Normal view
-
AAAS: Table of Contents
-
Induction of broadly neutralizing HIV antibodies by a two-step mechanism informs vaccine design
Science, Ahead of Print.
-
Oncogene - Issue - nature.com science feeds
-
Granzyme B-based CAR-T cells targeting membrane-bound HSP70 suppress solid tumor growth and metastasis
Oncogene, Published online: 18 April 2026; doi:10.1038/s41388-026-03797-7Granzyme B-based CAR-T cells targeting membrane-bound HSP70 suppress solid tumor growth and metastasis
Granzyme B-based CAR-T cells targeting membrane-bound HSP70 suppress solid tumor growth and metastasis
Oncogene, Published online: 18 April 2026; doi:10.1038/s41388-026-03797-7
Granzyme B-based CAR-T cells targeting membrane-bound HSP70 suppress solid tumor growth and metastasis-
Omics In Lung
-
Applications and challenges of multi-omics approaches in lung cancer research and precision treatment
Front Genet. 2026 Mar 23;16:1722368. doi: 10.3389/fgene.2025.1722368. eCollection 2025.ABSTRACTLung cancer is one of the most common cancers worldwide and one of the leading causes of cancer death, with a heavy disease burden and severe public health challenges. Multi-omics techniques, such as genomics, proteomics, metabolomics, and radiomics, play a crucial role in the early diagnosis and treatment of lung cancer, revealing the molecular characteristics and mechanisms of lung cancer, and have s
Applications and challenges of multi-omics approaches in lung cancer research and precision treatment
Front Genet. 2026 Mar 23;16:1722368. doi: 10.3389/fgene.2025.1722368. eCollection 2025.
ABSTRACT
Lung cancer is one of the most common cancers worldwide and one of the leading causes of cancer death, with a heavy disease burden and severe public health challenges. Multi-omics techniques, such as genomics, proteomics, metabolomics, and radiomics, play a crucial role in the early diagnosis and treatment of lung cancer, revealing the molecular characteristics and mechanisms of lung cancer, and have significant clinical application value. However, it also faces numerous challenges, such as data issues, "black box" problems, and ethical and legal concerns. How to leverage strengths while mitigating weaknesses, achieve clinical translation of technology, and serve patients more effectively deserves our deep reflection. This article reviews the specific applications and challenges of multi-omics methods in lung cancer research and personalized treatment.
PMID:41948518 | PMC:PMC13050793 | DOI:10.3389/fgene.2025.1722368