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Single-cellmulti-omics reveals tumor microenvironment factors underlying poor immunotherapy responses in ALK-positive lung cancer
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作者 Seungbyn Baek Euijeong Sung +6 位作者 Gamin Kim Min Hee Hong Chang Young lee Hyo Sup Shim Seong Yong Park Hye Ryun Kim insuk lee 《Cancer Communications》 2025年第4期422-427,共6页
Lung cancer remains the leading cause of cancer death in 2024,with∼80%being non-small cell lung cancer(NSCLC).Anaplastic lymphoma kinase(ALK)rearrangements occur in∼5%of NSCLC cases,typically treated with ALK inhibi... Lung cancer remains the leading cause of cancer death in 2024,with∼80%being non-small cell lung cancer(NSCLC).Anaplastic lymphoma kinase(ALK)rearrangements occur in∼5%of NSCLC cases,typically treated with ALK inhibitors,though resistance often develops[1].Immunotherapy has been explored for advanced or resistant ALK-positive NSCLC,but immune checkpoint blockade(ICB)treatments have shown limited clinical benefits[1]. 展开更多
关键词 lung cancer anaplastic lymphoma kinase immune checkpoint blockade non small cell lung cancer resistance ALK positive lung cancer single cell multi omics poor immunotherapy responses
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Comparative single-cell analysis of esophageal cancersubtypes reveals tumor microenvironment distinctionsexplaining varied immunotherapy responses
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作者 Seungbyn Baek Junha Cha +10 位作者 Min Hee Hong Gamin Kim YoonWoo Koh Dahee Kim Wonrak Son Chan-Young Ock Seungeun lee Martin Hemberg Seong Yong Park Hye Ryun Kim insuk lee 《Cancer Communications》 2025年第9期1194-1199,共6页
Esophageal cancer comprises 2 anatomically shared but histologically different subtypes:esophageal squamous cell carcinoma(ESCC)and esophageal adenocarcinoma(EAC).Previous bulk-level genomic and clinical studies have ... Esophageal cancer comprises 2 anatomically shared but histologically different subtypes:esophageal squamous cell carcinoma(ESCC)and esophageal adenocarcinoma(EAC).Previous bulk-level genomic and clinical studies have shown that ESCC shares molecular features with head and neck squamous cell carcinoma(HNSCC)[1]and is generally more responsive to immune checkpoint blockade(ICB)therapies than EAC[2],which is similar to gastric adenocarcinoma(GAC)[1].Recent clinical trials have further demonstrated clinical benefits fromvarious ICB therapies,including combination approaches,for ESCC[3]. 展开更多
关键词 esophageal squamous cell carcinoma esophageal cancer esophageal adenocarcinoma head neck squamous cell carcinoma hnscc clinical studies clinical trials squamous cell carcinoma escc gastric adenocarcinoma gac recent
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TomatoNet A Genome-wide Co-functional Network for Unveiling Complex Traits of Tomato, a Model Crop for Fleshy Fruits 被引量:3
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作者 Hyojin Kim Bong Suk Kim +5 位作者 Jung Eun Shim Sohyun Hwang Sunmo Yang Eiru Kim Aniafi S. Iver-Pascuzzi2 insuk lee 《Molecular Plant》 SCIE CAS CSCD 2017年第4期652-655,共4页
Tomato (Solanum lycopersicum) is the second most important vegetable crop globally, with a total world production valued at over $74 billion (FAOSTAT Statistics Database, 2009). Tomato is also an important model c... Tomato (Solanum lycopersicum) is the second most important vegetable crop globally, with a total world production valued at over $74 billion (FAOSTAT Statistics Database, 2009). Tomato is also an important model crop for fruit development and disease resistance. 展开更多
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WheatNet:a Genome-Scale Functional Network for Hexaploid Bread Wheat,Triticum aestivum 被引量:1
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作者 Tak lee Sohyun Hwang +5 位作者 Chan Yeong Kim Hongseok Shim Hyojin Kim Pamela C.Ronald Edward M.Marcotte insuk lee 《Molecular Plant》 SCIE CAS CSCD 2017年第8期1133-1136,共4页
Dear Editor Gene networks provide a system-level overview of genetic organizations and enable the dissection of functional modules underlying complex traits.Integration of diverse genomics data based on the Bayesian s... Dear Editor Gene networks provide a system-level overview of genetic organizations and enable the dissection of functional modules underlying complex traits.Integration of diverse genomics data based on the Bayesian statistics framework has been successfully applied to the construction of genome-scale functional networks for major crop species such as rice(Lee et al.,2011),soybean(Kim et al.,2017),and tomato。 展开更多
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