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Verified CAS / Academic Author2 Decoded Studies

Prof. ZHENG Sui

Sun Yat-sen University

Research Publications & English Decoded Briefs

Showing 2 publications
Acta Biochimica et Biophysica Sinica2026DOI: 10.3724/abbs.2025128

Ly96-mediated activation of TGF-β1/Smad2/3 signaling in hepatocellular carcinoma and its potential for nanoparticle-based therapy

Hepatocellular carcinoma (HCC) continues to pose a chief threat to the global healthcare landscape and is characterized by scarce therapeutic options and poor clinical outcomes, especially in advanced-stage disease. Although lymphocyte antigen 96 (LY96) is associated with immunogenic cell death, its specific role in HCC progression and therapeutic potential remains unclear. To identify prospective therapeutic targets in HCC, by combining the cancer-immunity cycle score with WGCNA and systems biology methods, we identify pivotal molecular interactions. By integrating the cancer-immunity cycle score with WGCNA and systems-level approaches, we systematically identify potential therapeutic targets in HCC. We evaluate LY96 expression at the transcriptomic and proteomic levels in HCC tissues and explore its prognostic relevance by drawing upon information from The Cancer Genome Atlas (TCGA) repository. The functional role of LY96 is delineated through a panel of cellular assays conducted in vitro, complemented by in vivo tumorigenesis models. To identify the downstream signaling cascades associated with LY96, gene set enrichment analysis (GSEA) is performed to elucidate the implicated pathways, which are then confirmed via experimental validation. Furthermore, we employ a lipid-polymer hybrid nanoparticle (NP) platform to facilitate the systemic delivery of an LY96 inhibitor and demonstrate its potential as a newly proposed intervention strategy for HCC. Clinically, marked LY96 overexpression occurs in HCC samples, where elevated LY96 expression is strongly associated with reduced overall survival (OS) among liver cancer patients. LY96 facilitates the progression of HCC via complementary in vitro and in vivo approaches. Mechanistically, LY96 induces the activation of the TGF-β1/Smad2/3 signaling axis in HCC. For therapeutic applications, we develop a liposome-based nanoparticle system that delivers the LY96 inhibitor L6H21 to tumor cells and effectively suppresses HCC progression through a combination of in vivo and in vitro studies. Taken together, the current observations identify LY96 as a promising diagnostic indicator and a viable intervention for therapeutic modulation to improve HCC treatment.

Acta Biochimica et Biophysica Sinica2025DOI: 10.3724/abbs.2025128

Ly96-mediated activation of TGF-β1/Smad2/3 signaling in hepatocellular carcinoma and its potential for nanoparticle-based therapy

Hepatocellular carcinoma (HCC) remains a leading cause of cancer-related mortality, with advanced-stage disease characterized by limited therapeutic options and poor clinical outcomes. Lymphocyte antigen 96 (LY96) has been implicated in immunogenic cell death, yet its specific mechanistic contribution to HCC progression and its potential as a therapeutic target remain undefined. This study integrates cancer-immunity cycle scoring with weighted gene co-expression network analysis (WGCNA) and systems biology approaches to identify pivotal molecular drivers in HCC. LY96 expression was evaluated at transcriptomic and proteomic levels in HCC tissues, and its prognostic relevance was assessed using The Cancer Genome Atlas (TCGA) repository. Functional characterization of LY96 was performed through a panel of in vitro cellular assays and in vivo tumorigenesis models. Gene set enrichment analysis (GSEA) identified downstream signaling cascades, which were subsequently validated experimentally. A lipid-polymer hybrid nanoparticle (NP) platform was engineered for systemic delivery of the LY96 inhibitor L6H21. Clinically, marked LY96 overexpression was observed in HCC samples and correlated with reduced overall survival (OS). LY96 facilitated HCC progression via complementary in vitro and in vivo approaches. Mechanistically, LY96 induced activation of the TGF-β1/Smad2/3 signaling axis. The liposome-based nanoparticle system delivering L6H21 effectively suppressed HCC progression in both in vivo and in vitro studies. These findings identify LY96 as a promising diagnostic indicator and a viable therapeutic target for HCC intervention.