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Biomedical subjects

Y Tsunoda

Publications and source records attributed to Y Tsunoda.

At least 19 recordsLinked to original sources

Reduced growth rate of dimethylhydrazine-induced colon tumors in rats.

alpha-Difluoromethylornithine (DFMO) treatment has been shown to modify carcinogenesis in many experimental tumor models, including breast, urinary bladder, and colon. This study was designed to determine whether DFMO treatment can inhibit tumor growth on chemical-induced colon cancer in rats. Effectiveness of DFMO in combination with mitomycin C (MMC) was also evaluated. Forty-two Sprague-Dawley rats received dimethylhydrazine (20 mg/kg) s.c. once weekly for 20 wk to induce colon cancer. Then a double-contrast barium enema was performed, and colon tumors were detected. The animals were divided into four groups that were subjected to the following treatment: none; DFMO alone; MMC alone; and a combination of DFMO plus MMC. After 5 wk of treatment, the barium enema was repeated. For the evaluation of treatment efficacy, tumor doubling time was adopted. The mean tumor doubling time in the control group was 20.7 +/- 9.1 days (SD). "Response" was judged as effective when tumor doubling time in treatment groups was more than 38.9 days, calculated from the mean + 2 SDs in the control group. Response rates in the DFMO, MMC, and DFMO plus MMC groups were 40.0%, 10.0%, and 82.3%, respectively. DFMO was a more effective inhibitor of tumor growth than MMC, and DFMO in combination with MMC resulted in a synergic diminution of tumor growth. The double-contrast barium enema is useful to observe sequential tumor growth and may be appropriate for the evaluation of new treatment on experimental colon cancer in rats.

Animals

Viability of nuclei of two-cell mouse embryos stored at 4 degrees C and fused with blastomeres of fresh two-cell embryos.

This study compares the resistance of the nuclei and the cytoplasm of two-cell mouse embryos to short-term storage at low temperature above 0 degrees C. Two-cell embryos were stored at 4 degrees C for 24-96 h in PB1 containing 0.25, 0.5, 0.75, and 1.0 M sucrose. The development to blastocysts in culture was highest in the presence of 0.5 M sucrose. However, only 3% of the embryos developed into blastocysts after 96 h of storage. On the other hand, the viability of the nuclei of two-cell embryos stored at 4 degrees C was significantly prolonged when they were transplanted into a blastomere of enucleated fresh F1 (C57BL/6JXCBA) two-cell embryos. The proportions of chimeric embryos that developed to blastocysts were 88, 67, 76, 71, 64, 45, 32, and 20% following storage for 0, 48, 72, 96, 120, 144, 168, and 192 h, respectively. In addition, there was no difference in the coat color of the young derived from nuclei stored at 4 degrees C or fresh nuclei, although the proportions of chimeric embryos that developed into live young after transfer tended to decrease with increased storage time. Moreover, the viability of nuclei stored at 4 degrees C for 192 h was confirmed in the germ cell population of chimeric mice mated with albino mice. These results demonstrated that the nuclei in the two-cell mouse embryos were more resistant to storage at low temperature than the cytoplasm.

Animals

An inhibitor of Ca2+/calmodulin-dependent protein kinase II, KN-62, inhibits cholinergic-stimulated parietal cell secretion.

Cholinergic stimulation of parietal cell secretion is mediated by an increase in intracellular calcium. KN-62, a selective inhibitor of Ca2+/calmodulin-dependent protein kinase II (CaMK II), has recently been synthesized (Tokomitsu et al. J. Biol. Chem. 265: 4315-4320, 1990). To define the role of CaMK II in parietal cell secretion, we determined the effects of KN-62 on secretagogue-stimulated acid secretion in isolated rabbit parietal cells. Pretreatment of parietal cells with KN-62 resulted in the inhibition of carbachol-stimulated [14C]aminopyrine uptake over a concentration range of 3 to 60 microM (IC50 of 20 microM). KN-62 (60 microM) reduced carbachol-stimulated aminopyrine uptake to unstimulated levels. KN-62 did not alter carbachol-stimulated increases in cytoplasmic free Ca2+ concentration. High concentrations of KN-62 (60 microM) elicited a small decrease in aminopyrine uptake stimulated by forskolin, but did not significantly inhibit histamine stimulation. A potent CaMK II activity was identified in total membrane from parietal cells. These results suggest that CaMK II may mediate cholinergic-stimulated parietal cell secretion.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

Regulation of [Ca2+]i by secretagogue stimulation of canine gastric parietal cells.

The ability of gastrin, histamine, and carbachol to stimulate acid secretion by direct action on gastric parietal cells is well established but the role of intracellular Ca2+ concentration ([Ca2+]i) in mediating these effects is the subject of some controversy. To examine this issue further, secretagogue-mediated changes in [Ca2+]i in single isolated canine gastric parietal cells were examined by microspectrofluorometry of fura-2-loaded cells. Resting [Ca2+]i in single parietal cells was 63 +/- 6 (SE) nM. Carbachol, 10(-5) M, induced a maximum elevation in [Ca2+]i with an initial transient rise of 178 +/- 24 (SE) nM, which was maintained in the absence of extracellular Ca2+ and a sustained plateau of 112 +/- 20 (SE) nM, which was abolished by removal of extracellular Ca2+. Both effects were reversed by the muscarinic receptor antagonist atropine. Gastrin (10(-9)-10(-7) M) also induced a bimodal rise in [Ca2+]i with a maximal initial transient rise of 206 +/- 14 nM and a sustained plateau of 94 +/- 9 nM. Both components of the [Ca2+]i response to gastrin were reversed by the gastrin specific antagonist L 365260. Lower concentrations of gastrin (10(-10) M) induced repetitive transient increases (oscillations) in cytosolic Ca2+. The amplitude of the first spike was less than 50% of the transient rise in [Ca2+]i stimulated by 10(-8) M gastrin. The oscillations occurred at a rate of 0.9/min, gradually decreasing in amplitude within 15 min of secretagogue administration. Histamine (10(-4) M) led to a minimal rise in [Ca2+]i (less than 5% of control) in less than 10% of the canine parietal cells tested.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Plasma alpha-human atrial natriuretic peptide concentration in patients with acute lung injury.

To elucidate the pathophysiologic role of alpha-human atrial natriuretic peptide (alpha-hANP) in acute lung injury, plasma alpha-hANP concentrations were measured in 15 patients with severe lung injury, and the relationships of plasma alpha-hANP levels to the severity of lung injury, diuresis/natriuresis, and fluid balance were examined. The mean concentrations of plasma alpha-hANP (188.0 +/- 94.6 pg/ml) in patients with severe lung injury at the entry into the study were significantly (p less than 0.001) higher than those in normal subjects (31.7 +/- 12.0 pg/ml). Plasma alpha-hANP levels decreased in parallel with the improvement of lung injury in nine of 15 patients, whereas they changed little, if any, in the patients who did not recover. Plasma alpha-hANP concentrations correlated positively with urine volume, urinary sodium excretion, and excreted fraction of filtered sodium, but they correlated negatively with fluid balance at the onset of the disease as well as during the clinical course. It is suggested that elevation of circulatory alpha-hANP may reflect an adaptative mechanism to remove excessive fluid retention and reduce pulmonary hypertension for acute lung injury.

Acute Disease

Synchronous division of mouse two-cell embryos with nocodazole in vitro.

Mouse two-cell embryos were cultured in a medium supplemented with nocodazole or colcemid for 12.5-14.5 h in vitro, and development after elimination of these drugs was examined. All embryos cultured with nocodazole stopped at the metaphase of the second cell cycle. When nocodazole was removed, almost all embryos divided to the normal four-cell stage within 1 h and then developed into blastocysts (98%). The proportion of embryos that developed into young after transfer to recipients was not significantly different from the control (35 versus 36%), but the developmental ability of the embryos treated with colcemid was reduced, especially after transfer to recipients.

Animals

Cytogenetic analysis of reconstituted one-cell mouse embryos derived from nuclear transfer of fetal male germ cells.

Micromanipulation techniques were used to produce reconstituted one-cell mouse embryos after the fusion of fetal male germ cells 15.5 day post coitum with enucleated secondary oocytes. At this stage of development, male fetal germ cells are arrested at G1 of mitotic interphase. Two distinct populations of germ cells, differing in size and ploidy, were isolated from the genital ridge of a mid-term fetus. Oocytes that had received male germ cells from the population of smaller (mononuclear) germ cells developed as diploid one-cell reconstituted embryos. When the same procedures were used to produce reconstituted one-cell embryos using male fetal germ cells from a population of larger (multinucleate) cells, they exhibited ploidy of either 4x, 6x or 8x at metaphase of the first cell division. Although most reconstituted embryos (90 and 96%) developed to the two-cell stage, the proportion of embryos receiving small germ cells developed to blastocysts was much higher (62%) than that receiving large germ cells (4%). These studies indicate that not all fetal germ cells are diploid before the onset of meiosis and have identified procedures to produce reconstituted embryos from fetal germ cells that do not carry genome or chromosome anomalies.

Animals

Nicotinic receptor-evoked release of acetylcholine and somatostatin in the myenteric plexus is coupled to calcium influx via N-type calcium channels.

Entry of extracellular calcium (Ca++) via voltage-gated Ca++ channels is essential for neurotransmitter release. In this study, we examined whether nicotinic receptor-stimulated release of acetylcholine (ACh) and somatostatin (S14) are coupled to calcium influx via distinct calcium channel subtypes in the myenteric plexus. Isolated ganglia from the guinea pig ileal myenteric plexus were prepared and placed in perfusion chambers under standard conditions. The ganglionic agonist dimethylphenylpiperazinium (DMPP, 10(-6) to 10(-3) M) stimulated the release of [3H]ACh in a concentration-dependent manner. This release was blocked by hexamethonium or Ca(++)-free medium containing 1 mM EGTA and was antagonized by omega-conotoxin, a preferential N calcium channel blocker, but was not affected by nifedipine (L channel antagonist) or nickel (T calcium channel antagonist). DMPP-evoked release of somatostatin was also antagonized by omega-conotoxin, but was not affected by nifedipine or nickel. These observations indicate that neurosecretion of ACh and S14 evoked by DMPP is mediated by calcium entry via voltage-sensitive N-type Ca++ channels. To provide additional evidence that nicotinic receptor stimulation is associated with Ca++ entry via the N-type Ca++ channels, we examined the intracellular calcium [Ca++]i concentration of the myenteric plexus neurons using fura-2 microspectrofluorometry. Basal [Ca++]i of single ileal myenteric neurons was 65 +/- 5 nM. Perfusion with DMPP (10(-6) to 10(-3) M) caused a rapid, transient elevation in [Ca++]i which was abolished by Ca(++)-free medium containing 1 mM EGTA.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine

Secretagogue-induced Ca2+ oscillations in isolated canine gastric chief cells.

Agonist-induced changes in cytoplasmic free Ca2+ concentration [( Ca2+]i) of isolated canine gastric chief cells were evaluated by microspectrofluorometry of superfused fura-2 loaded cells. Application of high concentrations of carbachol (CCh, 10(-5) M) or cholecystokinin octapeptide (10(-8) M) resulted in biphasic Ca2+ mobilization comprising an initial large transient followed by a small sustained elevation above the prestimulation level. Submaximal concentrations of CCh (10(-6) M) or cholecystokinin (10(-9) M) led to either a transient series of large amplitude Ca2+ spike(s) or a higher frequency of sustained Ca2+ oscillations of smaller amplitude. Cholecystokinin at 10(-10) M induced only sustained Ca2+ oscillations. Elimination of Ca2+ from the medium had no immediate effect on oscillations indicating an intracellular source of Ca2+. Thus the Ca2+ signalling mode in chief cells is dependent on agonist concentrations.

Animals

Production of identical twin and triplet mice by nuclear transplantation.

Transplantation of a single nucleus from two- or four-cell embryos into one of the enucleated blastomeres of a two-cell embryo resulted in successful production of identical triplet and twin mice. The proportion of reconstituted embryos that developed in blastocysts was 71% (84/118) when four-cell embryos were used as donors of nuclei; 10 sets of quadruplet and nine sets each of triplet and twin blastocysts were obtained by this technique. After transfer to recipients, 30% (18/61) developed to term, and one set of identical triplet and four sets of identical twin mice were obtained. When two-cell embryos were used as donors of nuclei, 79 (95%) sets of twin embryos developed to blastocysts. Of 38 twin blastocysts transferred to recipients, 21 sets (55%) developed to term as identical twin mice. These results demonstrate that the enucleated two-cell embryo develops in vitro after transfer of a nucleus from a two- or four-cell embryo and the resultant blastocyst has high potential for development to term after transfer to a recipient.

Animals

Cytosolic acidification leads to Ca2+ mobilization from intracellular stores in single and populational parietal cells and platelets.

Regulatory relationship and gain control between cytosolic free Ca2+ concentration (Cai) and cytosolic pH (pHi) were evaluated by two different cell types, gastric parietal cells, and blood platelets. Studies were carried out in both single cells and populations of cells, using Ca2(+)-indicative probe fura-2 (1-(2-(5'-carboxyoxazol-2'-yl)-6-aminobenzofuran-5-oxy)-2-(2 '-amino-5'- methylphenoxy)ethane-N,N,N',N'-tetraacetic acid) and pH-indicative probe BCECF (2',7'-bis(carboxyethyl)carboxyfluorescein). Stimulation of single and populational parietal cells and platelets with gastrin and thrombin, respectively, resulted in an increase in Cai. In both populational cell types, an initial change in pHi during agonist stimulation occurred almost simultaneously with the mobilization of Ca2+; an initial transient decrease in pHi was followed by a slower increase in pHi above the prestimulation level. When populational platelets were preloaded with the Ca2+ chelator BAPTA (1,2-bis(o-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid), the thrombin-induced initial large increase in Cai was apparently inhibited, whereas the pHi decrease induced by thrombin was not altered. This suggests that the initial Cai change is not a prerequisite for the pHi change. The effect of pHi on Cai was examined next. In both single and populational cell types, application of the K(+)-H+ ionophore nigericin, which induced a transient decrease in pHi, led to the release of Ca2+ from intracellular stores. In single parietal cells double-labeled with fura-2 and BCECF, a temporal decrease in pHi preceded the rise in Cai after stimulation with nigericin. A decrease in pHi and an increase in Cai occurred at 1.5 and 4 s, respectively. In single parietal cells, replacement of medium Na+ with N-methyl-D-glucamine (NMG+), which also induced a decrease in pHi, resulted in repetitive Ca2+ spike oscillations. The source of Ca2+ utilized for the Ca2+ oscillation that was induced by NMG+ originated from the agonist-sensitive pool. Thus, several maneuvers, which were capable of decreasing pHi, led to an increase in Cai. Cytosolic acidification may be a part of the trigger for Ca2+ mobilization from intracellular stores in both parietal cells and platelets.

Animals

Intracellular mediators of bombesin action on rat pancreatic acinar cells.

The effects of bombesin on physiological responses (amylase secretion, protein synthesis) and intracellular mediators [inositol 1,4,5-trisphosphate (1,4,5-IP3), [Ca2+]i, and diacylglycerol] were studied in isolated rat pancreatic acini and compared with the actions of cholecystokinin (CCK). Bombesin stimulated amylase secretion to the same extent as CCK. However, it failed to reproduce the inhibition of amylase secretion by high concentrations of CCK and likewise did not inhibit incorporation of [3H]leucine into protein in contrast to high concentrations of CCK. Low concentrations of bombesin (1-100 pM) induced repetitive oscillations in [Ca2+]i, whereas higher concentrations of bombesin (1-10 nM) induced a large transient increase in [Ca2+]i followed by a small sustained plateau. Bombesin (1-100 nM) induced an early peak of 1,4,5-IP3 at 5-15 s but was without measurable effect at lower concentrations. These effects on [Ca2+]i and 1,4,5-IP3 were similar to those seen with CCK except that bombesin was approximately 10-fold less potent than CCK. Bombesin induced an increase in acinar 1,2-diacylglycerol with a biphasic time course similar to CCK. However, the magnitude of the response to bombesin was much smaller than the response to CCK. The results suggest that bombesin receptors initiate similar intracellular messengers as does CCK. However, CCK induces a larger increase of diacylglycerol and probably an as yet unidentified messenger responsible for its inhibitory effects.

Amylases

Dynamics of Ca2+ transients in norepinephrine-stimulated individual H-35 hepatoma cells: fura-2 digital imaging microscopy and high time-resolution microspectrofluorometry.

We investigated spatiotemporal changes in cytoplasmic free Ca2+ concentration ([Ca2+]i) in norepinephrine (NE)-stimulated and fura-2-loaded individual H-35 rat hepatoma cells, using digital imaging microscopy and high time-resolution microspectrofluorometry. Application of NE (5 x 10(-6) M) resulted in an initial transient increase in [Ca2+]i, followed by a small sustained [Ca2+]i plateau above the pre-stimulation level. The initial peak and the small sustained plateau originated from intracellular stores and the extracellular space, respectively. The initial transient evoked by NE was totally blocked by phentolamine, an alpha-adrenergic antagonist, but was not blocked by either pre-incubation with nominally Ca(2+)-free medium or by pre-treatment of cells with La3+. On the other hand, the sustained plateau was eliminated by Ca(2+)-free medium or La3+. Therefore, H-35 cells have a Ca(2+)-signaling pathway which is activated via alpha-adrenergic receptors. Mn2+ entered the cytosol after NE stimulation, as shown by quenching of fura-2. This indicates that H-35 hepatoma cells possess Mn(2+)-permeable Ca2+ channels at the plasma membrane. In addition, the Ca2+ efflux pattern from H-35 cells to the extracellular space during NE stimulation was visualized by digital imaging microscopy when free fura-2 was equilibrated between the cells and the extracellular space. The efflux of Ca2+ from H-35 begins between the initial [Ca2+]i transient and the sustained [Ca2+]i plateau.

Animals

Oscillatory Ca2+ signaling and its cellular function.

It is well known that in the cells of many higher eukaryotic organisms Ca2+ ions are used as a signal messenger in the regulation of cellular functions. From recent studies with single cells it was suggested that the intracellular Ca2+ signal comprises repetitive and periodic Ca2+ spikes in a variety of cells. The mechanism by which intracellular Ca2+ oscillates and the biological significance of this oscillation are not well understood. It also remains to be determined how the Ca2+ signaling system sends a message into the cell, intermittently, to amplify the functional response. This review describes and integrates some recent views of oscillatory Ca2+ signaling.

Animals

[Investigation of limulus test during and after cardiopulmonary bypass. Part II. Effect of washing of the bypass circuit].

Previously we reported the presence of Limulus positive substance (LPS) in blood and urine for several days following cardiopulmonary bypass (CPB), and foreign particles in the primining fluids. The purpose of this study was to evaluate the effect of washing of the CPB circuit on appearance of LPS and to define the nature of it. Semi-quantitative Limulus test was performed in patients using washed CPB circuit (n = 54) and without washing (n = 41). LPS in the blood were negative in all patients before CPB. LPSs in the priming fluids did not disappear after washing, however the amounts of it in the blood were significantly lower than those without washing. Especially at second postoperative day. Limulus test were positive in 10% of patients with washed CPB circuit and 60% of those without it (p less than 0.01), and all the urine samples of patients with washed CPB circuit were negative to Limulus test at 1st postoperative day. The number of foreign particles decreased in parallel with the smaller pore size of the filter. Since reactions of Pregell to ethylene oxide gas, ethylene chlorohydrin and ethylene glycol were negative, ethylene oxides did not seem to be the LPS. These results indicate the superiority of employment of washed CPB circuit with micropore filter. However, further exploration is still mandatory to elucidate the LPSs.

Adolescent

Two functionally distinct cholecystokinin receptors show different modes of action on Ca2+ mobilization and phospholipid hydrolysis in isolated rat pancreatic acini. Studies using a new cholecystokinin analog, JMV-180.

A new hepatapeptide cholecystokinin (CCK) analog, JMV-180 (Boc-Tyr(SO3-)-Nle-Gly-Trp-Nle-Asp-2-phenylethylester), acts as an agonist at high affinity CCK receptors on rat pancreatic acini to stimulate amylase release but unlike cholecystokinin octapeptide (CCK8) does not act on low affinity CCK receptors to inhibit amylase release (Galas, M. D., Lignon, M. F., Rodriguez, M., Mendre, C., Fulcrand, P., Laur, J., and Martinez, J. (1988) Am. J. Physiol. 254, G176-G188). To investigate the biochemical mechanisms initiated by CCK acting on each class of CCK receptor, the effects of JMV-180 and CCK8 on amylase release, Ca2+ mobilization, and phospholipid hydrolysis were studied in isolated rat pancreatic acini. When acini were loaded with the intracellular Ca2+ chelator BAPTA, amylase release stimulated by both JMV-180 and CCK8 was reduced. Measurement of 45Ca2+ efflux and cytosolic free calcium concentration ([Ca2+]i) by the fluorescence of fura-2-loaded acini in a stirred cuvette showed that JMV-180 induced a concentration-dependent increase but with a maximal response only two-thirds that induced by CCK8. When [Ca2+]i of individual fura-2-loaded acinar cells was measured by microspectrofluorometry, all concentrations of JMV-180 (1 nM-10 microM) induced repetitive transient [Ca2+]i spikes (Ca2+ oscillations). By contrast, stimulation with a high concentration of CCK8 (1 nM) caused a large increase in [CA2+]i followed by a small sustained elevation of [Ca2+]i. The measurement of inositol trisphosphate (IP3) production by both [3H]inositol labeling and 1,4,5-IP3 radioreceptor assay showed that JMV-180 had only minimal effects at 10 microM in contrast to the large increase induced by high concentrations of CCK8 (more than 1 nM). JMV-180 blocked the effect of a high concentration of CCK8 on both [Ca2+]i and 1,4,5-IP3 productions but did not affect the response to carbamylcholine. JMV-180 caused a delayed monophasic stimulation of 1,2-diacylglycerol (DAG) sustained to 60 min without the early increase in DAG observed in response to CCK8. Furthermore, JMV-180 stimulated the release of [3H]choline metabolites, primarily phosphorylated choline, from [3H]choline-labeled acini at low concentrations and to the same extent as CCK8. Since JMV-180 interacts not only with high affinity CCK receptors as an agonist but also with low affinity CCK receptors as a functional antagonist, the present results indicate that the occupancy of high affinity state receptors by CCK induces Ca2+ oscillations, DAG formation from phosphatidylcholine hydrolysis, and amylase release with minimal phosphatidylinositol 4,5-bisphosphate hydrolysis.(ABSTRACT TRUNCATED AT 400 WORDS)

Amylases

Serum diatrizoate level during intraoperative cholangiography in patients without choledochal obstructions.

To assess the degree of regurgitation of contrast media during intraoperative cholangiography, serum diatrizoate levels were measured in 15 patients without demonstrable bile duct obstructions. The maximum pressure achieved during the injection was measured in seven cases and ranged from 13 to 39 cm H2O (average 21.7 +/- 9.3 cm H2O). Only two of the 15 patients studied had detected serum diatrizoate (in one patient 7-14 micrograms I/ml and the other patient 119-200 micrograms I/ml) after completion of the injection. The data suggest that regurgitation of contrast media into the blood during intraoperative cholangiography does not depend solely on injection pressure. Moreover the data suggest that in order to prevent adverse reactions to accidental intravenous contrast administration nonionic contrast media should be used in most, if not all, radiographic studies as some contrast media reaches the bloodstream.

Cholangiography

Cytosolic free calcium spiking affected by intracellular pH change.

The characteristics underlying cytosolic free calcium oscillation were evaluated by superfused dual wave-length microspectrofluorometry of fura-2-loaded single acinar cells from rat pancreas. Application of a physiological concentration of cholecystokinin octapeptide (CCK) (20 pM) induced a small basal increase in cytosolic free calcium concentration ([Ca2+]i) averaging 34 nM above the prestimulation level (69 nM) with superimposed repetitive Ca2+ spike oscillation. The oscillation amplitude averaged 121 nM above the basal increase in [Ca2+]i and occurred at a frequency of one pulse every 49 s. Although extracellular Ca2+ was required for maintenance of high frequency and amplitude of the spikes with increase in basal [Ca2+]i, the primary source utilized for oscillation was intracellular. The threshold of the peak [Ca2+]i amplitude for causing synchronized and same-sized oscillations was less than 300 nM. The [Ca2+]i oscillation was sensitive to intracellular pH (pHi) change. This is shown by the fact that the large pHi shift toward acidification (delta pHi decrease, 0.95) led to a basal increase in [Ca2+]i to the spike peak level with inhibiting Ca2+ oscillation. The pHi shift toward alkalinization (delta pHi increase, 0.33) led to a basal decrease in [Ca2+]i to the prestimulation level, possibly due to reuptake of Ca2+ into the Ca2+ stores, with inhibiting Ca2+ oscillation. Whereas extracellular pH (pHo) change had only minimal effects on Ca2+ oscillation (and/or Ca2+ release from intracellular stores), the extra-Ca2+ entry process, which was induced by higher concentrations of CCK, was totally inhibited by decreasing pHo from 7.4 to 6.5. Thus the major regulatory sites by which H+ affects Ca2+ oscillation are accessible from the intracellular space.

Ammonium Chloride