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Featured researches published by Shun Wa Tsang.


Gut | 2018

Hepatoma-intrinsic CCRK inhibition diminishes myeloid-derived suppressor cell immunosuppression and enhances immune-checkpoint blockade efficacy

Jingying Zhou; Man Liu; Hanyong Sun; Yu Feng; Liangliang Xu; Anthony W.H. Chan; Joanna H. Tong; John Wong; Charing Ching Ning Chong; Paul B.S. Lai; Hector Kwong-Sang Wang; Shun Wa Tsang; Tyler J. Goodwin; Rihe Liu; Leaf Huang; Zhiwei Chen; Joseph J.Y. Sung; King Lau Chow; Ka Fai To; Alfred S.L. Cheng

Objective Myeloid-derived suppressor cells (MDSCs) contribute to tumour immunosuppressive microenvironment and immune-checkpoint blockade resistance. Emerging evidence highlights the pivotal functions of cyclin-dependent kinases (CDKs) in tumour immunity. Here we elucidated the role of tumour-intrinsic CDK20, or cell cycle-related kinase (CCRK) on immunosuppression in hepatocellular carcinoma (HCC). Design Immunosuppression of MDSCs derived from patients with HCC and relationship with CCRK were determined by flow cytometry, expression analyses and co-culture systems. Mechanistic studies were also conducted in liver-specific CCRK-inducible transgenic (TG) mice and Hepa1–6 orthotopic HCC models using CRISPR/Cas9-mediated Ccrk depletion and liver-targeted nanoparticles for interleukin (IL) 6 trapping. Tumorigenicity and immunophenotype were assessed on single or combined antiprogrammed death-1-ligand 1 (PD-L1) therapy. Results Tumour-infiltrating CD11b+CD33+HLA-DR− MDSCs from patients with HCC potently inhibited autologous CD8+T cell proliferation. Concordant overexpression of CCRK and MDSC markers (CD11b/CD33) positively correlated with poorer survival rates. Hepatocellular CCRK stimulated immunosuppressive CD11b+CD33+HLA-DR− MDSC expansion from human peripheral blood mononuclear cells through upregulating IL-6. Mechanistically, CCRK activated nuclear factor-κB (NF-κB) via enhancer of zeste homolog 2 (EZH2) and facilitated NF-κB-EZH2 co-binding to IL-6 promoter. Hepatic CCRK induction in TG mice activated the EZH2/NF-κB/IL-6 cascade, leading to accumulation of polymorphonuclear (PMN) MDSCs with potent T cell suppressive activity. In contrast, inhibiting tumorous Ccrk or hepatic IL-6 increased interferon γ+tumour necrosis factor-α+CD8+ T cell infiltration and impaired tumorigenicity, which was rescued by restoring PMN-MDSCs. Notably, tumorous Ccrk depletion upregulated PD-L1 expression and increased intratumorous CD8+ T cells, thus enhancing PD-L1 blockade efficacy to eradicate HCC. Conclusion Our results delineate an immunosuppressive mechanism of the hepatoma-intrinsic CCRK signalling and highlight an overexpressed kinase target whose inhibition might empower HCC immunotherapy.


Developmental Biology | 2007

mab-7 encodes a novel transmembrane protein that orchestrates sensory ray morphogenesis in C. elegans.

Shun Wa Tsang; Can Q. Nguyen; David H. Hall; King Lau Chow


Mechanisms of Development | 2017

Pathology of MAB21L2(R51C) mutations in mouse model

YanJiang Guo; Shun Wa Tsang; King Lau Chow


The 16th International C. elegans Meeting at the University of California, Los Angeles, USA | 2007

noah-2: a new component in ray morphogenesis of C. elegans

Shun Wa Tsang; Aky Hui; King Lau Chow


The 16th International C. elegans Meeting at the University of California, Los Angeles, USA | 2007

Functional genomic analysis of C. elegans sensory ray development

Sy Yip; Hth Ho; Hok Yeung Lee; Dck Leung; Aw Cheng; Yat-Ting Wong; Yf Wong; Chun Man Chan; Yiu Man Lam; S.W. Choy; Awh Chan; Wing Sze Hui; Wk So; Ce Mun Tang; Shun Wa Tsang; Yk Lam; King Lau Chow


Archive | 2006

Dissection of the molecular components required for caenorhabditis elegans sensory ray morphogenesis

Shun Wa Tsang


Developmental Biology | 2006

A discovery-based molecular genetics undergraduate lab course using Caenorhabditis elegans

King Lau Chow; J.C. Tang; Wing Sze Hui; Yf Wong; S.W. Choy; Shun Wa Tsang; M. Lam


Developmental Biology | 2006

ram-6 is required for Caenorhabditis elegans male sensory rays morphogenesis

Hok Yeung Lee; Yiu Man Lam; Shun Wa Tsang; King Lau Chow


The 15th Biennial International C. elegans Conference at University of California, Los Angeles, California, USA. | 2005

Identification of new components in ray morphogenesis of C. elegans.

Shun Wa Tsang; Yiu Man Lam; Hok Yeung Lee; King Lau Chow


The 63rd Annual Meeting of Society for Developmental Biology, University of Calgary, Alberta, Canada. | 2004

Characterization of the C. elegans ray formation processes via the study of mab-22 gene.

Ka Chai So; Siu Hong Ho; Shun Wa Tsang; Yick Loi Yu; King Lau Chow

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King Lau Chow

Hong Kong University of Science and Technology

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Yiu Man Lam

Hong Kong University of Science and Technology

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Hok Yeung Lee

Hong Kong University of Science and Technology

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Wing Sze Hui

Hong Kong University of Science and Technology

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Yf Wong

Hong Kong University of Science and Technology

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S.W. Choy

Hong Kong University of Science and Technology

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Siu Hong Ho

Hong Kong University of Science and Technology

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Alfred S.L. Cheng

The Chinese University of Hong Kong

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Anthony W.H. Chan

The Chinese University of Hong Kong

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Aw Cheng

Hong Kong University of Science and Technology

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