Publications

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Listed below are the Publications supported by Technology platforms at C-CAMP / Bangalore Life Science Cluster.

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2018
Solari KA, Ramakrishnan U, Hadly EA.  2018.  Gene expression is implicated in the ability of pikas to occupy Himalayan elevational gradient. [Next Gen Genomics Facility (INT)]. PLoS One. 13(12):e0207936.
Surendran H, Rathod RJ, Pal R.  2018.  Generation of Transplantable Retinal Pigmented Epithelial (RPE) Cells for Treatment of Age-Related Macular Degeneration (AMD). [Eyestem, a C-CAMP Startup]. Methods Mol Biol.
Ramesh D, Brockmann A.  2018.  Mass Spectrometric Quantification of Arousal Associated Neurochemical Changes in Single Honey Bee Brains and Brain Regions. [Mass Spectrometry Facility - Metabolomics (INT)]. ACS Chem Neurosci.
Thottacherry JJose, Kosmalska AJoanna, Kumar A, Vishen ASingh, Elosegui-Artola A, Pradhan S, Sharma S, Singh PP, Guadamillas MC, Chaudhary N et al..  2018.  Mechanochemical feedback control of dynamin independent endocytosis modulates membrane tension in adherent cells. [Microfluidics and Microfabrication Facility (INT)]. Nat Commun. 9(1):4217.
Thottacherry JJose, Kosmalska AJoanna, Kumar A, Vishen ASingh, Elosegui-Artola A, Pradhan S, Sharma S, Singh PP, Guadamillas MC, Chaudhary N et al..  2018.  Mechanochemical feedback control of dynamin independent endocytosis modulates membrane tension in adherent cells. [Microfluidics and Microfabrication Facility (INT)]. Nat Commun. 9(1):4217.
P SHameed, Bharatham N, Katagihallimath N, Sharma S, Nandishaiah R, Shanbhag AP, Thomas T, Narjari R, Sarma M, Bhowmik P et al..  2018.  Nitrothiophene carboxamides, a novel narrow spectrum antibacterial series: Mechanism of action and Efficacy [Bugworks Res. Pvt. Ltd., a C-CAMP Startup]. Sci Rep. 8(1):7263.
P SHameed, Bharatham N, Katagihallimath N, Sharma S, Nandishaiah R, Shanbhag AP, Thomas T, Narjari R, Sarma M, Bhowmik P et al..  2018.  Nitrothiophene carboxamides, a novel narrow spectrum antibacterial series: Mechanism of action and Efficacy [Bugworks Res. Pvt. Ltd., a C-CAMP Startup]. Sci Rep. 8(1):7263.
Gautam V, Shafiq N, Mouton JW, Malhotra S, Kaur S, Ray P.  2018.  Pharmacokinetics of colistin in patients with multidrug-resistant Gram-negative infections: A pilot study [Mass Spectrometry - Metabolomics Facility].. Indian J Med Res. 147(4):407-412.
Rangiah K, Palakodeti D.  2018.  Quantification of Neurotransmitters from Intact and Regenerating Planarians Using UHPLC-MS/SRM Method. [Mass Spectrometry - Metabolomics Facility (INT)]. Methods Mol Biol. 1774:555-570.
Divyashree BC, Roy SC.  2018.  Species-specific and differential expression of BSP-5 and other BSP variants in normozoospermic and asthenozoospermic buffalo (Bubalus bubalis) and cattle (Bos taurus) seminal plasma. [Mass Spectrometry Facility - Proteomics]. Theriogenology. 106:279-286.
Haq SF, Shanbhag AP, Karthikeyan S, Hassan I, Thanukrishnan K, Ashok A, Sukumaran S, Ramaswamy S, Bharatham N, Datta S et al..  2018.  A strategy to identify a ketoreductase that preferentially synthesizes pharmaceutically relevant (S)-alcohols using whole-cell biotransformation [Bugworks Res. Pvt. Ltd., a C-CAMP Startup]. Microb Cell Fact. 17(1):192.
Walvekar A, Rashida Z, Maddali H, Laxman S.  2018.  A versatile LC-MS/MS approach for comprehensive, quantitative analysis of central metabolic pathways. [Mass Spectrometry - Lipidomics & Metabolomics (INT)]. Wellcome Open Res. 3:122.
2017
Khandelwal R, Sipani R, Rajan SGovinda, Kumar R, Joshi R.  2017.  Combinatorial action of Grainyhead, Extradenticle and Notch in regulating Hox mediated apoptosis in Drosophila larval CNS.. PLoS Genet. 13(10):e1007043.
Somashekar L, Selvaraju S, Parthipan S, Patil SK, Binsila BK, Venkataswamy MM, S Bhat K, Ravindra JP.  2017.  Comparative sperm protein profiling in bulls differing in fertility and identification of phosphatidylethanolamine-binding protein 4, a potential fertility marker [Mass Spectrometry - Proteomics]. Andrology. 5(5):1032-1051.
Velmurugan G, Ramprasath T, Swaminathan K, Mithieux G, Rajendhran J, Dhivakar M, Parthasarathy A, Babu DDVenkates, Thumburaj LJohn, Freddy AJ et al..  2017.  Gut microbial degradation of organophosphate insecticides-induces glucose intolerance via gluconeogenesis. [Next Generation Genomics facility]. Genome Biol. 18(1):8.
Velmurugan G, Ramprasath T, Swaminathan K, Mithieux G, Rajendhran J, Dhivakar M, Parthasarathy A, Babu DDVenkates, Thumburaj LJohn, Freddy AJ et al..  2017.  Gut microbial degradation of organophosphate insecticides-induces glucose intolerance via gluconeogenesis. [Next Generation Genomics facility]. Genome Biol. 18(1):8.
Velmurugan G, Ramprasath T, Swaminathan K, Mithieux G, Rajendhran J, Dhivakar M, Parthasarathy A, Babu DDVenkates, Thumburaj LJohn, Freddy AJ et al..  2017.  Gut microbial degradation of organophosphate insecticides-induces glucose intolerance via gluconeogenesis. [Next Generation Genomics facility]. Genome Biol. 18(1):8.
Velmurugan G, Ramprasath T, Swaminathan K, Mithieux G, Rajendhran J, Dhivakar M, Parthasarathy A, Babu DDVenkates, Thumburaj LJohn, Freddy AJ et al..  2017.  Gut microbial degradation of organophosphate insecticides-induces glucose intolerance via gluconeogenesis. [Next Generation Genomics facility]. Genome Biol. 18(1):8.
Velmurugan G, Ramprasath T, Swaminathan K, Mithieux G, Rajendhran J, Dhivakar M, Parthasarathy A, Babu DDVenkates, Thumburaj LJohn, Freddy AJ et al..  2017.  Gut microbial degradation of organophosphate insecticides-induces glucose intolerance via gluconeogenesis. [Next Generation Genomics facility]. Genome Biol. 18(1):8.

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