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Sunali Mehta

Showing results (21-30 of 34) with videos related to

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Scientific Reports|October 2, 2020
Silencing of Testin expression is a frequent event in spontaneous lymphomas from Trp53-mutant miceRobert J Weeks, Jackie L Ludgate, Gwenn Le Mée, et al.
Scientific Reports|May 10, 2017
Tumor protein 53 mutations are enriched in diffuse large B-cell lymphoma with irregular CD19 marker expressionMarina Kazantseva, Noelyn A Hung, Sunali Mehta, et al.
Frontiers in Oncology|November 1, 2021
Chemical Synthesis of the PAX Protein Inhibitor EG1 and Its Ability to Slow the Growth of Human Colorectal Carcinoma CellsLorissa McDougall, Jui Thiang Brian Kueh, Jake Ward, et al.
The Journal of Pathology|June 12, 2018
Elevation of the TP53 isoform Δ133p53β in glioblastomas: an alternative to mutant p53 in promoting tumor developmentMarina Kazantseva, Ramona A Eiholzer, Sunali Mehta, et al.
Carcinogenesis|August 29, 2025
Δ133p53 isoform enhances TLR4 function to promote tumour growthSasini Polwatta Lekamlage, Alexandra N Boix De Jesus, Adriana Machado Saraiva, et al.
Arthritis Research & Therapy|April 14, 2023
Activated CD90/Thy-1 fibroblasts co-express the Δ133p53β isoform and are associated with highly inflamed rheumatoid arthritisAnna K Wiles, Sunali Mehta, Melanie Millier, et al.
Nature Communications|September 16, 2021
Δ133p53β isoform pro-invasive activity is regulated through an aggregation-dependent mechanism in cancer cellsNikola Arsic, Tania Slatter, Gilles Gadea, et al.
Cancers|February 5, 2020
Dephosphorylation of YB-1 is Required for Nuclear Localisation During G<sub>2</sub> Phase of the Cell CycleSunali Mehta, Cushla McKinney, Michael Algie, et al.
International Journal of Molecular Sciences|January 21, 2023
Increased Expression of the Δ133p53β Isoform Enhances Brain MetastasisAlexandra N Boix De Jesus, Ahmad Taha, David Wang, et al.
Nature Communications|January 19, 2018
∆133p53 isoform promotes tumour invasion and metastasis via interleukin-6 activation of JAK-STAT and RhoA-ROCK signallingHamish Campbell, Nicholas Fleming, Imogen Roth, et al.
Pageof 4

Showing results (21-30 of 34) with videos related to

Sort By:
Pageof 4
Scientific Reports|October 2, 2020
Silencing of Testin expression is a frequent event in spontaneous lymphomas from Trp53-mutant miceRobert J Weeks, Jackie L Ludgate, Gwenn Le Mée, et al.
Scientific Reports|May 10, 2017
Tumor protein 53 mutations are enriched in diffuse large B-cell lymphoma with irregular CD19 marker expressionMarina Kazantseva, Noelyn A Hung, Sunali Mehta, et al.
Frontiers in Oncology|November 1, 2021
Chemical Synthesis of the PAX Protein Inhibitor EG1 and Its Ability to Slow the Growth of Human Colorectal Carcinoma CellsLorissa McDougall, Jui Thiang Brian Kueh, Jake Ward, et al.
The Journal of Pathology|June 12, 2018
Elevation of the TP53 isoform Δ133p53β in glioblastomas: an alternative to mutant p53 in promoting tumor developmentMarina Kazantseva, Ramona A Eiholzer, Sunali Mehta, et al.
Carcinogenesis|August 29, 2025
Δ133p53 isoform enhances TLR4 function to promote tumour growthSasini Polwatta Lekamlage, Alexandra N Boix De Jesus, Adriana Machado Saraiva, et al.
Arthritis Research & Therapy|April 14, 2023
Activated CD90/Thy-1 fibroblasts co-express the Δ133p53β isoform and are associated with highly inflamed rheumatoid arthritisAnna K Wiles, Sunali Mehta, Melanie Millier, et al.
Nature Communications|September 16, 2021
Δ133p53β isoform pro-invasive activity is regulated through an aggregation-dependent mechanism in cancer cellsNikola Arsic, Tania Slatter, Gilles Gadea, et al.
Cancers|February 5, 2020
Dephosphorylation of YB-1 is Required for Nuclear Localisation During G<sub>2</sub> Phase of the Cell CycleSunali Mehta, Cushla McKinney, Michael Algie, et al.
International Journal of Molecular Sciences|January 21, 2023
Increased Expression of the Δ133p53β Isoform Enhances Brain MetastasisAlexandra N Boix De Jesus, Ahmad Taha, David Wang, et al.
Nature Communications|January 19, 2018
∆133p53 isoform promotes tumour invasion and metastasis via interleukin-6 activation of JAK-STAT and RhoA-ROCK signallingHamish Campbell, Nicholas Fleming, Imogen Roth, et al.
Pageof 4