Nickel-assisted selective detection of histidine and histidine-rich proteins via an ON-OFF-ON fluorescent probe and its imaging in live cells
暂无分享,去创建一个
Ramakrishna Vadrevu | M. Dixit | Priti Singh | A. Bhattacharya | Ashutosh Mahale | O. Kulkarni | Anamika Bandyopadhyay | Adarash Kumar Shukla | Shivkumar Sharma Irukuvajjula
[1] Ke Li,et al. Turn-on fluorescence probe for BSA detection and selective cell imaging , 2022, Dyes and Pigments.
[2] Pei Jia,et al. On-off-on fluorescent sensor for glutathione based on bifunctional vanadium oxide quantum dots induced spontaneous formation of MnO2 nanosheets , 2021, Microchimica Acta.
[3] P. Yi,et al. Metabolism of Amino Acids in Cancer , 2021, Frontiers in Cell and Developmental Biology.
[4] E. New,et al. Small molecule optical sensors for nickel: The quest for a universal nickel receptor , 2020, Coordination Chemistry Reviews.
[5] Minna Li,et al. A red-emitting luminescent probe for sequentially detecting Cu2+ and cysteine/histidine in aqueous solution and its imaging application in living zebrafish , 2020 .
[6] A. Thalacker-Mercer,et al. Benefits and Adverse Effects of Histidine Supplementation. , 2020, The Journal of nutrition.
[7] Yongling Xu,et al. A fluorescent probe based on Ir(III) solvent complex for specific recognition of histidine in aqueous solution and the application in cell imaging , 2020 .
[8] M. Brosnan,et al. Histidine Metabolism and Function. , 2020, The Journal of nutrition.
[9] S. Rayalu,et al. Detection of nickel by chemo and fluoro sensing technologies. , 2020, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[10] B. Gerber,et al. SARS-CoV-2 causes a specific dysfunction of the kidney proximal tubule , 2020, Kidney International.
[11] Xin A. Zhang,et al. Decreased serum albumin level indicates poor prognosis of COVID-19 patients: hepatic injury analysis from 2,623 hospitalized cases , 2020, Science China Life Sciences.
[12] Jiaofeng Huang,et al. Hypoalbuminemia predicts the outcome of COVID‐19 independent of age and co‐morbidity , 2020, Journal of medical virology.
[13] D. Japrung,et al. Exploring how structural and dynamic properties of bovine and canine serum albumins differ from human serum albumin. , 2020, Journal of molecular graphics & modelling.
[14] M. Holeček. Histidine in Health and Disease: Metabolism, Physiological Importance, and Use as a Supplement , 2020, Nutrients.
[15] Jong Seok Lee,et al. Development of Human Serum Albumin Selective Fluorescent Probe Using Thieno[3,2-b]pyridine-5(4H)-one Fluorophore Derivatives , 2019, Sensors.
[16] C. Zheng,et al. Hypoalbuminemia differently affects the serum bone turnover markers in hemodialysis patients , 2019, International journal of medical sciences.
[17] S. M. Basheer,et al. Colorimetric and fluorescent sensors for the detection of Co(II), Ni(II) and Cu(II) in aqueous methanol solution , 2019, Research on Chemical Intermediates.
[18] A. Tantawy,et al. Arginine, histidine and tryptophan: A new hope for cancer immunotherapy , 2019, PharmaNutrition.
[19] J. Krakoff,et al. Reduced plasma albumin predicts type 2 diabetes and is associated with greater adipose tissue macrophage content and activation , 2019, Diabetology & Metabolic Syndrome.
[20] Jihee Park,et al. Colloidal Fluorophore Aggregates for the Selective Detection of Albumins in Solution and on Electrophoresis Gels , 2019, Chembiochem : a European journal of chemical biology.
[21] Xiaoying Wang,et al. Covalent affixation of histidine-tagged proteins tethered onto Ni-nitrilotriacetic acid sensors for enhanced surface plasmon resonance detection of small molecule drugs and kinetic studies of antibody/antigen interactions. , 2019, The Analyst.
[22] M. Dixit,et al. Structure–Activity Relationships in Alkane Dehydrogenation on γ-Al2O3: Site-Dependent Reactions , 2018, ACS Catalysis.
[23] N. L. Koh,et al. Protective Role of Histidine Supplementation Against Oxidative Stress Damage in the Management of Anemia of Chronic Kidney Disease , 2018, Pharmaceuticals.
[24] I. Shimon,et al. Low Albumin Levels Are Associated with Mortality Risk in Hospitalized Patients. , 2017, The American journal of medicine.
[25] M. Sabzalian,et al. An experimental and theoretical study on the interaction of DNA and BSA with novel Ni2+, Cu2+ and VO2+ complexes derived from vanillin bidentate Schiff base ligand. , 2017, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[26] E. Çelik,et al. Highly selective magnetic affinity purification of histidine-tagged proteins by Ni2+ carrying monodisperse composite microspheres , 2017 .
[27] M. Kiran,et al. A simple chalcone based ratiometric chemosensor for sensitive and selective detection of Nickel ion and its imaging in live cells , 2017 .
[28] Q. Wei,et al. DNA binding, BSA interaction and SOD activity of two new nickel(II) complexes with glutamine Schiff base ligands. , 2016, Journal of photochemistry and photobiology. B, Biology.
[29] David G Levitt,et al. Human serum albumin homeostasis: a new look at the roles of synthesis, catabolism, renal and gastrointestinal excretion, and the clinical value of serum albumin measurements , 2016, International journal of general medicine.
[30] D. Bhattacharyya,et al. Structure dependent hydrophobic and hydrophilic interactions between nickel(II) Schiff base complexes and serum albumins: Spectroscopic and docking studies , 2016 .
[31] Honglin Li,et al. Rational design of a highly selective fluorescent sensor for L-histidine detection in aqueous solution. , 2016, Dalton transactions.
[32] Liang Zhao,et al. A highly selective and sensitive ON-OFF-ON fluorescence chemosensor for cysteine detection in endoplasmic reticulum. , 2015, Biosensors & bioelectronics.
[33] Song Gao,et al. Structural phase transition in a multi-induced mononuclear Fe(II) spin-crossover complex. , 2015, Dalton transactions.
[34] Yu-Dong Zhou,et al. Histidine provides long-term neuroprotection after cerebral ischemia through promoting astrocyte migration , 2015, Scientific Reports.
[35] Yufang Xu,et al. Highly selective "Off-On" fluorescent probe for histidine and its imaging in living cells. , 2015, Biosensors & bioelectronics.
[36] Hio‐Ieng Un,et al. A naphthalimide-based fluorescent probe for highly selective detection of histidine in aqueous solution and its application in in vivo imaging. , 2015, Chemical communications.
[37] N. Ohte,et al. Urinary Albumin as a Marker of Future Blood Pressure and Hypertension in the General Population , 2015, Medicine.
[38] Anil Kumar,et al. Synthesis of 5,7-diarylpyrazolo[1,5-a]pyrimidines via KOH mediated tandem reaction of 1H-pyrazol-3-amines and chalcones , 2015 .
[39] L. Huo,et al. Human α‐amino‐β‐carboxymuconate‐ε‐semialdehyde decarboxylase (ACMSD): A structural and mechanistic unveiling , 2015, Proteins.
[40] V. Tortorella,et al. Histamine Poisoning from Ingestion of Fish or Scombroid Syndrome , 2014, Case reports in emergency medicine.
[41] K. Leung,et al. A coumarin-based fluorescent probe for recognition of Cu(2+) and fast detection of histidine in hard-to-transfect cells by a sensing ensemble approach. , 2014, Chemical communications.
[42] S. Goswami,et al. A simple quinoxaline-based highly sensitive colorimetric and ratiometric sensor, selective for nickel and effective in very high dilution , 2013 .
[43] A. Samanta,et al. Structural transformation of bovine serum albumin induced by dimethyl sulfoxide and probed by fluorescence correlation spectroscopy and additional methods. , 2013, Chemphyschem : a European journal of chemical physics and physical chemistry.
[44] Longhua Guo,et al. A fluorescent probe for detection of histidine in cellular homogenate and ovalbumin based on the strategy of click chemistry. , 2013, Biosensors & bioelectronics.
[45] Q. Du,et al. The multiple roles of histidine in protein interactions , 2013, Chemistry Central Journal.
[46] Xiaoqiang Chen,et al. An iminofluorescein-Cu2+ ensemble probe for selective detection of thiols , 2013 .
[47] C. P. Rao,et al. A Zn2+ specific triazole based calix[4]arene conjugate (L) as a fluorescence sensor for histidine and cysteine in HEPES buffer milieu. , 2012, The Analyst.
[48] Xiu‐Ping Yan,et al. An indicator-displacement assay for naked-eye detection and quantification of histidine in human urine. , 2012, The Analyst.
[49] Jiao Du,et al. A simple and efficient fluorescent sensor for histidine. , 2012, Chemical communications.
[50] Heather F. Crouse,et al. Quenching of tryptophan fluorescence in various proteins by a series of small nickel complexes. , 2012, Dalton transactions.
[51] Xiaoya Liu,et al. A novel highly selective colorimetric sensor for Ni(II) ion using coumarin derivatives , 2012 .
[52] G. Ramakrishna,et al. A ‘turn-on’ fluorescent sensor for the selective detection of cobalt and nickel ions in aqueous media , 2011 .
[53] Donald G. Truhlar,et al. Improving the Accuracy of Hybrid Meta-GGA Density Functionals by Range Separation , 2011 .
[54] G. Shen,et al. Unimolecular catalytic DNA biosensor for amplified detection of L-histidine via an enzymatic recycling cleavage strategy. , 2011, Analytical chemistry.
[55] Yuqing Wu,et al. The switch-on luminescence sensing of histidine-rich proteins in solution: a further application of a Cu2+ ligand. , 2011, Organic & biomolecular chemistry.
[56] Jong Seung Kim,et al. An iminocoumarin-Cu(II) ensemble-based chemodosimeter toward thiols. , 2011, Chemical communications.
[57] P. Stenvinkel,et al. Consequences of low plasma histidine in chronic kidney disease patients: associations with inflammation, oxidative stress, and mortality. , 2008, The American journal of clinical nutrition.
[58] Dik‐Lung Ma,et al. A highly selective luminescent switch-on probe for histidine/histidine-rich proteins and its application in protein staining. , 2008, Angewandte Chemie.
[59] M. Mattson,et al. Neuroprotective actions of a histidine analogue in models of ischemic stroke , 2007, Journal of neurochemistry.
[60] B. Kermani,et al. Retention of histidine-containing peptides on a nickel affinity column. , 2007, Journal of Chromatographic Science.
[61] C. E. Giacomelli,et al. The binding of Ni(II) ions to hexahistidine as a model system of the interaction between nickel and His-tagged proteins. , 2006, Journal of inorganic biochemistry.
[62] Giovanni Scalmani,et al. Energies, structures, and electronic properties of molecules in solution with the C‐PCM solvation model , 2003, J. Comput. Chem..
[63] N. Marcotte,et al. Designing the selectivity of the fluorescent detection of amino acids: a chemosensing ensemble for histidine. , 2003, Journal of the American Chemical Society.
[64] J. Cooperman,et al. The Role of Histidine in the Anemia of Folate Deficiency , 2002, Experimental biology and medicine.
[65] G. Park,et al. The role of albumin in critical illness. , 2000, British journal of anaesthesia.
[66] J. Huang,et al. The novel behaviour of interactions between Ni2+ ion and human or bovine serum albumin. , 1994, Biochemical Journal.
[67] J. H. Viles,et al. Involvement of a lysine residue in the N-terminal Ni2+ and Cu2+ binding site of serum albumins. Comparison with Co2+, Cd2+ and Al3+. , 1994, European journal of biochemistry.
[68] G. Watts,et al. Microalbuminuria in Diabetes Mellitus: Review and Recommendations for the Measurement of Albumin in Urine , 1990, Annals of clinical biochemistry.
[69] J. RebekJr.. On the structure of histidine and its role in enzyme active sites , 1990 .
[70] Krishnan Raghavachari,et al. Highly correlated systems. Ionization energies of first row transition metals Sc–Zn , 1989 .
[71] H. Keen,et al. MICROALBUMINURIA AS A PREDICTOR OF CLINICAL NEPHROPATHY IN INSULIN-DEPENDENT DIABETES MELLITUS , 1982, The Lancet.
[72] M. S. Rao. A Study of the Interaction of Nickel(II) with Bovine Serum Albumin , 1962 .