tatsuya Kasai; Yumi Umeda; Makoto Ohnishi; Takashi Mine; Hitomi Kondo; Tetsuya Takeuchi; Michiharu Matsumoto; Shoji Fukushima
Journal:  Part Fibre Toxicol       Date:  2016-10-13       Impact factor: 9.400

7.  Size- and shape-dependent pleural translocation, deposition, fibrogenesis, and mesothelial proliferation by multiwalled carbon nanotubes.

Authors:  Jiegou Xu; David B Alexander; Mitsuru Futakuchi; Takamasa Numano; Katsumi Fukamachi; Masumi Suzui; Toyonori Omori; Jun Kanno; Akihiko Hirose; Hiroyuki Tsuda
Journal:  Cancer Sci       Date:  2014-07-01       Impact factor: 6.716

8.  The association of HMGB1 expression with clinicopathological significance and prognosis in Asian patients with colorectal carcinoma: a meta-analysis and literature review.

Authors:  Xiaoli Zhang; Jinming Yu; Minghuan Li; Hui Zhu; Xindong Sun; Li Kong
Journal:  Onco Targets Ther       Date:  2016-08-08       Impact factor: 4.147

9.  Multiwalled carbon nanotubes intratracheally instilled into the rat lung induce development of pleural malignant mesothelioma and lung tumors.

Authors:  Masumi Suzui; Mitsuru Futakuchi; Katsumi Fukamachi; Takamasa Numano; Mohamed Abdelgied; Satoru Takahashi; Makoto Ohnishi; Toyonori Omori; Shuji Tsuruoka; Akihiko Hirose; Jun Kanno; Yoshimitsu Sakamoto; David B Alexander; William T Alexander; Xu Jiegou; Hiroyuki Tsuda
Journal:  Cancer Sci       Date:  2016-06-23       Impact factor: 6.716

10.  MK2 Regulates Macrophage Chemokine Activity and Recruitment to Promote Colon Tumor Growth.

Authors:  Brandon B Phinney; Anita L Ray; Amanda S Peretti; Stephanie J Jerman; Carl Grim; Irina V Pinchuk; Ellen J Beswick
Journal:  Front Immunol       Date:  2018-09-21       Impact factor: 7.561

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