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Pornima Phatak

Showing results (1-10 of 18) with videos related to

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Bio-Protocol|September 20, 2021
Biotinylated Micro-RNA Pull Down Assay for Identifying miRNA TargetsPornima Phatak, James M Donahue
Journal of Medicinal Chemistry|January 5, 2008
Inhibition of adenosine deaminase by analogues of adenosine and inosine, incorporating a common heterocyclic base, 4(7)-amino-6(5)H-imidazo[4,5-d]pyridazin-7(4)oneRavi K Ujjinamatada, Pornima Phatak, Angelika M Burger, et al.
DNA Repair|May 1, 2012
RECQ1 plays a distinct role in cellular response to oxidative DNA damageSudha Sharma, Pornima Phatak, Alexei Stortchevoi, et al.
Cancers|October 14, 2023
MiR-199a-5p Decreases Esophageal Cancer Cell Proliferation Partially through Repression of Jun-BPornima Phatak, Mohan E Tulapurkar, Whitney M Burrows, et al.
Journal of Medicinal Chemistry|February 18, 2005
Mechanism of cytotoxicity of copper(I) complexes of 1,2-bis(diphenylphosphino)ethaneNusrat J Sanghamitra, Pornima Phatak, Sanjeev Das, et al.
Journal of the Neurological Sciences|September 12, 2008
Cerebrospinal fluid evidence of increased extra-mitochondrial glucose metabolism implicates mitochondrial dysfunction in multiple sclerosis disease progressionWilliam T Regenold, Pornima Phatak, Michael J Makley, et al.
Cancer Genomics & Proteomics|September 20, 2007
Cancer stem cells and individualized therapySaranya Chumsri, Pornima Phatak, Martin J Edelman, et al.
BMC Cancer|December 5, 2022
MiR-214-3p targets Ras-related protein 14 (RAB14) to inhibit cellular migration and invasion in esophageal Cancer cellsPornima Phatak, Whitney M Burrows, Timothy Michael Creed, et al.
Molecular Carcinogenesis|December 31, 2020
MicroRNA-141-3p regulates cellular proliferation, migration, and invasion in esophageal cancer by targeting tuberous sclerosis complex 1Pornima Phatak, Michael Noe, Kaushal Asrani, et al.
Biological Psychiatry|December 24, 2008
Elevated cerebrospinal fluid lactate concentrations in patients with bipolar disorder and schizophrenia: implications for the mitochondrial dysfunction hypothesisWilliam T Regenold, Pornima Phatak, Christopher M Marano, et al.
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
Bio-Protocol|September 20, 2021
Biotinylated Micro-RNA Pull Down Assay for Identifying miRNA TargetsPornima Phatak, James M Donahue
Journal of Medicinal Chemistry|January 5, 2008
Inhibition of adenosine deaminase by analogues of adenosine and inosine, incorporating a common heterocyclic base, 4(7)-amino-6(5)H-imidazo[4,5-d]pyridazin-7(4)oneRavi K Ujjinamatada, Pornima Phatak, Angelika M Burger, et al.
DNA Repair|May 1, 2012
RECQ1 plays a distinct role in cellular response to oxidative DNA damageSudha Sharma, Pornima Phatak, Alexei Stortchevoi, et al.
Cancers|October 14, 2023
MiR-199a-5p Decreases Esophageal Cancer Cell Proliferation Partially through Repression of Jun-BPornima Phatak, Mohan E Tulapurkar, Whitney M Burrows, et al.
Journal of Medicinal Chemistry|February 18, 2005
Mechanism of cytotoxicity of copper(I) complexes of 1,2-bis(diphenylphosphino)ethaneNusrat J Sanghamitra, Pornima Phatak, Sanjeev Das, et al.
Journal of the Neurological Sciences|September 12, 2008
Cerebrospinal fluid evidence of increased extra-mitochondrial glucose metabolism implicates mitochondrial dysfunction in multiple sclerosis disease progressionWilliam T Regenold, Pornima Phatak, Michael J Makley, et al.
Cancer Genomics & Proteomics|September 20, 2007
Cancer stem cells and individualized therapySaranya Chumsri, Pornima Phatak, Martin J Edelman, et al.
BMC Cancer|December 5, 2022
MiR-214-3p targets Ras-related protein 14 (RAB14) to inhibit cellular migration and invasion in esophageal Cancer cellsPornima Phatak, Whitney M Burrows, Timothy Michael Creed, et al.
Molecular Carcinogenesis|December 31, 2020
MicroRNA-141-3p regulates cellular proliferation, migration, and invasion in esophageal cancer by targeting tuberous sclerosis complex 1Pornima Phatak, Michael Noe, Kaushal Asrani, et al.
Biological Psychiatry|December 24, 2008
Elevated cerebrospinal fluid lactate concentrations in patients with bipolar disorder and schizophrenia: implications for the mitochondrial dysfunction hypothesisWilliam T Regenold, Pornima Phatak, Christopher M Marano, et al.
Pageof 2