Syndecan-4 promotes gastric cancer progression through activating TGF-β1 induced lipid reprogramming and contributes positive loop circuits

Abstract Background Syndecan-4 (SDC4) plays a pivotal role in tumorigenesis through cell signaling, adhesion and matrix interactions. Lipid reprogramming is a core strategy for malignant tumors to drive progression and invasion through reshaping immunity, stromal and vascular ecology in microenviron...

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Main Authors: Guangjie Liu, Ru Jia, Heng Deng, Xiaoshan Wang
Format: Article
Language:English
Published: Springer 2025-06-01
Series:Discover Oncology
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Online Access:https://doi.org/10.1007/s12672-025-02975-5
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author Guangjie Liu
Ru Jia
Heng Deng
Xiaoshan Wang
author_facet Guangjie Liu
Ru Jia
Heng Deng
Xiaoshan Wang
author_sort Guangjie Liu
collection DOAJ
description Abstract Background Syndecan-4 (SDC4) plays a pivotal role in tumorigenesis through cell signaling, adhesion and matrix interactions. Lipid reprogramming is a core strategy for malignant tumors to drive progression and invasion through reshaping immunity, stromal and vascular ecology in microenvironment. However, the regulatory mechanism of SDC4 in lipid reprogramming has not yet been elucidated. Therefore, it is important to investigate underlying mechanisms and develop novel therapeutic targets for gastric cancer (GC). Methods Clinicopathological data and corresponding immunohistochemistry were collected to explore the role of SDC4 in patients with GC. Functional experiments were performed to assess tumor progression and lipid reprogramming. Moreover, western blot assay was performed to verify the molecular mechanisms. In addition, cholesterol-induced lipotoxic environments both in vivo and in vitro were constructed to explore the underlying positive loop circuit. Results SDC4 expression was upregulated in tumor tissues compared to normal gastric tissues and was associated with differentiation grades. Patients with high SDC4 expression were positively correlated with high circulating tumor cell (CTC) levels, vascular endothelial growth factor (VEGF) levels and poor prognosis. Moreover, SDC4 significantly promoted tumor progression by activating transforming growth factor-beta 1 (TGF-β1/TGFB1)-induced lipid reprogramming and contributed a positive loop circuit in GC cells. However, the core of this circuit was dependent on Smad3. In addition, a cholesterol-induced lipotoxic environment upregulated SDC4 expression by activating the RAS signaling pathway and further indicated a positive loop circuit between SDC4 and lipid reprogramming in GC. Conclusions These findings highlight SDC4 as a therapeutic target for GC and identify actionable positive loop circuits.
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spelling doaj-art-a6ec3174efcf4cd3ab2508bf534167802025-08-20T02:06:35ZengSpringerDiscover Oncology2730-60112025-06-0116111510.1007/s12672-025-02975-5Syndecan-4 promotes gastric cancer progression through activating TGF-β1 induced lipid reprogramming and contributes positive loop circuitsGuangjie Liu0Ru Jia1Heng Deng2Xiaoshan Wang3Department of General Surgery, First Affiliated Hospital of Anhui Medical UniversityDepartment of Anorectal Surgery, Anhui Acupuncture and Moxibustion Clinical Medicine Research Center, Second Affiliated Hospital of Anhui University of Traditional Chinese MedicineDepartment of Anorectal Surgery, Anhui Acupuncture and Moxibustion Clinical Medicine Research Center, Second Affiliated Hospital of Anhui University of Traditional Chinese MedicineDepartment of General Surgery, First Affiliated Hospital of Anhui Medical UniversityAbstract Background Syndecan-4 (SDC4) plays a pivotal role in tumorigenesis through cell signaling, adhesion and matrix interactions. Lipid reprogramming is a core strategy for malignant tumors to drive progression and invasion through reshaping immunity, stromal and vascular ecology in microenvironment. However, the regulatory mechanism of SDC4 in lipid reprogramming has not yet been elucidated. Therefore, it is important to investigate underlying mechanisms and develop novel therapeutic targets for gastric cancer (GC). Methods Clinicopathological data and corresponding immunohistochemistry were collected to explore the role of SDC4 in patients with GC. Functional experiments were performed to assess tumor progression and lipid reprogramming. Moreover, western blot assay was performed to verify the molecular mechanisms. In addition, cholesterol-induced lipotoxic environments both in vivo and in vitro were constructed to explore the underlying positive loop circuit. Results SDC4 expression was upregulated in tumor tissues compared to normal gastric tissues and was associated with differentiation grades. Patients with high SDC4 expression were positively correlated with high circulating tumor cell (CTC) levels, vascular endothelial growth factor (VEGF) levels and poor prognosis. Moreover, SDC4 significantly promoted tumor progression by activating transforming growth factor-beta 1 (TGF-β1/TGFB1)-induced lipid reprogramming and contributed a positive loop circuit in GC cells. However, the core of this circuit was dependent on Smad3. In addition, a cholesterol-induced lipotoxic environment upregulated SDC4 expression by activating the RAS signaling pathway and further indicated a positive loop circuit between SDC4 and lipid reprogramming in GC. Conclusions These findings highlight SDC4 as a therapeutic target for GC and identify actionable positive loop circuits.https://doi.org/10.1007/s12672-025-02975-5SDC4TGF-β1Smad3Cell progressionLipid reprogramming
spellingShingle Guangjie Liu
Ru Jia
Heng Deng
Xiaoshan Wang
Syndecan-4 promotes gastric cancer progression through activating TGF-β1 induced lipid reprogramming and contributes positive loop circuits
Discover Oncology
SDC4
TGF-β1
Smad3
Cell progression
Lipid reprogramming
title Syndecan-4 promotes gastric cancer progression through activating TGF-β1 induced lipid reprogramming and contributes positive loop circuits
title_full Syndecan-4 promotes gastric cancer progression through activating TGF-β1 induced lipid reprogramming and contributes positive loop circuits
title_fullStr Syndecan-4 promotes gastric cancer progression through activating TGF-β1 induced lipid reprogramming and contributes positive loop circuits
title_full_unstemmed Syndecan-4 promotes gastric cancer progression through activating TGF-β1 induced lipid reprogramming and contributes positive loop circuits
title_short Syndecan-4 promotes gastric cancer progression through activating TGF-β1 induced lipid reprogramming and contributes positive loop circuits
title_sort syndecan 4 promotes gastric cancer progression through activating tgf β1 induced lipid reprogramming and contributes positive loop circuits
topic SDC4
TGF-β1
Smad3
Cell progression
Lipid reprogramming
url https://doi.org/10.1007/s12672-025-02975-5
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