668 results on '"Bhat, Ajaz A."'
Search Results
52. Sarwālī (Celosia cristata): Medicinal Importance in Perspective of Unani Medicine and Pharmacological Studies
53. Extracellular vesicles as tools and targets in therapy for diseases
54. Crafting developed methods and modern approach in govt. schools as private schools does
55. Sanguinarine Triggers Apoptosis in Cutaneous Squamous Cell Carcinoma Cells through Reactive Oxygen Species-Dependent c-Jun N-Terminal Kinase Signaling Pathway
56. Beyond Viral Infections: The Multifaceted Roles of Human Papillomavirus and Epstein-Barr Virus in Shaping the Tumor Microenvironment
57. Epigenetic modifications: Key players in cancer heterogeneity and drug resistance
58. Functional In Vivo Imaging of Tumors
59. Recent Advances in Head and Neck Tumor Microenvironment–Based Therapy
60. Role of NAD+ in regulating cellular and metabolic signaling pathways
61. CAR-T-Cell Therapy in Multiple Myeloma: B-Cell Maturation Antigen (BCMA) and Beyond
62. Review of: "Targeting Cancer Cell Signaling Using Precision Oncology Towards a Holistic Approach to Cancer Therapeutics"
63. Formal theories clarify the complex: Generalizing a neural process account of the interaction of visual exploration and word learning in infancy
64. Neosetophomone B induces apoptosis in multiple myeloma cells via targeting of AKT/SKP2 signaling pathway
65. Obesity-Associated Non-T2 Mechanisms in Obese Asthmatic Individuals
66. Cytokine-chemokine network driven metastasis in esophageal cancer; promising avenue for targeted therapy
67. Tumor microenvironment: an evil nexus promoting aggressive head and neck squamous cell carcinoma and avenue for targeted therapy
68. Correction: Tumor microenvironment: an evil nexus promoting aggressive head and neck squamous cell carcinoma and avenue for targeted therapy
69. Ubiquitin-specific peptidase 37: an important cog in the oncogenic machinery of cancerous cells
70. Muscleless motor synergies and actions without movements: From motor neuroscience to cognitive robotics
71. Impact of GST on FMCG Sector in India
72. Learning with a network of competing synapses
73. The dynamics of competitive learning: the role of updates and memory
74. Genetic variations influence brain changes in patients with attention-deficit hyperactivity disorder
75. Neosetophomone B induces apoptosis in multiple myeloma cells via targeting of AKT/SKP2 signaling pathway.
76. Sanguinarine triggers apoptosis in cutaneous squamous cell carcinoma cells through ROS-dependent JNK-kinase signaling
77. Joint Goal Human Robot collaboration-From Remembering to Inferring
78. Exposure of Barrett’s and esophageal adenocarcinoma cells to bile acids activates EGFR–STAT3 signaling axis via induction of APE1
79. Genetics of structural and functional brain changes in autism spectrum disorder
80. Non-invasive biomarkers for monitoring the immunotherapeutic response to cancer
81. Role of non-coding RNA networks in leukemia progression, metastasis and drug resistance
82. Correction to: Role of non-coding RNA networks in leukemia progression, metastasis and drug resistance
83. The Odd Lindley Power Rayleigh Distribution: Properties and Bayesian Estimation with Applications
84. Abstract 335: Ubiquitin Specific Peptidase 37promotes Osteosarcoma oncogenesis by interacting with PCNA and impacting constitutive replication fork movement.
85. Oncogenic role of dysregulated leptin signaling in the pathogenesis of ovarian cancer
86. Contributors
87. Nonenzymatic Posttranslational Protein Modifications: Mechanism and Associated Disease Pathologies
88. Long non-coding RNAs modulate tumor microenvironment to promote metastasis: novel avenue for therapeutic intervention
89. How iCub Learns to Imitate Use of a Tool Quickly by Recycling the Past Knowledge Learnt During Drawing
90. Goal-Directed Reasoning and Cooperation in Robots in Shared Workspaces: an Internal Simulation Based Neural Framework
91. Data from APE1 Upregulates MMP-14 via Redox-Sensitive ARF6-Mediated Recycling to Promote Cell Invasion of Esophageal Adenocarcinoma
92. Supplementary Tables 1, 2, 4, 6, 9 - 12 from Proteogenomic Analysis Reveals Unanticipated Adaptations of Colorectal Tumor Cells to Deficiencies in DNA Mismatch Repair
93. Supplementary Table 8 from Proteogenomic Analysis Reveals Unanticipated Adaptations of Colorectal Tumor Cells to Deficiencies in DNA Mismatch Repair
94. Supplementary Table 7 from Proteogenomic Analysis Reveals Unanticipated Adaptations of Colorectal Tumor Cells to Deficiencies in DNA Mismatch Repair
95. Data from Proteogenomic Analysis Reveals Unanticipated Adaptations of Colorectal Tumor Cells to Deficiencies in DNA Mismatch Repair
96. Supplementary Figures 1 - 2 from Proteogenomic Analysis Reveals Unanticipated Adaptations of Colorectal Tumor Cells to Deficiencies in DNA Mismatch Repair
97. Supplementary Table 3 from Proteogenomic Analysis Reveals Unanticipated Adaptations of Colorectal Tumor Cells to Deficiencies in DNA Mismatch Repair
98. Supplementary Table 5 from Proteogenomic Analysis Reveals Unanticipated Adaptations of Colorectal Tumor Cells to Deficiencies in DNA Mismatch Repair
99. PRANAV-POWER SERIES DISTRIBUTION: PROPERTIES AND APPLICATIONS TO SURVIVAL AND WAITING TIME DATA
100. Chromium Toxicity in Plants: Signaling, Mitigation, and Future Perspectives
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