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PMID: 20564126 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Germ cell-specific heat shock protein 70-2 is expressed in cervical carcinoma and is involved in the growth, migration, and invasion of cervical cells.

Cancer ·Vol. 116 ·No. 16 ·2010-08-15 ·Pages 3785-96

Garg M, Kanojia D, Saini S, Suri S, Gupta A, Surolia A, Suri A

Abstract

Cervical cancer is a major cause of death among women worldwide, and the most cases are reported in the least developed countries. Recently, a study on DNA microarray gene expression analysis demonstrated the overexpression of heat shock protein 70-2 (HSP70-2) in cervical carcinoma cells (HeLa). The objective of the current study was to evaluate the association between HSP70-2 expression in cervical carcinogenesis and its potential role in various malignant properties that result in disease progression. HSP70-2 expression was examined in various cervical cancer cell lines with different origins and in clinical cervical cancer specimens by reverse transcriptase-polymerase chain reaction (RT-PCR), flow cytometry, and immunohistochemistry (IHC) analyses. A plasmid-based, short-hairpin RNA approach was used specifically to knock down the expression of HSP70-2 in cervical tumor cells in vitro and in vivo to examine the role of HSP70-2 on various malignant properties. RT-PCR and IHC analyses revealed HSP70-2 expression in 86% of cervical cancer specimens. Furthermore, knockdown of HSP70-2 expression significantly reduced cellular growth, colony formation, migration, and invasion in vitro and reduced tumor growth in vivo. A significant association of HSP70-2 gene and protein expression was observed among the various tumor stages (P=.046) and different grades (P=.006), suggesting that HSP70-2 expression may be an indicator of disease progression. The current findings suggested that HSP70-2 may play an important role in disease progression in cervical carcinogenesis. Patients who had early stage disease and low-grade tumors had HSP70-2 expression, supporting its potential role in early detection and aggressive treatment modalities for cervical cancer management.

MeSH Terms
Animals Cell Line, Tumor Cell Movement Cell Proliferation Disease Progression Female Gene Knockdown Techniques HSP70 Heat-Shock Proteins/metabolism Humans Mice Mice, Nude Neoplasm Invasiveness Neoplasm Transplantation Uterine Cervical Neoplasms/metabolism,pathology
Chemicals
HSP70 Heat-Shock Proteins HSPA1B protein, human
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Garg Manoj
Cancer Microarray, Genes, and Proteins Laboratory, National Institute of Immunology, New Delhi, India.
Kanojia Deepika
Saini Shikha
Suri Sushma
Gupta Anju
Surolia Avadhesha
Suri Anil
Article Info
Journal
Cancer
Abbr.
Cancer
ISSN
0008-543X
Published
2010-08-15
Pages
3785-96
Language
English
Region
United States
NLM ID
0374236
Subset
IM
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