1974, ISBN 0801646596, xviii, 573
Book
Physiological Reviews, ISSN 0031-9333, 01/2009, Volume 89, Issue 1, pp. 193 - 277
The ability to control cell volume is pivotal for cell function. Cell volume perturbation elicits a wide array of signaling events, leading to protective...
GROWTH-FACTOR RECEPTOR | OSMOTIC RESPONSE ELEMENT | CYTOSOLIC PHOSPHOLIPASE A | PHYSIOLOGY | ACTIVATED PROTEIN-KINASE | ASCITES TUMOR-CELLS | SENSITIVE CHLORIDE CURRENT | K-CL COTRANSPORT | FOCAL ADHESION KINASE | THICK ASCENDING LIMB | P38 MAP KINASE | Animals | Cell Proliferation | Cell Death - physiology | Osmosis - physiology | Humans | Vertebrates - physiology | Cell Size | Signal Transduction - physiology | Cell Movement - physiology | Lipid membranes | Analysis | Osmosis | Chemical properties | Potassium channels | Genetic regulation | Structure | Phosphotransferases | Protein binding
GROWTH-FACTOR RECEPTOR | OSMOTIC RESPONSE ELEMENT | CYTOSOLIC PHOSPHOLIPASE A | PHYSIOLOGY | ACTIVATED PROTEIN-KINASE | ASCITES TUMOR-CELLS | SENSITIVE CHLORIDE CURRENT | K-CL COTRANSPORT | FOCAL ADHESION KINASE | THICK ASCENDING LIMB | P38 MAP KINASE | Animals | Cell Proliferation | Cell Death - physiology | Osmosis - physiology | Humans | Vertebrates - physiology | Cell Size | Signal Transduction - physiology | Cell Movement - physiology | Lipid membranes | Analysis | Osmosis | Chemical properties | Potassium channels | Genetic regulation | Structure | Phosphotransferases | Protein binding
Journal Article
Plant, Cell & Environment, ISSN 0140-7791, 01/2014, Volume 37, Issue 1, pp. 153 - 161
Despite decades of research on plant drought tolerance, the physiological mechanisms by which trees succumb to drought are still under debate. We report...
hydraulic conductance | xylem | phloem | non‐structural carbohydrates | forest mortality | cavitation | Forest mortality | Phloem | Xylem | Cavitation | Non-structural carbohydrates | Hydraulic conductance | MORTALITY | EMBOLISM | MECHANISMS | MODEL | PLANT SCIENCES | FORESTS | TRANSPORT | INCREASE | non-structural carbohydrates | CHANGE-TYPE DROUGHT | Trees | Carbohydrates - physiology | Pinus - physiology | Plant Transpiration - physiology | Xylem - physiology | Osmosis | Time Factors | Droughts | Carbon - deficiency | Cell Respiration - physiology | Photosynthesis - physiology | Carbohydrates - analysis | Phloem - physiology | Water - physiology | Starvation | Original
hydraulic conductance | xylem | phloem | non‐structural carbohydrates | forest mortality | cavitation | Forest mortality | Phloem | Xylem | Cavitation | Non-structural carbohydrates | Hydraulic conductance | MORTALITY | EMBOLISM | MECHANISMS | MODEL | PLANT SCIENCES | FORESTS | TRANSPORT | INCREASE | non-structural carbohydrates | CHANGE-TYPE DROUGHT | Trees | Carbohydrates - physiology | Pinus - physiology | Plant Transpiration - physiology | Xylem - physiology | Osmosis | Time Factors | Droughts | Carbon - deficiency | Cell Respiration - physiology | Photosynthesis - physiology | Carbohydrates - analysis | Phloem - physiology | Water - physiology | Starvation | Original
Journal Article
The New England Journal of Medicine, ISSN 0028-4793, 07/2015, Volume 373, Issue 2, pp. 196 - 196
To the Editor: In their review article on water balance, Knepper et al. (April 2 issue) 1 discuss water channels (aquaporins) in renal tubular cells. They omit...
MEDICINE, GENERAL & INTERNAL | TRANSPORT | AQUAPORIN-1 | Arginine Vasopressin - physiology | Water-Electrolyte Balance - physiology | Animals | Humans | Sodium-Potassium-Chloride Symporters - physiology | Kidneys | Aquaporins | Homeostasis | Osmosis | Microvasculature | Water balance | Capillaries | Peritoneal dialysis | Blood flow | Endothelium | Peritoneum
MEDICINE, GENERAL & INTERNAL | TRANSPORT | AQUAPORIN-1 | Arginine Vasopressin - physiology | Water-Electrolyte Balance - physiology | Animals | Humans | Sodium-Potassium-Chloride Symporters - physiology | Kidneys | Aquaporins | Homeostasis | Osmosis | Microvasculature | Water balance | Capillaries | Peritoneal dialysis | Blood flow | Endothelium | Peritoneum
Journal Article
1949, New series of plant science books, Volume 21., xxi, 240
Water | Plantes | Botanique | Absorption of water | Physiologie | Absorption de l'eau | Botany | Eau | Osmosis | Physiology | Plants | Osmose
Book
1949, Chronica botanica. A new series of plant science, Volume 21., 240
Book
1949, New Series of Plant Science Books, Volume no. 21., xxi, 240
Book
1949, New Series of Plant Science Books, Volume no. 21., xxi, 240
Book
1949, Chronica botanica; new series of plant science books, v. 21, Volume no. 21, 240
Book
Molecular Microbiology, ISSN 0950-382X, 10/2010, Volume 78, Issue 1, pp. 13 - 34
Summary Increases in the environmental osmolarity are key determinants for the growth of microorganisms. To ensure a physiologically acceptable level of...
LIGAND-BINDING | SINORHIZOBIUM-MELILOTI | UPTAKE SYSTEM | BACILLUS-SUBTILIS | BIOCHEMISTRY & MOLECULAR BIOLOGY | ESCHERICHIA-COLI | MICROBIOLOGY | CHOLINE TRANSPORTER | COMPATIBLE SOLUTE HYDROXYECTOINE | GLYCINE BETAINE TRANSPORT | BINDING PROTEIN OPUAC | CORYNEBACTERIUM-GLUTAMICUM | Carrier Proteins - physiology | Protein Structure, Tertiary | Bacteria - metabolism | Multigene Family | Signal Transduction | Antiporters - chemistry | Bacterial Proteins - chemistry | Substrate Specificity | Osmosis | Structure-Activity Relationship | Escherichia coli Proteins - physiology | Bacterial Proteins - physiology | Biological Transport, Active | Symporters | Carrier Proteins - chemistry | Antiporters - physiology | Escherichia coli Proteins - chemistry | Gene Expression Regulation, Bacterial | Physiological aspects | Levocarnitine | Glycine | Structure | Crystals | Membrane proteins
LIGAND-BINDING | SINORHIZOBIUM-MELILOTI | UPTAKE SYSTEM | BACILLUS-SUBTILIS | BIOCHEMISTRY & MOLECULAR BIOLOGY | ESCHERICHIA-COLI | MICROBIOLOGY | CHOLINE TRANSPORTER | COMPATIBLE SOLUTE HYDROXYECTOINE | GLYCINE BETAINE TRANSPORT | BINDING PROTEIN OPUAC | CORYNEBACTERIUM-GLUTAMICUM | Carrier Proteins - physiology | Protein Structure, Tertiary | Bacteria - metabolism | Multigene Family | Signal Transduction | Antiporters - chemistry | Bacterial Proteins - chemistry | Substrate Specificity | Osmosis | Structure-Activity Relationship | Escherichia coli Proteins - physiology | Bacterial Proteins - physiology | Biological Transport, Active | Symporters | Carrier Proteins - chemistry | Antiporters - physiology | Escherichia coli Proteins - chemistry | Gene Expression Regulation, Bacterial | Physiological aspects | Levocarnitine | Glycine | Structure | Crystals | Membrane proteins
Journal Article
Chest, ISSN 0012-3692, 09/2001, Volume 120, Issue 3, pp. 989 - 1002
Vasopressin is emerging as a rational therapy for the hemodynamic support of septic shock and vasodilatory shock due to systemic inflammatory response...
hypotension | adrenergic agents | septic shock | systemic inflammatory response syndrome | vasoconstrictor agents | vasopressins | vasodilation | antidiuretic hormone | Antidiuretic hormone | Systemic inflammatory response syndrome | Adrenergic agents | Septic shock | Vasoconstrictor agents | Hypotension | Vasodilation | Vasopressins | PULMONARY-ARTERY | BLOOD-PRESSURE REGULATION | VASODILATORY SHOCK | CONSCIOUS DOGS | ARGININE-VASOPRESSIN | RESPIRATORY SYSTEM | NITRIC-OXIDE | ORTHOSTATIC HYPOTENSION | LOW-DOSE VASOPRESSIN | HEART-RATE | BODY NEGATIVE-PRESSURE | CRITICAL CARE MEDICINE | Kidney - physiology | Vasopressins - therapeutic use | Systemic Inflammatory Response Syndrome - physiopathology | Humans | Shock, Septic - physiopathology | Vasopressins - blood | Vasoconstriction - physiology | Animals | Osmosis - physiology | Shock, Hemorrhagic - physiopathology | Shock, Septic - drug therapy | Vasodilation - physiology | Vasopressins - physiology | Systemic Inflammatory Response Syndrome - drug therapy | Physiological aspects | Vasopressin
hypotension | adrenergic agents | septic shock | systemic inflammatory response syndrome | vasoconstrictor agents | vasopressins | vasodilation | antidiuretic hormone | Antidiuretic hormone | Systemic inflammatory response syndrome | Adrenergic agents | Septic shock | Vasoconstrictor agents | Hypotension | Vasodilation | Vasopressins | PULMONARY-ARTERY | BLOOD-PRESSURE REGULATION | VASODILATORY SHOCK | CONSCIOUS DOGS | ARGININE-VASOPRESSIN | RESPIRATORY SYSTEM | NITRIC-OXIDE | ORTHOSTATIC HYPOTENSION | LOW-DOSE VASOPRESSIN | HEART-RATE | BODY NEGATIVE-PRESSURE | CRITICAL CARE MEDICINE | Kidney - physiology | Vasopressins - therapeutic use | Systemic Inflammatory Response Syndrome - physiopathology | Humans | Shock, Septic - physiopathology | Vasopressins - blood | Vasoconstriction - physiology | Animals | Osmosis - physiology | Shock, Hemorrhagic - physiopathology | Shock, Septic - drug therapy | Vasodilation - physiology | Vasopressins - physiology | Systemic Inflammatory Response Syndrome - drug therapy | Physiological aspects | Vasopressin
Journal Article
Mycorrhiza, ISSN 0940-6360, 1/2013, Volume 23, Issue 1, pp. 71 - 86
The study unveils that inoculation with arbuscular mycorrhizal fungus (Glomus intraradices Schenck and Smith) prevents salt-induced ultrastructural alterations...
Life Sciences | Mitochondria | Microbiology | Forestry | Plasma membrane | Ecology | Agriculture | Alpha-tocopherol | Plant Sciences | Chloroplast | Osmolytes | Salinity | ROOT-CELLS | CHLOROPLAST ULTRASTRUCTURE | ARBUSCULAR MYCORRHIZAL FUNGI | EXOGENOUS POLYAMINES | PLASMA-MEMBRANE | MERISTEMATIC CELLS | STRUCTURAL-CHANGES | WATER-STRESS | ANTIOXIDANT ENZYME-ACTIVITIES | OXIDATIVE STRESSES | MYCOLOGY | Salts | Sodium Chloride - pharmacology | Stress, Physiological | Mycorrhizae - physiology | Osmosis | Cell Membrane - physiology | Cell Wall - physiology | Mitochondria - ultrastructure | Cell Nucleus - physiology | Glomeromycota - drug effects | Plant Roots - ultrastructure | Plant Roots - drug effects | Plant Roots - physiology | Trigonella - physiology | Cell Wall - drug effects | Glomeromycota - ultrastructure | Mesophyll Cells - physiology | Chloroplasts - physiology | Mesophyll Cells - drug effects | Plant Leaves - drug effects | Mesophyll Cells - ultrastructure | alpha-Tocopherol - metabolism | Cell Wall - ultrastructure | Chloroplasts - drug effects | Cell Membrane - drug effects | Carbohydrates | Microscopy, Electron, Transmission | Chloroplasts - ultrastructure | Trigonella - ultrastructure | Glomeromycota - physiology | Carbohydrate Metabolism | Trigonella - drug effects | Cell Membrane - ultrastructure | Mitochondria - drug effects | Cell Nucleus - ultrastructure | Plant Roots - microbiology | Mycorrhizae - drug effects | Mycorrhizae - ultrastructure | Polyamines - metabolism | Cell Nucleus - drug effects | Mitochondria - physiology | Plant Leaves - physiology | Plant Leaves - ultrastructure | Tocopherols | Mitochondrial DNA | Polyamines | Transmission electron microscopes | Analysis | Index Medicus
Life Sciences | Mitochondria | Microbiology | Forestry | Plasma membrane | Ecology | Agriculture | Alpha-tocopherol | Plant Sciences | Chloroplast | Osmolytes | Salinity | ROOT-CELLS | CHLOROPLAST ULTRASTRUCTURE | ARBUSCULAR MYCORRHIZAL FUNGI | EXOGENOUS POLYAMINES | PLASMA-MEMBRANE | MERISTEMATIC CELLS | STRUCTURAL-CHANGES | WATER-STRESS | ANTIOXIDANT ENZYME-ACTIVITIES | OXIDATIVE STRESSES | MYCOLOGY | Salts | Sodium Chloride - pharmacology | Stress, Physiological | Mycorrhizae - physiology | Osmosis | Cell Membrane - physiology | Cell Wall - physiology | Mitochondria - ultrastructure | Cell Nucleus - physiology | Glomeromycota - drug effects | Plant Roots - ultrastructure | Plant Roots - drug effects | Plant Roots - physiology | Trigonella - physiology | Cell Wall - drug effects | Glomeromycota - ultrastructure | Mesophyll Cells - physiology | Chloroplasts - physiology | Mesophyll Cells - drug effects | Plant Leaves - drug effects | Mesophyll Cells - ultrastructure | alpha-Tocopherol - metabolism | Cell Wall - ultrastructure | Chloroplasts - drug effects | Cell Membrane - drug effects | Carbohydrates | Microscopy, Electron, Transmission | Chloroplasts - ultrastructure | Trigonella - ultrastructure | Glomeromycota - physiology | Carbohydrate Metabolism | Trigonella - drug effects | Cell Membrane - ultrastructure | Mitochondria - drug effects | Cell Nucleus - ultrastructure | Plant Roots - microbiology | Mycorrhizae - drug effects | Mycorrhizae - ultrastructure | Polyamines - metabolism | Cell Nucleus - drug effects | Mitochondria - physiology | Plant Leaves - physiology | Plant Leaves - ultrastructure | Tocopherols | Mitochondrial DNA | Polyamines | Transmission electron microscopes | Analysis | Index Medicus
Journal Article
2009, Oxford animal biology series, ISBN 0198569955, 179
Water is fundamental to life and all metabolic reactions are influenced by the aqueous environment in which they occur. Osmoregulation and water balance are...
Osmoregulation | Biology, life sciences | Water | Membranes | Marine | Osmotic regulation | Ion transport | Terrestrial | Osmosis | Solutes | Freshwater
Osmoregulation | Biology, life sciences | Water | Membranes | Marine | Osmotic regulation | Ion transport | Terrestrial | Osmosis | Solutes | Freshwater
eBook
Medical Hypotheses, ISSN 0306-9877, 12/2015, Volume 85, Issue 6, pp. 944 - 946
Alzheimer's disease is a disease that is resulted from increased plasma osmolality both the excessive consumption of animal-based proteins and reduction of...
MEDICINE, RESEARCH & EXPERIMENTAL | AMYLOID PRECURSOR PROTEIN | BETA | Models, Theoretical | Alzheimer Disease - physiopathology | Cell Survival | Humans | Mice, Inbred C57BL | Ubiquitin - metabolism | tau Proteins - metabolism | Male | Osmosis | Sodium - blood | Amyloid Precursor Protein Secretases - metabolism | Animals | Osmolar Concentration | Dietary Proteins | Aspartic Acid Endopeptidases - metabolism | Amyloid beta-Protein Precursor - metabolism | Female | Mice | Neurons - metabolism | Proteasome Endopeptidase Complex - metabolism | Ubiquitin | Physiological aspects | Alzheimer's disease | Index Medicus
MEDICINE, RESEARCH & EXPERIMENTAL | AMYLOID PRECURSOR PROTEIN | BETA | Models, Theoretical | Alzheimer Disease - physiopathology | Cell Survival | Humans | Mice, Inbred C57BL | Ubiquitin - metabolism | tau Proteins - metabolism | Male | Osmosis | Sodium - blood | Amyloid Precursor Protein Secretases - metabolism | Animals | Osmolar Concentration | Dietary Proteins | Aspartic Acid Endopeptidases - metabolism | Amyloid beta-Protein Precursor - metabolism | Female | Mice | Neurons - metabolism | Proteasome Endopeptidase Complex - metabolism | Ubiquitin | Physiological aspects | Alzheimer's disease | Index Medicus
Journal Article