CALIBRATION OF INDO-1 AND RESTING INTRACELLULAR [CA](I) IN INTACT RABBIT CARDIAC MYOCYTES

Citation
Jwm. Bassani et al., CALIBRATION OF INDO-1 AND RESTING INTRACELLULAR [CA](I) IN INTACT RABBIT CARDIAC MYOCYTES, Biophysical journal, 68(4), 1995, pp. 1453-1460
Citations number
33
Categorie Soggetti
Biophysics
Journal title
ISSN journal
00063495
Volume
68
Issue
4
Year of publication
1995
Pages
1453 - 1460
Database
ISI
SICI code
0006-3495(1995)68:4<1453:COIARI>2.0.ZU;2-R
Abstract
Fluorescent Ca indicators have been extremely valuable in understandin g intracellular [Ca] ([Ca](i)) regulation in many cell types. The cali bration of these indicators in the intracellular environment, however, has been a continuous challenge. We performed in vivo calibrations of indo-1 in isolated rabbit ventricular myocytes loaded with the acetox ymethylester form of indo-1 and used the perforated patch variation of whole cell voltage clamp, Voltage, [Na], and [K] gradients were elimi nated to approach equilibrium. We also took advantage of the powerful Na/Ca exchange in cardiac myocytes so that [Ca](i) would be equilibrat ed with [Ca](o) (because there was no [Na] or voltage gradient). The e quilibration of [Na] and [Ca] across the membrane was tested by measur ing the reversal potential of Na current and poking the cell to test f or changes in [Ca](i)-dependent fluorescence ratio. The apparent disso ciation constant, K-d for indo-1 in the cellular environment was 844 n M, which is similar to 2-3 times higher than that in aqueous solutions . In a separate series of experiments, a null point approach was used to determine the [Ca](i) in intact cells at rest for very long periods (82 +/- 6 nM). This is lower than that measured 15 s after a train of steady-state twitches ([Ca](i) = 294 +/- 53 nM). These experiments al so allowed the direct assessment of the shortening versus [Ca](i) rela tionship in intact cells.