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  • BCECF Cell pH Corneal endothelial cells Na+-HCO3– cotransporter RT-PCR  (1)
  • BCECF H+ secretion HCO3– absorption Isolated renal proximal tubule Luminal pH  (1)
  • 1
    ISSN: 1432-2013
    Keywords: BCECF H+ secretion HCO3– absorption Isolated renal proximal tubule Luminal pH
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract. In the present experiments on microdissected tubules of rabbit kidney we present a refined stop-flow method for determining the rate of HCO3 – absorption (J HCO3) or H+ secretion (J H) that can be applied to isolated microperfused tubules. Using the pH-sensitive indicator dye BCECF (2',7'-bis [2-carboxyethyl]-5[6]-carboxyfluorescein) the luminal perfusate pH is continuously measured with a microspectrofluorometric set-up, and the pH change following a sudden stop of perfusion is analysed. Because the tubules partially collapse after stop-flow the calculation of fluxes requires a correction for volume loss. This is achieved by referring all fluxes to the remaining luminal volume, which can be estimated from the decay of the 440 nm reference fluorescence. During perfusion of the lumen with pure HCO3 – Ringer solution, and of the bath with the same solution but containing 5.5 mmol/l d-glucose as metabolic substrate, J HCO3 averaged 4.4±0.2 pmol cm–1·s–1 (n=40) and 13.4±0.8 pmol·cm–1·s–1 (n=5) in proximal straight tubules (PST) and in proximal convoluted tubules respectively. These values agree very well with data obtained in other laboratories with the picapnotherm technique. The present method has the advantage of requiring fewer micromanipulations and a shorter measuring time, thus allowing regulatory changes in J HCO3 to be analysed. Moreover it does not involve measurements of radioactivity, and it also allows J H to be measured in HCO3 –-free solutions which in PST averaged 0.9 pmol·cm–1·s–1 (n=8) in the present experiments.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-2013
    Keywords: BCECF Cell pH Corneal endothelial cells Na+-HCO3– cotransporter RT-PCR
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract. Although bicarbonate transport in corneal endothelium has been suggested to be coupled to Na+, the underlying molecular mechanism has not been clarified. In the present study we investigated whether a recently cloned Na+-HCO3 – cotransporter (NBC-1) is responsible for this process, and, if so, whether the endothelium expresses a separate isoform or one of the other two isoforms that have recently been identified (kNBC-1 from kidney and pNBC-1 from pancreas). Using primers designed for specific and common regions we demonstrated by reverse transcriptase polymerase chain reaction (RT-PCR) that both kNBC-1 and pNBC-1 are expressed in cultured human corneal endothelial cells. In addition functional studies with a pH-sensitive fluorescence probe were performed. In the presence of HCO3 –/CO2 a pH regulatory process was demonstrated which depends on the presence of Na+ and membrane potential, but is independent of Cl– and is inhibited by the disulfonic stilbene DIDS. These results support the presence of NBC-1 as the major bicarbonate transport system in corneal endothelium.
    Type of Medium: Electronic Resource
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