1968, A Series of books in biology, 436
Book
1982, Materials sciens and technology, ISBN 0127473807, xvi, 595
Book
Kidney International, ISSN 0085-2538, 06/1991, Volume 39, Issue 6, pp. 1283 - 1298
ANION-EXCHANGE PROTEIN | BAND 3-LIKE PROTEIN | COLLECTING DUCT | RAT-KIDNEY | HUMAN-ERYTHROCYTE MEMBRANE | URINARY-EXCRETION | UROLOGY & NEPHROLOGY | CONTRALUMINAL SULFATE TRANSPORT | RED-BLOOD-CELL | INTERCALATED CELLS | STONE-FORMING SUBJECTS | Kidney Calculi - etiology | Oxalic Acid | Humans | Hyperparathyroidism - complications | Male | Parathyroidectomy | Kidney Calculi - metabolism | Calcium Oxalate - metabolism | Oxalates - metabolism | Oxalates - urine | Biological Transport | Adult | Hyperparathyroidism - surgery
Journal Article
AJP - Renal Physiology, ISSN 0363-6127, 09/1991, Volume 261, Issue 3, pp. 365 - F376
H. Purcell, B. Bastani, K. P. Harris, P. Hemken, S. Klahr and S. Gluck Department of Medicine, Washington University School of Medicine, St. Louis, Missouri....
IMMUNOCYTOCHEMISTRY | LOCALIZATION | DUCT | PHYSIOLOGY | BAND-3 | ACIDIFICATION DEFECT | URINARY TRACT OBSTRUCTION | URINARY ACIDIFICATION | EXPERIMENTAL-MODELS | TRANSPORT | VACUOLAR HYDROGEN-ACTIVATED ADENOSINE-TRIPHOSPHATASE | BOVINE KIDNEY | K UM PHYSIOLOGY | INTERCALATED CELLS | RENAL TUBULAR-ACIDOSIS | COLLECTING TUBULES | Vacuoles - enzymology | Kidney Medulla - enzymology | Kidney - enzymology | Rats | Kidney Cortex - pathology | Rats, Inbred Strains | Ureteral Obstruction - physiopathology | Proton-Translocating ATPases - metabolism | Animals | Time Factors | Ureteral Obstruction - pathology | Female | Kidney Medulla - pathology | Kidney Cortex - enzymology | Ureteral Obstruction - enzymology | Disease Models, Animal | Hydrogen-Ion Concentration | Urinary acidification | Intercalated cells | Urinary tract obstruction | Immunocytochemistry | Vacuolar hydrogen-activated adenosinetriphosphatase
IMMUNOCYTOCHEMISTRY | LOCALIZATION | DUCT | PHYSIOLOGY | BAND-3 | ACIDIFICATION DEFECT | URINARY TRACT OBSTRUCTION | URINARY ACIDIFICATION | EXPERIMENTAL-MODELS | TRANSPORT | VACUOLAR HYDROGEN-ACTIVATED ADENOSINE-TRIPHOSPHATASE | BOVINE KIDNEY | K UM PHYSIOLOGY | INTERCALATED CELLS | RENAL TUBULAR-ACIDOSIS | COLLECTING TUBULES | Vacuoles - enzymology | Kidney Medulla - enzymology | Kidney - enzymology | Rats | Kidney Cortex - pathology | Rats, Inbred Strains | Ureteral Obstruction - physiopathology | Proton-Translocating ATPases - metabolism | Animals | Time Factors | Ureteral Obstruction - pathology | Female | Kidney Medulla - pathology | Kidney Cortex - enzymology | Ureteral Obstruction - enzymology | Disease Models, Animal | Hydrogen-Ion Concentration | Urinary acidification | Intercalated cells | Urinary tract obstruction | Immunocytochemistry | Vacuolar hydrogen-activated adenosinetriphosphatase
Journal Article
5.
Structural and functional features of proton and bicarbonate transport in the rat collecting duct
Seminars in Nephrology, ISSN 0270-9295, 1991, Volume 11, Issue 4, pp. 465 - 477
POTASSIUM-DEPLETION | ETHYLMALEIMIDE-SENSITIVE ATPASE | CARBONIC-ANHYDRASE | CHRONIC METABOLIC-ACIDOSIS | DISTAL NEPHRON SEGMENTS | UROLOGY & NEPHROLOGY | ACUTE RESPIRATORY-ACIDOSIS | INTERCALATED CELLS | ADENOSINE-TRIPHOSPHATASE | URINARY ACIDIFICATION | TURTLE BLADDER | Protons | Animals | Kidney Tubules, Collecting - physiology | Kidney Tubules, Collecting - ultrastructure | Bicarbonates - metabolism | Rats | Acid-Base Equilibrium - physiology | Biological Transport - physiology | Microscopy, Electron | Hydrogen-Ion Concentration
Journal Article
The American Journal of the Medical Sciences, ISSN 0002-9629, 02/1992, Volume 303, Issue 2, pp. 134 - 139
Osteoclasts dissolve bone mineral by the vectorial secretion of hydrogen ion at their osseous attachment site. To accomplish this, the osteoclast employs a...
Osteoclasts | Hydrogen ion-transporting cells | OSTEOCLASTS | RAT-KIDNEY | MEMBRANE | H+ATPASE | URINARY ACIDIFICATION | VACUOLAR H+-ATPASE | BONE-RESORPTION | MEDICINE, GENERAL & INTERNAL | COLLECTING DUCT | BRUSH-BORDER | BOVINE KIDNEY | HYDROGEN ION-TRANSPORTING CELLS | INTERCALATED CELLS | Protons | Cell Membrane - enzymology | Cytoplasm - enzymology | Vacuoles - enzymology | Kidney - metabolism | Proton-Translocating ATPases - physiology | Animals | Epithelium - metabolism | Humans | Proton-Translocating ATPases - analysis | Osteoclasts - metabolism
Osteoclasts | Hydrogen ion-transporting cells | OSTEOCLASTS | RAT-KIDNEY | MEMBRANE | H+ATPASE | URINARY ACIDIFICATION | VACUOLAR H+-ATPASE | BONE-RESORPTION | MEDICINE, GENERAL & INTERNAL | COLLECTING DUCT | BRUSH-BORDER | BOVINE KIDNEY | HYDROGEN ION-TRANSPORTING CELLS | INTERCALATED CELLS | Protons | Cell Membrane - enzymology | Cytoplasm - enzymology | Vacuoles - enzymology | Kidney - metabolism | Proton-Translocating ATPases - physiology | Animals | Epithelium - metabolism | Humans | Proton-Translocating ATPases - analysis | Osteoclasts - metabolism
Journal Article
The Journal of experimental biology, ISSN 0022-0949, 1992, Volume 172, pp. 231 - 243
The membrane-associated V-ATPase that plays an important role in the regulation of acid-base balance by the kidney is a multisubunit enzyme that is densely...
PROTON PUMPS | IMMUNOCYTOCHEMISTRY | LUMINAL MEMBRANE | MICROTUBULES | RAT-KIDNEY | VACUOLAR H+-ATPASE | MEDULLARY COLLECTING DUCT | COLLECTING DUCT | BRUSH-BORDER | BOVINE KIDNEY | BIOLOGY | INTERCALATED CELLS | KIDNEY | EXOCYTOTIC INSERTION | TURTLE-BLADDER | BICARBONATE SECRETION | Acid-Base Equilibrium | Animals | Epithelium - enzymology | Kidney - enzymology | Microtubules - enzymology | Adenosine Triphosphatases - metabolism | Adenosine Triphosphatases - chemistry | Protein Conformation | Kidney - cytology | Molecular Structure | Adenosine Triphosphatases - ultrastructure | Vacuolar Proton-Translocating ATPases | Physiological aspects | Kidneys | Research | Epithelial cells | Adenosine triphosphatase
PROTON PUMPS | IMMUNOCYTOCHEMISTRY | LUMINAL MEMBRANE | MICROTUBULES | RAT-KIDNEY | VACUOLAR H+-ATPASE | MEDULLARY COLLECTING DUCT | COLLECTING DUCT | BRUSH-BORDER | BOVINE KIDNEY | BIOLOGY | INTERCALATED CELLS | KIDNEY | EXOCYTOTIC INSERTION | TURTLE-BLADDER | BICARBONATE SECRETION | Acid-Base Equilibrium | Animals | Epithelium - enzymology | Kidney - enzymology | Microtubules - enzymology | Adenosine Triphosphatases - metabolism | Adenosine Triphosphatases - chemistry | Protein Conformation | Kidney - cytology | Molecular Structure | Adenosine Triphosphatases - ultrastructure | Vacuolar Proton-Translocating ATPases | Physiological aspects | Kidneys | Research | Epithelial cells | Adenosine triphosphatase
Journal Article
Kidney International, ISSN 0085-2538, 09/1993, Volume 44, Issue 3, pp. 527 - 536
The ampullary collecting duct epithelium acts as an inductor in the embryonic and neonatal kidney. It induces the formation of all nephron generations and thus...
LECTIN | BAND-3 | RABBIT KIDNEY | UROLOGY & NEPHROLOGY | INTERCALATED CELLS | POSTNATAL-DEVELOPMENT | MONOCLONAL-ANTIBODY | H+-ATPASE | DIFFERENTIATION | PROTEINS | EXPRESSION | Carbonic Anhydrases - genetics | Molecular Sequence Data | Antigens, CD - metabolism | Carbonic Anhydrases - metabolism | Epithelium - immunology | Lectins - metabolism | Plant Lectins | Epithelium - embryology | Keratins - metabolism | Peanut Agglutinin | Animals, Newborn | Amino Acid Sequence | Rabbits | Antigens, CD7 | Microscopy, Electron, Scanning | Kidney Tubules, Collecting - embryology | Epithelium - metabolism | Antigens, Differentiation, T-Lymphocyte - metabolism | Antibodies, Monoclonal | Kidney Tubules, Collecting - immunology | Interleukin-2 - genetics | Kidney Tubules, Collecting - metabolism | Animals | Histocytochemistry | Biomarkers | Arachis
LECTIN | BAND-3 | RABBIT KIDNEY | UROLOGY & NEPHROLOGY | INTERCALATED CELLS | POSTNATAL-DEVELOPMENT | MONOCLONAL-ANTIBODY | H+-ATPASE | DIFFERENTIATION | PROTEINS | EXPRESSION | Carbonic Anhydrases - genetics | Molecular Sequence Data | Antigens, CD - metabolism | Carbonic Anhydrases - metabolism | Epithelium - immunology | Lectins - metabolism | Plant Lectins | Epithelium - embryology | Keratins - metabolism | Peanut Agglutinin | Animals, Newborn | Amino Acid Sequence | Rabbits | Antigens, CD7 | Microscopy, Electron, Scanning | Kidney Tubules, Collecting - embryology | Epithelium - metabolism | Antigens, Differentiation, T-Lymphocyte - metabolism | Antibodies, Monoclonal | Kidney Tubules, Collecting - immunology | Interleukin-2 - genetics | Kidney Tubules, Collecting - metabolism | Animals | Histocytochemistry | Biomarkers | Arachis
Journal Article
Journal of Microscopy, ISSN 0022-2720, 08/1993, Volume 171, Issue 2, pp. 107 - 115
Summary The luminal cell surfaces of rabbit kidney cortical collecting‐duct cells were labelled with peanut lectin (PNA) and investigated by scanning electron...
immunogold | scanning electron microscopy | rabbit kidney | collecting duct | lectin | Cell surface | silver enhancement | Lectin | Scanning electron microscopy | Immunogold | Rabbit kdiney | Silver enhancement | Collecting duct | ANTIBODIES | IMMUNOCYTOCHEMISTRY | LOCALIZATION | RABBIT KIDNEY | RAT-KIDNEY | MICROTUBULES | IMMUNOGOLD | ACUTE RESPIRATORY-ACIDOSIS | ANTIGENS | MICROSCOPY | CELL SURFACE | COLLECTING DUCT | LECTIN | SILVER ENHANCEMENT | INTERCALATED CELLS | H+-ATPASE | SCANNING ELECTRON MICROSCOPY | Animals, Newborn | Staining and Labeling - methods | Rabbits | Microscopy, Electron, Scanning | Kidney Tubules, Collecting - ultrastructure | Gold Colloid | Histocytochemistry - methods | Silver Staining | Cells, Cultured | Male | Epithelium - ultrastructure | Animals | Aging | Lectins | Scattering, Radiation | Electrons | Peanut Agglutinin
immunogold | scanning electron microscopy | rabbit kidney | collecting duct | lectin | Cell surface | silver enhancement | Lectin | Scanning electron microscopy | Immunogold | Rabbit kdiney | Silver enhancement | Collecting duct | ANTIBODIES | IMMUNOCYTOCHEMISTRY | LOCALIZATION | RABBIT KIDNEY | RAT-KIDNEY | MICROTUBULES | IMMUNOGOLD | ACUTE RESPIRATORY-ACIDOSIS | ANTIGENS | MICROSCOPY | CELL SURFACE | COLLECTING DUCT | LECTIN | SILVER ENHANCEMENT | INTERCALATED CELLS | H+-ATPASE | SCANNING ELECTRON MICROSCOPY | Animals, Newborn | Staining and Labeling - methods | Rabbits | Microscopy, Electron, Scanning | Kidney Tubules, Collecting - ultrastructure | Gold Colloid | Histocytochemistry - methods | Silver Staining | Cells, Cultured | Male | Epithelium - ultrastructure | Animals | Aging | Lectins | Scattering, Radiation | Electrons | Peanut Agglutinin
Journal Article
AMERICAN JOURNAL OF PATHOLOGY, ISSN 0002-9440, 03/1993, Volume 142, Issue 3, pp. 851 - 859
The clear, chromophilic, and chromophobe types of human renal cell carcinoma have been defined as distinct morphological entities and can be clearly separated...
MORPHOGENESIS | COLLECTING DUCT | INTERMEDIATE FILAMENT PROTEINS | ABNORMALITIES | EPITHELIAL TUMORS | INTERCALATED CELLS | PATHOLOGY | HUMAN-KIDNEY | EXPRESSION | NITROSOMORPHOLINE | SIZED FILAMENTS
MORPHOGENESIS | COLLECTING DUCT | INTERMEDIATE FILAMENT PROTEINS | ABNORMALITIES | EPITHELIAL TUMORS | INTERCALATED CELLS | PATHOLOGY | HUMAN-KIDNEY | EXPRESSION | NITROSOMORPHOLINE | SIZED FILAMENTS
Journal Article
Journal of Clinical Investigation, ISSN 0021-9738, 1994, Volume 93, Issue 1, pp. 417 - 423
The distribution of Na(+)-independent Cl(-)-HCO3- exchange was studied in individual intercalated cells from in vitro perfused rabbit outer CCDs using dual...
anion exchange | intracellular pH | acid-base | confocal microscopy | intercalated cells | Kidney Cortex - cytology | Rabbits | Sodium - pharmacology | Kidney Tubules, Collecting - physiology | Chlorides - pharmacology | Antiporters - metabolism | Male | Cell Membrane - physiology | Kidney Tubules, Collecting - cytology | Animals | Chlorides - metabolism | Bicarbonates - metabolism | Chloride-Bicarbonate Antiporters | Kidney Cortex - physiology | Membrane Proteins - metabolism | Cell Membrane - drug effects | Valinomycin - pharmacology | Hydrogen-Ion Concentration
anion exchange | intracellular pH | acid-base | confocal microscopy | intercalated cells | Kidney Cortex - cytology | Rabbits | Sodium - pharmacology | Kidney Tubules, Collecting - physiology | Chlorides - pharmacology | Antiporters - metabolism | Male | Cell Membrane - physiology | Kidney Tubules, Collecting - cytology | Animals | Chlorides - metabolism | Bicarbonates - metabolism | Chloride-Bicarbonate Antiporters | Kidney Cortex - physiology | Membrane Proteins - metabolism | Cell Membrane - drug effects | Valinomycin - pharmacology | Hydrogen-Ion Concentration
Journal Article
Cell & Tissue Research, ISSN 0302-766X, 1994, Volume 277, Issue 2, pp. 231 - 237
The Madin-Darby canine kidney (MDCK) cell line has been proposed as a model for studying intercalated (IC) cells of the renal cortical collecting duct. The IC...
Peanut lectin | Intercalated cells | Darby canine kidney (MDCK) cells | Carbonic anhydrase | Madin-Darby canine kidney (MDCK) cells | Human erythrocyte band 3 | Renal collecting duct | Collecting duct, renal | Band 3, human erythrocyte | Madin | LOCALIZATION | ANION-EXCHANGER | BAND-3 | CARBONIC ANHYDRASE | RICH CELLS | MEMBRANE-PROTEIN | PEANUT LECTIN | HUMAN-ERYTHROCYTE | COLLECTING DUCT, RENAL | CELL BIOLOGY | EPITHELIAL-CELLS | BAND 3, HUMAN ERYTHROCYTE | LINE | INTERCALATED CELLS | DIFFERENTIATION | MADIN-DARBY CANINE KIDNEY (MDCK) CELLS | Immunohistochemistry | Cell Line | Antiporters - metabolism | Kidney Tubules, Collecting - cytology | Carbonic Anhydrases - metabolism | Kidney Tubules, Collecting - metabolism | Lectins - metabolism | Animals | Anion Exchange Protein 1, Erythrocyte - metabolism | Isoenzymes - metabolism | Chlorides - metabolism | Dogs | Fluorescent Antibody Technique | Bicarbonates - metabolism | Biomarkers | Chloride-Bicarbonate Antiporters | Peanut Agglutinin
Peanut lectin | Intercalated cells | Darby canine kidney (MDCK) cells | Carbonic anhydrase | Madin-Darby canine kidney (MDCK) cells | Human erythrocyte band 3 | Renal collecting duct | Collecting duct, renal | Band 3, human erythrocyte | Madin | LOCALIZATION | ANION-EXCHANGER | BAND-3 | CARBONIC ANHYDRASE | RICH CELLS | MEMBRANE-PROTEIN | PEANUT LECTIN | HUMAN-ERYTHROCYTE | COLLECTING DUCT, RENAL | CELL BIOLOGY | EPITHELIAL-CELLS | BAND 3, HUMAN ERYTHROCYTE | LINE | INTERCALATED CELLS | DIFFERENTIATION | MADIN-DARBY CANINE KIDNEY (MDCK) CELLS | Immunohistochemistry | Cell Line | Antiporters - metabolism | Kidney Tubules, Collecting - cytology | Carbonic Anhydrases - metabolism | Kidney Tubules, Collecting - metabolism | Lectins - metabolism | Animals | Anion Exchange Protein 1, Erythrocyte - metabolism | Isoenzymes - metabolism | Chlorides - metabolism | Dogs | Fluorescent Antibody Technique | Bicarbonates - metabolism | Biomarkers | Chloride-Bicarbonate Antiporters | Peanut Agglutinin
Journal Article
JOURNAL OF CLINICAL INVESTIGATION, ISSN 0021-9738, 01/1994, Volume 93, Issue 1, pp. 417 - 423
The distribution of Na+-independent Cl-HCO3- exchange was studied in individual intercalated cells from in vitro perfused rabbit outer CCDs using dual...
DISTAL NEPHRON | MEDICINE, RESEARCH & EXPERIMENTAL | CONFOCAL MICROSCOPY | SUBPOPULATIONS | ACID | INTRACELLULAR PH | TUBULE | ANION EXCHANGE | HETEROGENEITY | TRANSPORT | ALKALI LOADS | ACID-BASE | INTERCALATED CELLS | H+-ATPASE | KIDNEY
DISTAL NEPHRON | MEDICINE, RESEARCH & EXPERIMENTAL | CONFOCAL MICROSCOPY | SUBPOPULATIONS | ACID | INTRACELLULAR PH | TUBULE | ANION EXCHANGE | HETEROGENEITY | TRANSPORT | ALKALI LOADS | ACID-BASE | INTERCALATED CELLS | H+-ATPASE | KIDNEY
Journal Article
Hepatology, ISSN 0270-9139, 06/1994, Volume 19, Issue 6, pp. 1400 - 1406
Sodium‐independent Cl−/HCO3− exchange activity has been observed in isolated rat hepatocytes and intrahepatic bile duct epithelial cells, where it is involved...
KIDNEY COLLECTING DUCT | EPITHELIAL-CELLS | RAT-KIDNEY | BILE-FLOW | INTERCALATED CELLS | INTRACELLULAR PH REGULATION | GASTROENTEROLOGY & HEPATOLOGY | HUMAN-ERYTHROCYTE-MEMBRANE | TRANSPORT PROTEIN | CL-/HCO3 EXCHANGER | BAND-3 PROTEIN | Immunohistochemistry | Amino Acid Sequence | Anion Transport Proteins | Membrane Proteins - genetics | Antiporters - chemistry | Humans | Liver - metabolism | Antiporters - analysis | Molecular Sequence Data | Membrane Proteins - immunology | SLC4A Proteins | Antiporters - immunology | Immunoenzyme Techniques | Liver - chemistry | Membrane Proteins - analysis | Animals | Membrane Proteins - chemistry | Chlorides - metabolism | Antiporters - genetics | Fluorescent Antibody Technique | Bicarbonates - metabolism | Chloride-Bicarbonate Antiporters | Mice | Antibodies, Monoclonal - immunology
KIDNEY COLLECTING DUCT | EPITHELIAL-CELLS | RAT-KIDNEY | BILE-FLOW | INTERCALATED CELLS | INTRACELLULAR PH REGULATION | GASTROENTEROLOGY & HEPATOLOGY | HUMAN-ERYTHROCYTE-MEMBRANE | TRANSPORT PROTEIN | CL-/HCO3 EXCHANGER | BAND-3 PROTEIN | Immunohistochemistry | Amino Acid Sequence | Anion Transport Proteins | Membrane Proteins - genetics | Antiporters - chemistry | Humans | Liver - metabolism | Antiporters - analysis | Molecular Sequence Data | Membrane Proteins - immunology | SLC4A Proteins | Antiporters - immunology | Immunoenzyme Techniques | Liver - chemistry | Membrane Proteins - analysis | Animals | Membrane Proteins - chemistry | Chlorides - metabolism | Antiporters - genetics | Fluorescent Antibody Technique | Bicarbonates - metabolism | Chloride-Bicarbonate Antiporters | Mice | Antibodies, Monoclonal - immunology
Journal Article
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, ISSN 1931-857X, 12/1994, Volume 267, Issue 6, pp. F1045 - F1051
Angiotensin II (ANG II) plays an important role in the regulation of Solute transport in the kidney, and its effect on proximal tubule sodium and fluid...
ANGIOTENSIN AT RECEPTOR | CELLS | LOCALIZATION | PHYSIOLOGY | INTERCALATED CELL | RECEPTOR ANTAGONISTS | MECHANISM | SUBTYPES | HUMAN KIDNEY | HYDROGEN POTASSIUM ADENOSINE-TRIPHOSPHATASE | H-K-ATPASE | UROLOGY & NEPHROLOGY | VACUOLAR PROTON ADENOSINE-TRIPHOSPHATASE | ALDOSTERONE | PROXIMAL BICARBONATE ABSORPTION | TUBULAR TRANSPORT
ANGIOTENSIN AT RECEPTOR | CELLS | LOCALIZATION | PHYSIOLOGY | INTERCALATED CELL | RECEPTOR ANTAGONISTS | MECHANISM | SUBTYPES | HUMAN KIDNEY | HYDROGEN POTASSIUM ADENOSINE-TRIPHOSPHATASE | H-K-ATPASE | UROLOGY & NEPHROLOGY | VACUOLAR PROTON ADENOSINE-TRIPHOSPHATASE | ALDOSTERONE | PROXIMAL BICARBONATE ABSORPTION | TUBULAR TRANSPORT
Journal Article
Pflügers Archiv European Journal of Physiology, ISSN 0031-6768, 09/1994, Volume 428, Issue 2, pp. 157 - 162
Madin-Darby canine kidney (MDCK) cells originate from the renal collecting duct and consist of different cell subtypes. We cloned two MDCK cell subtypes...
Intercalated cells | MDCK cells | Collecting dact | Principle cells | Kidney Tubules, Collecting - drug effects | Membrane Potentials - drug effects | Potassium - metabolism | Cell Line | Epithelium - metabolism | Aldosterone - pharmacology | Epithelial Cells | Sodium - metabolism | Kidney Tubules, Collecting - cytology | Kidney Tubules, Collecting - metabolism | Lectins - metabolism | Animals | Chlorides - metabolism | Dogs | Amiloride - pharmacology | Ion Transport - drug effects | Bucladesine - pharmacology | Clone Cells | Hydrogen-Ion Concentration | Peanut Agglutinin
Intercalated cells | MDCK cells | Collecting dact | Principle cells | Kidney Tubules, Collecting - drug effects | Membrane Potentials - drug effects | Potassium - metabolism | Cell Line | Epithelium - metabolism | Aldosterone - pharmacology | Epithelial Cells | Sodium - metabolism | Kidney Tubules, Collecting - cytology | Kidney Tubules, Collecting - metabolism | Lectins - metabolism | Animals | Chlorides - metabolism | Dogs | Amiloride - pharmacology | Ion Transport - drug effects | Bucladesine - pharmacology | Clone Cells | Hydrogen-Ion Concentration | Peanut Agglutinin
Journal Article
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, ISSN 0031-6768, 09/1994, Volume 428, Issue 2, pp. 157 - 162
Madin-Darby canine kidney (MDCK) cells originate from the renal collecting duct and consist of different cell subtypes. We cloned two MDCK cell subtypes...
MDCK CELLS | PHYSIOLOGY | CANINE KIDNEY-CELLS | MEMBRANE | INTRACELLULAR PH | IDENTIFICATION | CULTURE | MONOLAYERS | TRANSEPITHELIAL TRANSPORT | MEDULLARY COLLECTING DUCT | COLLECTING DUCT | EPITHELIAL-CELLS | PRINCIPLE CELLS | INTERCALATED CELLS | DIFFERENTIATION
MDCK CELLS | PHYSIOLOGY | CANINE KIDNEY-CELLS | MEMBRANE | INTRACELLULAR PH | IDENTIFICATION | CULTURE | MONOLAYERS | TRANSEPITHELIAL TRANSPORT | MEDULLARY COLLECTING DUCT | COLLECTING DUCT | EPITHELIAL-CELLS | PRINCIPLE CELLS | INTERCALATED CELLS | DIFFERENTIATION
Journal Article
Journal of Oral and Maxillofacial Surgery, ISSN 0278-2391, 1995, Volume 53, Issue 4, pp. 476 - 480
Journal Article
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, ISSN 1931-857X, 06/1995, Volume 268, Issue 6, pp. F1070 - F1080
Expression and functional properties of beta-adrenergic receptors (beta-ARs) were studied in rat collecting tubules isolated by microdissection. Reverse...
PHYSIOLOGY | POTASSIUM SECRETION | NEPHRON SEGMENTS | CATECHOLAMINES | BETA-3-ADRENERGIC RECEPTOR | FURA 2 FLUORESCENCE | ISOPROTERENOL | QUANTITATIVE REVERSE TRANSCRIPTION-POLYMERASE CHAIN REACTION | MESSENGER-RNA | RABBIT NEPHRON | BETA-1-ADRENERGIC RECEPTOR | UROLOGY & NEPHROLOGY | ADENYLYL CYCLASE | INTERCALATED CELLS | ADENYLATE-CYCLASE | EXPRESSION | THICK ASCENDING LIMB
PHYSIOLOGY | POTASSIUM SECRETION | NEPHRON SEGMENTS | CATECHOLAMINES | BETA-3-ADRENERGIC RECEPTOR | FURA 2 FLUORESCENCE | ISOPROTERENOL | QUANTITATIVE REVERSE TRANSCRIPTION-POLYMERASE CHAIN REACTION | MESSENGER-RNA | RABBIT NEPHRON | BETA-1-ADRENERGIC RECEPTOR | UROLOGY & NEPHROLOGY | ADENYLYL CYCLASE | INTERCALATED CELLS | ADENYLATE-CYCLASE | EXPRESSION | THICK ASCENDING LIMB
Journal Article
American Journal of Kidney Diseases, ISSN 0272-6386, 1996, Volume 27, Issue 6, pp. 896 - 915
Distal renal tubular acidosis | carbonic anydrase | hyperchloremic metabolic acidosis | ATPase | AUTOSOMAL RECESSIVE SYNDROME | H(+)K(+)ATPase | ANHYDRASE-II DEFICIENCY | HYPERCHLOREMIC METABOLIC-ACIDOSIS | ADENOSINE-TRIPHOSPHATASE | TRIMETHOPRIM-INDUCED HYPERKALEMIA | distal renal tubular acidosis | VACUOLAR H+-ATPASE | H(+)ATPase | SELECTIVE ALDOSTERONE DEFICIENCY | MEDULLARY COLLECTING DUCT | carbonic anhydrase | UROLOGY & NEPHROLOGY | CARBON-DIOXIDE TENSION | INTERCALATED CELLS | Proton-Translocating ATPases - metabolism | H(+)-K(+)-Exchanging ATPase - metabolism | Humans | Sodium Channels - metabolism | Kidney Tubules, Distal - physiopathology | Acidosis, Renal Tubular - physiopathology | Acidosis, Renal Tubular - metabolism | Carbonic Anhydrases - metabolism | Kidney Tubules, Distal - metabolism
Journal Article