167 results on '"Andreoli, Thomas"'
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2. The Undermining of Academic Medicine.
3. Cl− channels in basolateral renal medullary membranes: VII. Characterization of the intracellular anion binding sites
4. Cl− channels in basolateral renal medullary vesicles: V. Comparison of basolateral mTALH Cl− channels with apical Cl− channels from jejunum and trachea
5. In Memoriam: Roscoe R. Robinson, MD 1929-2004 President, American Society of Nephrology 1981–1982
6. Cl− channels in basolateral renal medullary membrane vesicles: IV. Analogous channel activation by Cl− or cAMP-dependent protein kinase
7. Presentation of the 2001 Jean Hamburger Award to Roscoe R. Robinson
8. PRESIDENTʼS COMMENTS
9. Cl− channels in basolateral renal medullary memnbranes: III. Determinants of single-channel activity
10. Cl− transport in basolateral renal medullary vesicles: II. Cl− channels in planar lipid bilayers
11. Cl− transport in basolateral renal medullary vesicles: I. Cl− transport in intact vesicles
12. Cl− channels in basolateral TAL membranes. XVI. MTAL and CTAL cells each contain the mRNAs encoding mmClC-Ka and mcClC-Ka
13. International Society of Nephrology
14. Presentation of the 1999 A.N. Richards Award to Isidore S. Edelman
15. Cl− channels in basolateral TAL membranes. XIV. Kinetic properties of a basolateral MTAL Cl− channel
16. Cl− channels in basolateral TAL membranes: XIII. Heterogeneity between basolateral MTAL and CTAL Cl− channels
17. About Nephrology Forum
18. International Society of Nephrology
19. Introduction
20. Report of the Editor; July, 1984-June, 1997
21. A joint program to enhance nephrology in Eastern Europe
22. The Effects of ADH on Salt and Water Transport in the Mammalian Nephron : The Collecting Duct and Thick Ascending Limb of Henle
23. The Effects of ADH on Salt and Water Transport in the Mammalian Nephron : The Collecting Duct and Thick Ascending Limb of Henle
24. Properties and regulation of medullary thick limb basolateral Cl- channels
25. Edematous states: An overview
26. Medullary thick limbs: Renal concentrating segments
27. The International Society of Nephrology years: A perspective
28. Effect of antidiuretic hormone on water and solute permeation, and the activation energies for these processes, in mammalian cortical collecting tubules: Evidence for parallel ADH-sensitive pathways for water and solute diffusion in luminal plasma membranes
29. Effects of antidiuretic hormone on cellular conductive pathways in mouse medullary thick ascending limbs of Henle: I. ADH increases transcellular conductance pathways
30. Activation of K+ channels in renal medullary vesicles by cAMP-dependent protein kinase
31. Effects of antidiuretic hormone on cellular conductive pathways in mouse medullary thick ascending limbs of Henle: II. Determinants of the ADH-mediated increases in transepithelial voltage and in net Cl− absorption
32. Dedication
33. Report from the President-Elect
34. The Apoptotic Syndromes
35. CHLORIDE CHANNELS IN THE LOOP OF HENLE.
36. WATER: NORMAL BALANCE, HYPONATREMIA, AND HYPERNATREMIA.
37. THE STRUCTURE AND FUNCTION OF AMPHOTERICIN B-CHOLESTEROL PORES IN LIPID BILAYER MEMBRANES*.
38. Cl- channels in basolateral renal medullary vesicles XI. rbClC-Ka cDNA encodes basolateral MTAL Cl- channels.
39. Cl- channels in basolateral renal medullary vesicles IX. Channels from mouse MTAL cell patches and medullary vesicles.
40. Cl- channels in basolateral renal medullary membranes VI. Cl- conductance expression in Xenopus oocytes.
41. Diluting power of thick limbs of Henle III. Modulation of in vitro diluting power.
42. Diluting power of thick limbs of Henle. II. Bumetanide-sensitive 22Na+ influx in medullary vesicles.
43. Diluting power of thick limbs of Henle. I. Peritubular hypertonicity blocks basolateral Cl- channels.
44. ADH increases apical Na+, K+, 2Cl- entry in mouse medullary thick ascending limbs of Henle.
45. PGE2, forskolin, and cholera toxin interactions in modulating NaCl transport in mouse mTALH.
46. Control of NaCl transport in the thick ascending limb.
47. NaCl transport in mouse medullary thick ascending limbs. III. Modulation of the ADH effect by peritubular osmolality.
48. NaCl transport in mouse medullary thick ascending limbs. II. ADH enhancement of transcellular NaCl cotransport; origin of transepithelial voltage.
49. NaCl transport in mouse medullary thick ascending limbs. I. Functional nephron heterogeneity and ADH-stimulated NaCl cotransport.
50. Interactions of temperature and ADH on transport processes in cortical collecting tubules.
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