L1 increases adhesion-mediated proliferation and chemoresistance of retinoblastoma

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Title
L1 increases adhesion-mediated proliferation and chemoresistance of retinoblastoma
Author(s)
D H Jo; K Lee; J H Kim; H O Jun; Y Kim; Y L Cho; Y S Yu; Jeong Ki Min; J H Kim
Bibliographic Citation
Oncotarget, vol. 8, no. 9, pp. 15441-15452
Publication Year
2017
Abstract
Retinoblastoma is the most common intraocular cancer in children, affecting 1/20,000 live births. Currently, children with retinoblastoma were treated with chemotherapy using drugs such as carboplatin, vincristine, and etoposide. Unfortunately, if conventional treatment fails, the affected eyes should be removed to prevent extension into adjacent tissues and metastasis. This study is to investigate the roles of L1 in adhesion-mediated proliferation and chemoresistance of retinoblastoma. L1 was differentially expressed in 30 retinoblastoma tissues and 2 retinoblastoma cell lines. Furthermore, the proportions of L1-positive cells in retinoblastoma tumors were negatively linked with the number of Flexner-Wintersteiner rosettes, a characteristic of differentiated retinoblastoma tumors, in each tumor sample. Following in vitro experiments using L1-deleted and -overexpressing cells showed that L1 increased adhesion-mediated proliferation of retinoblastoma cells via regulation of cell cycleassociated proteins with modulation of Akt, extracellular signal-regulated kinase, and p38 pathways. In addition, L1 increased resistance against carboplatin, vincristine, and esoposide through up-regulation of apoptosis- and multidrug resistance-related genes. In vivo tumor formation and chemoresistance were also positively linked with the levels of L1 in an orthotopic transplantation model in mice. In this manner, L1 increases adhesion-mediated proliferation and chemoresistance of retinoblastoma. Targeted therapy to L1 might be effective in the treatment of retinoblastoma tumors, especially which rapidly proliferate and demonstrate resistance to conventional chemotherapeutic drugs.
Keyword
Adhesion-mediated proliferationCell adhesion moleculesChemoresistanceL1Retinoblastoma
ISSN
1949-2553
Publisher
Impact Journals
Full Text Link
http://dx.doi.org/10.18632/oncotarget.14487
Type
Article
Appears in Collections:
Division of A.I. & Biomedical Research > Biotherapeutics Translational Research Center > 1. Journal Articles
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