251 results on '"Bhasin, Manoj K."'
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2. Pediatric T-cell acute lymphoblastic leukemia blast signature and MRD associated immune environment changes defined by single cell transcriptomics analysis
3. Cellular and immunometabolic mechanisms of inflammation in depression: Preliminary findings from single cell RNA sequencing and a tribute to Bruce McEwen
4. Effect of indoximod-based chemo-immunotherapy in patients with pediatric brain tumors on activation and clonal proliferation of a circulating population of early non-exhausted stem-like CD8+ T cells whose on-treatment expansion is predictive of long-term outcome.
5. Early Injury Landscape in Vein Harvest by Single-Cell and Spatial Transcriptomics
6. Detecting Microbial Dysbiosis Associated with Pediatric Crohn Disease Despite the High Variability of the Gut Microbiota
7. Comprehensive Genomic Profiling of High-Risk Pediatric Cancer Patients Has a Measurable Impact on Clinical Care
8. The Simple prEservatioN of Single cElls method for cryopreservation enables the generation of single-cell immune profiles from whole blood
9. Integrated single-nuclei and spatial transcriptomic analysis reveals propagation of early acute vein harvest and distension injury signaling pathways following arterial implantation
10. Indoximod-based chemo-immunotherapy for pediatric brain tumors: a first-in-children phase 1 trial
11. Taxane chemotherapy induces stromal injury that leads to breast cancer dormancy escape
12. Mitochondrial Dysfunction in Atrial Tissue of Patients Developing Postoperative Atrial Fibrillation
13. DCUN1D1 Is an Essential Regulator of Prostate Cancer Proliferation and Tumour Growth That Acts through Neddylation of Cullin 1, 3, 4A and 5 and Deregulation of Wnt/Catenin Pathway
14. Evidence for a role of the histone deacetylase SIRT6 in DNA damage response of multiple myeloma cells
15. Leukocyte Transcriptional Response in Sepsis
16. Systems Biology Approach to Identify Novel Genomic Determinants for Pancreatic Cancer Pathogenesis
17. Supplementary Table TS1 from Comprehensive Characterization of the Multiple Myeloma Immune Microenvironment Using Integrated scRNA-seq, CyTOF, and CITE-seq Analysis
18. Supplementary Figure FS2 from Comprehensive Characterization of the Multiple Myeloma Immune Microenvironment Using Integrated scRNA-seq, CyTOF, and CITE-seq Analysis
19. Data from Comprehensive Characterization of the Multiple Myeloma Immune Microenvironment Using Integrated scRNA-seq, CyTOF, and CITE-seq Analysis
20. Supplementary Figure 3 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
21. Supplementary Figure 7 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
22. Supplementary Figure 5 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
23. Supplementary Figure 6 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
24. Supplementary Figure 8 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
25. Supplementary Table 1 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
26. Supplementary Figure Legends from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
27. Data from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
28. Supplementary Figure 2 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
29. Supplementary Figure 9 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
30. Supplementary Figure 1 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
31. Supplementary Figure 4 from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
32. Supplementary Methods from Computational Repositioning and Preclinical Validation of Pentamidine for Renal Cell Cancer
33. Data from Autocrine Canonical Wnt Signaling Primes Noncanonical Signaling through ROR1 in Metastatic Castration-Resistant Prostate Cancer
34. Supplementary Data from Autocrine Canonical Wnt Signaling Primes Noncanonical Signaling through ROR1 in Metastatic Castration-Resistant Prostate Cancer
35. Supplementary Figure from Autocrine Canonical Wnt Signaling Primes Noncanonical Signaling through ROR1 in Metastatic Castration-Resistant Prostate Cancer
36. MSC-Regulated MicroRNAs Converge on the Transcription Factor FOXP2 and Promote Breast Cancer Metastasis
37. HIV-1 Infection Impairs Regulatory T-Cell Suppressive Capacity on a Per-Cell Basis
38. Determination of system level alterations in host transcriptome due to Zika virus (ZIKV) Infection in retinal pigment epithelium
39. PGC1[alpha] drives NAD biosynthesis linking oxidative metabolism to renal protection
40. Comprehensive Characterization of the Multiple Myeloma Immune Microenvironment Using Integrated scRNA-seq, CyTOF, and CITE-seq Analysis
41. Single Cell RNA Sequencing Driven Characterization of Pediatric Mixed Phenotype Acute Leukemia
42. 485-P: DFUCare Deep-Learning–Based Mobile App for Diabetic Foot Ulcer Monitoring
43. P236. Immunometabolic Signatures in Monocytes Are Associated with Anhedonia in Depressed Patients with High Inflammation
44. Autocrine Canonical Wnt Signaling Primes Noncanonical Signaling through ROR1 in Metastatic Castration-Resistant Prostate Cancer
45. Upregulation of Inflammatory Gene Transcripts in Periosteum of Chronic Migraineurs: Implications for Extracranial Origin of Headache
46. COVID-19 and Type 2 Diabetes Mellitus: HCQ may be the Holy Grail
47. A Transcriptomics-Based Meta-Analysis Combined With Machine Learning Identifies a Secretory Biomarker Panel for Diagnosis of Pancreatic Adenocarcinoma
48. TFEB-driven lysosomal biogenesis is pivotal for PGC1α-dependent renal stress resistance
49. A transcriptomics-based meta-analysis combined with machine learning approach identifies a secretory biomarker panel for diagnosis of pancreatic adenocarcinoma
50. TFEB-driven lysosomal biogenesis is pivotal for PGC1α-dependent renal stress resistance
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