Temperature changes in brown adipocytes detected with a bimaterial microcantilever.
暂无分享,去创建一个
Fumihito Arai | Takahito Ono | Hisataka Maruyama | Naoki Inomata | Masaya Toda | Akihiko Ishijima | F. Arai | H. Maruyama | T. Ono | Masaaki Sato | M. Toda | Y. Inoue | A. Ishijima | N. Inomata | Y. Okamatsu-Ogura | Yuichi Inoue | Masaaki K Sato | Yuko Okamatsu-Ogura
[1] Satoshi Arai,et al. A nanoparticle-based ratiometric and self-calibrated fluorescent thermometer for single living cells. , 2014, ACS nano.
[2] S. Yoshida,et al. Cationic fluorescent polymeric thermometers with the ability to enter yeast and mammalian cells for practical intracellular temperature measurements. , 2013, Analytical chemistry.
[3] Takahito Ono,et al. Pico calorimeter for detection of heat produced in an individual brown fat cell , 2012 .
[4] S. Arai,et al. Walking nanothermometers: spatiotemporal temperature measurement of transported acidic organelles in single living cells. , 2012, Lab on a chip.
[5] Y. Harada,et al. Intracellular temperature mapping with a fluorescent polymeric thermometer and fluorescence lifetime imaging microscopy , 2012, Nature Communications.
[6] Liwei Lin,et al. Quantum dot nano thermometers reveal heterogeneous local thermogenesis in living cells. , 2011, ACS nano.
[7] Takahito Ono,et al. Evaluation of bimaterial cantilever beam for heat sensing at atmospheric pressure. , 2010, The Review of scientific instruments.
[8] Y. Harada,et al. Hydrophilic fluorescent nanogel thermometer for intracellular thermometry. , 2009, Journal of the American Chemical Society.
[9] C. Gerber,et al. Micromechanical sensor for studying heats of surface reactions, adsorption, and cluster deposition processes. , 2007, The Review of scientific instruments.
[10] Kotaro Oyama,et al. Microscopic detection of thermogenesis in a single HeLa cell. , 2007, Biophysical journal.
[11] M. Saito,et al. Indispensable role of mitochondrial UCP1 for antiobesity effect of beta3-adrenergic stimulation. , 2006, American journal of physiology. Endocrinology and metabolism.
[12] T. Horvath,et al. Mitochondrial uncoupling proteins in the cns: in support of function and survival , 2005, Nature Reviews Neuroscience.
[13] M. Saito,et al. Uncoupling protein 1 is necessary for norepinephrine-induced glucose utilization in brown adipose tissue. , 2005, Diabetes.
[14] A. Howe. Regulation of actin-based cell migration by cAMP/PKA. , 2004, Biochimica et biophysica acta.
[15] Panos G. Datskos,et al. Performance of uncooled microcantilever thermal detectors , 2004, SPIE MOEMS-MEMS.
[16] Eric Bourillot,et al. Effects of temperature and pressure on microcantilever resonance response. , 2003, Ultramicroscopy.
[17] B. Cannon,et al. Analysis of inhibition by H89 of UCP1 gene expression and thermogenesis indicates protein kinase A mediation of beta(3)-adrenergic signalling rather than beta(3)-adrenoceptor antagonism by H89. , 2001, Biochimica et biophysica acta.
[18] B. Cannon,et al. Thermogenic Responses in Brown Fat Cells Are Fully UCP1-dependent , 2000, The Journal of Biological Chemistry.
[19] T. Horvath,et al. Brain Uncoupling Protein 2: Uncoupled Neuronal Mitochondria Predict Thermal Synapses in Homeostatic Centers , 1999, The Journal of Neuroscience.
[20] Arun Majumdar,et al. Photothermal measurements at picowatt resolution using uncooled micro-optomechanical sensors , 1997 .
[21] H. Nakazawa,et al. Regulation of heat production of brown adipocytes via typical and atypical beta-adrenoceptors in the rat. , 1995, The Japanese journal of physiology.
[22] James K. Gimzewski,et al. A femtojoule calorimeter using micromechanical sensors , 1994 .
[23] M. Klingenberg,et al. Effect of fatty acids on H+ transport activity of the reconstituted uncoupling protein. , 1994, The Journal of biological chemistry.
[24] J. E. Silva,et al. Full expression of uncoupling protein gene requires the concurrence of norepinephrine and triiodothyronine. , 1988, Molecular endocrinology.
[25] D. Clark,et al. Microcalorimetric measurements of heat production in brown adipocytes from control and cafeteria-fed rats. , 1986, The Biochemical journal.
[26] D. Nicholls,et al. Brown-adipose-tissue mitochondria: the regulation of the 32000-Mr uncoupling protein by fatty acids and purine nucleotides. , 1983, European journal of biochemistry.
[27] O. Lindberg,et al. Microcalorimetry of isolated mammalian cells , 1977, Nature.
[28] A KEYS,et al. Density of body fat in man and other mammals. , 1953, Journal of applied physiology.
[29] Leonard A. Maynard,et al. The Atwater System of Calculating the Caloric Value of Diets , 1944 .
[30] M. Hashimoto,et al. Increased thermogenic capacity of brown adipose tissue under low temperature and its contribution to arousal from hibernation in Syrian hamsters. , 2012, American journal of physiology. Regulatory, integrative and comparative physiology.
[31] J. Knudsen,et al. Parallel measurements of heat production and thermogenin content in brown fat cells during cold acclimation of rats , 1986, Bioscience reports.