Heparan sulfate proteoglycans mediate renal carcinoma metastasis Journal Article


Authors: Qazi, H.; Shi, Z. D.; Song, J. W.; Cancel, L. M.; Huang, P. G.; Zeng, Y.; Roberge, S.; Munn, L. L.; Tarbell, J. M.
Article Title: Heparan sulfate proteoglycans mediate renal carcinoma metastasis
Abstract: The surface proteoglycan/glycoprotein layer (glycocalyx) on tumor cells has been associated with cellular functions that can potentially enable invasion and metastasis. In addition, aggressive tumor cells with high metastatic potential have enhanced invasion rates in response to interstitial flow stimuli in vitro. Our previous studies suggest that heparan sulfate (HS) in the glycocalyx plays an important role in this flow mediated mechanostransduction and upregulation of invasive and metastatic potential. In this study, highly metastatic renal cell carcinoma cells were genetically modified to suppress HS production by knocking down its synthetic enzyme NDST1. Using modified Boyden chamber and microfluidic assays, we show that flow-enhanced invasion is suppressed in HS deficient cells. To assess the ability of these cells to metastasize in vivo, parental or knockdown cells expressing fluorescence reporters were injected into kidney capsules in SCID mice. Histological analysis confirmed that there was a large reduction (95%) in metastasis to distant organs by tumors formed from the NDST1 knockdown cells compared to control cells with intact HS. The ability of these cells to invade surrounding tissue was also impaired. The substantial inhibition of metastasis and invasion upon reduction of HS suggests an active role for the tumor cell glycocalyx in tumor progression.
Keywords: survival; metastasis; angiogenesis; invasion; migration; model; depletion; mechanotransduction; glycocalyx; interstitial flow; mechanobiology; cancer; ndst1; cell glycocalyx
Journal Title: International Journal of Cancer
Volume: 139
Issue: 12
ISSN: 0020-7136
Publisher: John Wiley & Sons  
Date Published: 2016-12-15
Start Page: 2791
End Page: 2801
Language: English
ACCESSION: WOS:000387619400017
DOI: 10.1002/ijc.30397
PROVIDER: wos
PUBMED: 27543953
PMCID: PMC7718768
Notes: Article -- Source: Wos
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  1. Zhongdong Shi
    15 Shi