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Molecular and Cellular Biochemistry|January 3, 2020
Chemosensory bitter taste receptors T2R4 and T2R14 activation attenuates proliferation and migration of breast cancer cellsNisha Singh, Feroz Ahmed Shaik, Yvonne Myal, et al.Molecular Genetics and Genomics : MGG|April 17, 2025
Genetic dissection of total protein content, phenolic content and seed quality traits in pigeonpea (Cajanus cajan) using 62K pigeonpea genic SNP chipMegha Ujinwal, Nisha Singh, Sapna Langyan, et al.Aquatic Toxicology (Amsterdam, Netherlands)|January 31, 2024
Toxic effects of polystyrene nanoplastics and polycyclic aromatic hydrocarbons (chrysene and fluoranthene) on the growth and physiological characteristics of Chlamydomonas reinhardtiiGopi Narayanan, Mohmmed Talib, Nisha Singh, et al.The Journal of Biological Chemistry|August 20, 2011
Structural basis of activation of bitter taste receptor T2R1 and comparison with Class A G-protein-coupled receptors (GPCRs)Nisha Singh, Sai Prasad Pydi, Jasbir Upadhyaya, et al.Biochimica Et Biophysica Acta|April 11, 2015
The structure-function role of C-terminus in human bitter taste receptor T2R4 signalingJasbir Upadhyaya, Nisha Singh, Rajinder P Bhullar, et al.Journal of Diabetes and Metabolic Disorders|May 31, 2023
Association between serum interleukin-6, leptin and insulin in gestational diabetes mellitus - a cross- sectional studyNeha Srivastava, Kalpana Singh, Nisha Singh, et al.RSC Advances|May 6, 2022
Novel synthesis of a clay supported amorphous aluminum nanocomposite and its application in removal of hexavalent chromium from aqueous solutionsNitin Khandelwal, Nisha Singh, Ekta Tiwari, et al.Biochemical and Biophysical Research Communications|March 12, 2014
Differential expression of bitter taste receptors in non-cancerous breast epithelial and breast cancer cellsNisha Singh, Raja Chakraborty, Rajinder Pal Bhullar, et al.Microbiome|June 23, 2017
The development of lower respiratory tract microbiome in miceNisha Singh, Asheema Vats, Aditi Sharma, et al.British Journal of Haematology|August 27, 2010
The novel Hsp-90 inhibitor SNX7081 is significantly more potent than 17-AAG against primary CLL cells and a range of haematological cell lines, irrespective of lesions in the TP53 pathwayO Giles Best, Nisha Singh, Cecily Forsyth, et al.Pageof 28