Prognostic Value of PIK3R4 Expression and Its Correlation with Immune Cell Infiltration in the Diffuse Large B-cell Lymphoma Microenvironment
暂无分享,去创建一个
J. Li | C. Ji | J. Zou | Guangxin Ma | Fei Lu
[1] Nadezhda T. Doncheva,et al. The STRING database in 2021: customizable protein–protein networks, and functional characterization of user-uploaded gene/measurement sets , 2020, Nucleic Acids Res..
[2] Hubing Shi,et al. Targeted degradation of immune checkpoint proteins: emerging strategies for cancer immunotherapy , 2020, Oncogene.
[3] Xiaole Shirley Liu,et al. TIMER2.0 for analysis of tumor-infiltrating immune cells , 2020, Nucleic Acids Res..
[4] P. Sharma,et al. Differences in Tumor Microenvironment Dictate T Helper Lineage Polarization and Response to Immune Checkpoint Therapy , 2019, Cell.
[5] Z. Tian,et al. Identifying potential metastasis‐related long non‐coding RNAs, microRNAs, and message RNAs in the esophageal squamous cell carcinoma , 2019, Journal of cellular biochemistry.
[6] Zemin Zhang,et al. GEPIA2: an enhanced web server for large-scale expression profiling and interactive analysis , 2019, Nucleic Acids Res..
[7] S. Barta,et al. Diffuse large B‐cell lymphoma: 2019 update on diagnosis, risk stratification, and treatment , 2019, American journal of hematology.
[8] Ya Zhang,et al. CUL4B regulates autophagy via JNK signaling in diffuse large B-cell lymphoma , 2019, Cell cycle.
[9] C. Liang,et al. Targeting AR-Beclin 1 complex-modulated growth factor signaling increases the antiandrogen Enzalutamide sensitivity to better suppress the castration-resistant prostate cancer growth. , 2019, Cancer letters.
[10] Chiara Sabatti,et al. Organoid Modeling of the Tumor Immune Microenvironment , 2018, Cell.
[11] Steven J. M. Jones,et al. The Immune Landscape of Cancer , 2018, Immunity.
[12] F. Cabanillas,et al. Advances in Diagnosis and Management of Diffuse Large B‐cell Lymphoma , 2017, Clinical lymphoma, myeloma & leukemia.
[13] Jing Wang,et al. LinkedOmics: analyzing multi-omics data within and across 32 cancer types , 2017, Nucleic Acids Res..
[14] Zhimin Lu,et al. Protein kinase activity of the glycolytic enzyme PGK1 regulates autophagy to promote tumorigenesis , 2017, Autophagy.
[15] L. Staudt,et al. Integrating genomic alterations in diffuse large B-cell lymphoma identifies new relevant pathways and potential therapeutic targets , 2016, Leukemia.
[16] Yi-Song Wang,et al. PI3K as a Potential Therapeutic Target in Thymic Epithelial Tumors , 2016, Journal of thoracic oncology : official publication of the International Association for the Study of Lung Cancer.
[17] M. Møller,et al. High expression of PI3K core complex genes is associated with poor prognosis in chronic lymphocytic leukemia. , 2015, Leukemia research.
[18] Y. C. Long,et al. Differential regulatory functions of three classes of phosphatidylinositol and phosphoinositide 3-kinases in autophagy , 2015, Autophagy.
[19] Rajen Dinesh Shah,et al. Diffuse large B-cell lymphoma classification system that associates normal B-cell subset phenotypes with prognosis. , 2015, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[20] A. Gaspari,et al. Natural humoral immune response to ribosomal P0 protein in colorectal cancer patients , 2015, Journal of Translational Medicine.
[21] A. Ciccodicola,et al. New somatic mutations and WNK1-B4GALNT3 gene fusion in papillary thyroid carcinoma , 2015, Oncotarget.
[22] J. Huidobro-Toro,et al. The 5′ Untranslated Region of the Human T-Cell Lymphotropic Virus Type 1 mRNA Enables Cap-Independent Translation Initiation , 2014, Journal of Virology.
[23] G. Getz,et al. Inferring tumour purity and stromal and immune cell admixture from expression data , 2013, Nature Communications.
[24] S. Barrans,et al. Whole genome expression profiling based on paraffin embedded tissue can be used to classify diffuse large B‐cell lymphoma and predict clinical outcome , 2012, British journal of haematology.
[25] M. Birtwistle,et al. Novel Somatic Mutations to PI3K Pathway Genes in Metastatic Melanoma , 2012, PloS one.
[26] M. Lai,et al. Attenuation of 40S Ribosomal Subunit Abundance Differentially Affects Host and HCV Translation and Suppresses HCV Replication , 2012, PLoS pathogens.
[27] Guangchuang Yu,et al. clusterProfiler: an R package for comparing biological themes among gene clusters. , 2012, Omics : a journal of integrative biology.
[28] Wen-Qi Jiang,et al. Beclin 1 expression predicts favorable clinical outcome in patients with diffuse large B-cell lymphoma treated with R-CHOP. , 2011, Human pathology.
[29] P. Codogno,et al. Overview of macroautophagy regulation in mammalian cells , 2010, Cell Research.
[30] E. Di Gennaro,et al. The ribosomal P0 protein induces a spontaneous immune response in patients with head and neck advanced stage carcinoma that is not dependent on its overexpression in carcinomas. , 2007, International journal of oncology.
[31] A. Ng,et al. Diffuse large B-cell lymphoma. , 2007, Seminars in radiation oncology.
[32] S. Barta,et al. 2021 Update on Diffuse large B cell lymphoma: A review of current data and potential applications on risk stratification and management , 2021, American Journal of Hematology.