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Journal ArticleDOI

Sonic hedgehog signaling may promote invasion and metastasis of oral squamous cell carcinoma by activating MMP-9 and E-cadherin expression

TLDR
Investigation of sonic hedgehog signaling pathway components in human oral squamous cell carcinoma found transcription factor Gli-1 of the SHH signaling pathway may be an important mediator of invasion and metastasis of OSCC through induced expression of MMP-9 and E-cadherin and may serve as a new prognostic marker.
Abstract
The aim of this study was to investigate sonic hedgehog (SHH) signaling pathway components (Shh and Gli-1), E-cadherin, and MMP-9 expression in human oral squamous cell carcinoma (OSCC) and to evaluate their role in prognosis. Expression of Shh, Gli-1, and MMP-9 was significantly upregulated in 74 OSCC samples compared with non-cancerous tissue samples (Shh IOD: 162.44 ± 29.35 and 608.82 ± 170.99; Gli-1 IOD: 203.50 ± 71.57 and 831.11 ± 242.352; MMP-9 IOD: 196.69 ± 64.48 and 721.64 ± 197.99 in non-cancerous and tumor tissues, respectively, P < 0.01), whereas E-cadherin expression was downregulated (E-cadherin IOD: 1,006.19 ± 230.42 and 442.20 ± 156.11; in non-cancerous and tumor tissues, respectively, P < 0.01). Highly expressed proteins were associated with lymph node metastasis; moreover, overexpression of Gli-1 was related to tumor recurrence and cancer clinical staging. Spearman’s analysis indicated that the expression of Gli-1 and MMP-9 was positively correlated, whereas expression of Shh/Gli-1 and E-cadherin was negatively correlated. Kaplan–Meier results revealed that patients with low Shh, Gli-1, and MMP-9 expression survived longer than those with high expression. In contrast, low E-cadherin expression was associated with poor prognosis (P < 0.01). In conclusions, transcription factor Gli-1 of the SHH signaling pathway may be an important mediator of invasion and metastasis of OSCC through induced expression of MMP-9 and E-cadherin and may serve as a new prognostic marker.

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Journal ArticleDOI

Hypoxia induced EMT: A review on the mechanism of tumor progression and metastasis in OSCC.

TL;DR: The role of hypoxia and the associated factors like HIFs in inducing EMT in oral cancer (OSCC) is articulated.
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Targeting the Hedgehog signaling pathway in cancer: beyond Smoothened

TL;DR: GANT61 appears to be highly effective against human cancer cells and in xenograft mouse models, targeting almost all of the classical hallmarks of cancer and could hence represent a promising treatment option for human cancer.
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The challenge of targeting cancer stem cells to halt metastasis.

TL;DR: The contribution of CSCs to cancer metastasis and the scope of opportunities for therapeutic intervention is discussed and CSC-targeting agents for which there is experimental evidence of anti-metastatic properties and which may have potential to eventually limit relapse and impede metastasis in patients are considered.
Journal ArticleDOI

Targeting the hedgehog transcription factors GLI1 and GLI2 restores sensitivity to vemurafenib-resistant human melanoma cells

TL;DR: It is demonstrated that melanoma cell lines, with acquired in vitro-induced vemurafenib resistance, show increased levels of glioma-associated oncogene homolog 1 and 2 (GLI1/GLI2) compared with naïve cells, and it is suggested that targeting the Hh pathway in BRAFi-resistant melanoma may represent a viable therapeutic strategy to restore vemurAFenib sensitivity, reducing or even inhibiting the acquired chemoresistance in melanoma patients
Journal ArticleDOI

Advances in Therapeutic Targeting of Cancer Stem Cells within the Tumor Microenvironment: An Updated Review.

TL;DR: This updated review of cancer stem cell theory and CSCs within the tumor microenvironment (TME) is revisited and promising strategies to try to turn the tide against cancer by targeting CSC-associated drug resistance and metastasis are presented.
References
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BookDOI

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Journal ArticleDOI

Hedgehog signaling in animal development: paradigms and principles.

TL;DR: In their screen for mutations that disrupt the Drosophila larval body plan, these authors identified several that cause the duplication of denticles and an accompanying loss of naked cuticle, characteristic of the posterior half of each segment.
Journal ArticleDOI

Molecular requirements for epithelial-mesenchymal transition during tumor progression.

TL;DR: Increasing evidence suggests that EMT plays a specific role in the migration of cells from a primary tumor into the circulation and may provide a rationale for developing more effective cancer therapies.
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