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The Role of Hedgehog Signaling in the Melanoma Tumor Bone Microenvironment

A crucial regulator in melanoma progression and treatment resistance is tumor microenvironments, and Hedgehog (Hh) signals activated in a tumor bone microenvironment are a potential new therapeutic target. The mechanism of bone destruction by melanomas involving Hh/Gli signaling in such a tumor micr...

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Autores principales: Shamsoon, Karnoon, Hiraki, Daichi, Yoshida, Koki, Takabatake, Kiyofumi, Takebe, Hiroaki, Yokozeki, Kenji, Horie, Naohiro, Fujita, Naomasa, Nasrun, Nisrina Ekayani, Okui, Tatsuo, Nagatsuka, Hitoshi, Abiko, Yoshihiro, Hosoya, Akihiro, Saito, Takashi, Shimo, Tsuyoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10218521/
https://www.ncbi.nlm.nih.gov/pubmed/37240209
http://dx.doi.org/10.3390/ijms24108862
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author Shamsoon, Karnoon
Hiraki, Daichi
Yoshida, Koki
Takabatake, Kiyofumi
Takebe, Hiroaki
Yokozeki, Kenji
Horie, Naohiro
Fujita, Naomasa
Nasrun, Nisrina Ekayani
Okui, Tatsuo
Nagatsuka, Hitoshi
Abiko, Yoshihiro
Hosoya, Akihiro
Saito, Takashi
Shimo, Tsuyoshi
author_facet Shamsoon, Karnoon
Hiraki, Daichi
Yoshida, Koki
Takabatake, Kiyofumi
Takebe, Hiroaki
Yokozeki, Kenji
Horie, Naohiro
Fujita, Naomasa
Nasrun, Nisrina Ekayani
Okui, Tatsuo
Nagatsuka, Hitoshi
Abiko, Yoshihiro
Hosoya, Akihiro
Saito, Takashi
Shimo, Tsuyoshi
author_sort Shamsoon, Karnoon
collection PubMed
description A crucial regulator in melanoma progression and treatment resistance is tumor microenvironments, and Hedgehog (Hh) signals activated in a tumor bone microenvironment are a potential new therapeutic target. The mechanism of bone destruction by melanomas involving Hh/Gli signaling in such a tumor microenvironment is unknown. Here, we analyzed surgically resected oral malignant melanoma specimens and observed that Sonic Hedgehog, Gli1, and Gli2 were highly expressed in tumor cells, vasculatures, and osteoclasts. We established a tumor bone destruction mouse model by inoculating B16 cells into the bone marrow space of the right tibial metaphysis of 5-week-old female C57BL mice. An intraperitoneal administration of GANT61 (40 mg/kg), a small-molecule inhibitor of Gli1 and Gli2, resulted in significant inhibition of cortical bone destruction, TRAP-positive osteoclasts within the cortical bone, and endomucin-positive tumor vessels. The gene set enrichment analysis suggested that genes involved in apoptosis, angiogenesis, and the PD-L1 expression pathway in cancer were significantly altered by the GANT61 treatment. A flow cytometry analysis revealed that PD-L1 expression was significantly decreased in cells in which late apoptosis was induced by the GANT61 treatment. These results suggest that molecular targeting of Gli1 and Gli2 may release immunosuppression of the tumor bone microenvironment through normalization of abnormal angiogenesis and bone remodeling in advanced melanoma with jaw bone invasion.
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spelling pubmed-102185212023-05-27 The Role of Hedgehog Signaling in the Melanoma Tumor Bone Microenvironment Shamsoon, Karnoon Hiraki, Daichi Yoshida, Koki Takabatake, Kiyofumi Takebe, Hiroaki Yokozeki, Kenji Horie, Naohiro Fujita, Naomasa Nasrun, Nisrina Ekayani Okui, Tatsuo Nagatsuka, Hitoshi Abiko, Yoshihiro Hosoya, Akihiro Saito, Takashi Shimo, Tsuyoshi Int J Mol Sci Article A crucial regulator in melanoma progression and treatment resistance is tumor microenvironments, and Hedgehog (Hh) signals activated in a tumor bone microenvironment are a potential new therapeutic target. The mechanism of bone destruction by melanomas involving Hh/Gli signaling in such a tumor microenvironment is unknown. Here, we analyzed surgically resected oral malignant melanoma specimens and observed that Sonic Hedgehog, Gli1, and Gli2 were highly expressed in tumor cells, vasculatures, and osteoclasts. We established a tumor bone destruction mouse model by inoculating B16 cells into the bone marrow space of the right tibial metaphysis of 5-week-old female C57BL mice. An intraperitoneal administration of GANT61 (40 mg/kg), a small-molecule inhibitor of Gli1 and Gli2, resulted in significant inhibition of cortical bone destruction, TRAP-positive osteoclasts within the cortical bone, and endomucin-positive tumor vessels. The gene set enrichment analysis suggested that genes involved in apoptosis, angiogenesis, and the PD-L1 expression pathway in cancer were significantly altered by the GANT61 treatment. A flow cytometry analysis revealed that PD-L1 expression was significantly decreased in cells in which late apoptosis was induced by the GANT61 treatment. These results suggest that molecular targeting of Gli1 and Gli2 may release immunosuppression of the tumor bone microenvironment through normalization of abnormal angiogenesis and bone remodeling in advanced melanoma with jaw bone invasion. MDPI 2023-05-16 /pmc/articles/PMC10218521/ /pubmed/37240209 http://dx.doi.org/10.3390/ijms24108862 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shamsoon, Karnoon
Hiraki, Daichi
Yoshida, Koki
Takabatake, Kiyofumi
Takebe, Hiroaki
Yokozeki, Kenji
Horie, Naohiro
Fujita, Naomasa
Nasrun, Nisrina Ekayani
Okui, Tatsuo
Nagatsuka, Hitoshi
Abiko, Yoshihiro
Hosoya, Akihiro
Saito, Takashi
Shimo, Tsuyoshi
The Role of Hedgehog Signaling in the Melanoma Tumor Bone Microenvironment
title The Role of Hedgehog Signaling in the Melanoma Tumor Bone Microenvironment
title_full The Role of Hedgehog Signaling in the Melanoma Tumor Bone Microenvironment
title_fullStr The Role of Hedgehog Signaling in the Melanoma Tumor Bone Microenvironment
title_full_unstemmed The Role of Hedgehog Signaling in the Melanoma Tumor Bone Microenvironment
title_short The Role of Hedgehog Signaling in the Melanoma Tumor Bone Microenvironment
title_sort role of hedgehog signaling in the melanoma tumor bone microenvironment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10218521/
https://www.ncbi.nlm.nih.gov/pubmed/37240209
http://dx.doi.org/10.3390/ijms24108862
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