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Biomedical subjects

Y P Tan

Publications and source records attributed to Y P Tan.

11 recordsLinked to original sources

Spatial heterogeneity of intracellular Ca2+ signals in axons of basket cells from rat cerebellar slices.

1. Using tight-seal whole-cell recording and digital fluorescence imaging, we studied intracellular calcium (Ca2+i) dynamics in cerebellar basket cells, whose dendrites, axon and presynaptic terminals are coplanar, an optimal configuration for simultaneous optical measurements of all functional domains. 2. In Cs(+)-loaded neurones, depolarizing pulses induced large Ca2+i transients in single axonal varicosities and synaptic terminals, contrasting with much weaker signals between varicosities or in the somato-dendritic domain. 3. Axonal branch points consistently displayed [Ca2+]i rises of similar magnitude and time course to those in axonal terminals and varicosities. 4. In biocytin-filled basket cells, varicosity-like swellings were present along the axon including its branch points. Thus, axonal enlargements are not due to fluorescence-induced cell damage. 5. The spatial heterogeneity of Ca2+i signals was also observed in K(+)-loaded cells upon depolarizing trains, suggesting that this behaviour is an intrinsic property of Ca2+i homeostasis in basket cells. 6. We conclude that depolarization of basket cell axons evokes high local Ca2+i signals in synaptic terminals, en passant varicosities and branch points. While high [Ca2+]i in presynaptic structures presumably triggers transmitter release, Ca2+i transients at branch points may control signal transmission in the axonal arborization.

Animals

Psychiatric day centres--the Singapore experience.

Psychiatric Day Centres are an important aspect of psychiatric community services and care. In Singapore we have developed our Day Centres with the needs of our own patients in mind. At present there are four Psychiatric Day Centres and they focus on vocational and psychosocial rehabilitation. A wide range of structured activities are provided at each of the Day Centres and the programmes are individualised as far as possible to meet the needs of each patient. A multidisciplinary team looks after each patient. This paper outlines the historical aspects of Psychiatric Day Centres and highlights the objectives of the Day Centres administered by Woodbridge Hospital. Patients are grouped into three categories according to their occupational and social skills; programmes and care are provided according to their needs. Of the one hundred and eighty attenders, the sex distribution is almost equal and they are mainly in the twenty to forty-nine age group. Schizophrenia is the most common illness among the attenders and the majority are in the Sheltered Work Group. More than half of them had attended a Day Centre for between one to two years and less than a third had recent admissions to hospital.

Adult

Calcium imaging.

We review herein the following questions related to Ca2+ imaging: what are the key elements to consider in a Ca2+ imaging system? What are the limits of such systems? What are the main artifacts and to what specific applications are a Ca2+ imaging systems best adapted?

Artifacts

High density of Ca(2+)-dependent K+ and Cl- channels on the luminal membrane of lacrimal acinar cells.

Tight-seal whole-cell recording and Ca2+ imaging were simultaneously performed on cell clusters or individual acinar cells of rat lacrimal glands during application of the secretagogue acetylcholine. Activation of Ca(2+)-dependent K+ and Cl- currents was selectively followed as a function of time by placing the cell potential near the equilibrium potential for Cl- or for K+ ion, respectively. Upon acetylcholine application to cell clusters, K(+)- and Cl(-)-selective currents displayed a distinctive initial rise ("hump"). At this time, there was only a small elevation of Ca2+ concentration, [Ca2+]i, that was restricted to the luminal end of acinar cells. A quantitative analysis of Ca2+ and current signals during the hump suggested that the luminal membrane contained high densities of K(+)- and Cl(-)-selective channels, roughly 10 times higher than those found in the basolateral domain. Distinct luminal and basolateral membrane domains were preserved in isolated cells, but with less contrasted densities than in cell clusters. The results suggest that Ca(2+)-dependent K+ channels are implicated not only in the transfer of salt from the blood compartment to the interior of acinar cells, as commonly accepted, but also in the electrolyte secretion from the cell interior to the acinar lumen.

Acetylcholine

Imaging early steps of human T cell activation by antigen-presenting cells.

In this work the Ca2+ response and the morphological changes elicited by Ag in human CD4+ T cells are described at the single cell level. The APC used to present the diphtheria toxoid Ag to a human diphtheria toxoid-specific T cell clone were murine L cell fibroblast transfectants expressing MHC class II molecules. The increase of the intracellular Ca2+ concentration, [Ca2+]i, which is one of the earliest steps of the response to TCR stimulation, was followed by fluorimetry with fura-2 on an imaging system. This response was a specific consequence of successful Ag presentation, because it only took place when fibroblasts expressed both class II MHC molecules and Ag. CD4 molecules were also involved in this intercellular interaction, because the Ca2+ response could be inhibited by preincubating the T cells with an anti-CD4 antibody. The response induced by APC started after a delay of at least 6 min, after which large Ca2+ oscillations took place, with a pseudo period of 100 s at 35 degrees C. The frequency of these oscillations decreased with temperature. The oscillations became progressively more damped during the first 30 to 40 min of cell-to-cell interaction, after which they completely stopped; however, [Ca2+]i remained well above its resting level for more than 1 h after the contact. The Ca2+ oscillations were entirely dependent on Ca2+ influx because they immediately disappeared when external calcium was removed. Similar oscillations were observed when the cells were stimulated with an anti-CD3 antibody. After stimulation with APC, many T cells abandoned their spherical shape and tended to flatten and elongate. This aspect of the T cell response was not observed after stimulation with an anti-CD3 antibody. In the presence of cytochalasin B, the morphologic changes elicited by the APC were blocked, whereas the Ca2+ response was slightly enhanced. However, when T cells were loaded with the Ca2+ chelator BAPTA, both Ca2+ and morphologic changes were inhibited, suggesting that the Ca2+ response plays a permissive role for the morphologic changes.

Animals

Protein kinase C-mediated desensitization of the muscarinic response in rat lacrimal gland cells.

1. Desensitization of the Ca2+ release response evoked by acetylcholine in acinar cells from rat lacrimal glands was studied using the Ca(2+)-sensitive dye Fura-2. The evolution of the amplitude and half-maximal rise time (t1/2) of the Ca2+ response was followed as a function of trial number in a series of stimulations. 2. Under control conditions repetitive applications of acetylcholine (15 s long applications every minute) led to a linear decrease of the amplitude and to a linear increase of t1/2 with trial number. Both amplitude and t1/2 recovered their control values after 20 min of washing. 3. Staurosporine (0.2-1 microM), an inhibitor of protein kinase C, was found to decrease the slopes of the variation of amplitude and t1/2 with trial number. 4. Prolonged treatment with 12-O-tetradecanoyl phorbol 13-acetate (TPA), an activator of protein kinase C (100-250 nM for 2-4 h), also led to a markedly decreased desensitization, presumably as a result of down-regulation of protein kinase C. On the other hand moderate pre-treatments with TPA (16-32 nM for 10 min) strongly inhibited the response, most probably as a result of protein kinase C activation. 5. Application of oleoylacetylglycerol (50 microM), a weaker activator of protein kinase C, inhibited the response and enhanced desensitization. These effects were, however, not obtained after down-regulation of protein kinase C with strong exposure to TPA. 6. We conclude that protein kinase C activation following the ACh-induced Ca2+ rise and the concomitant diacylglycerol production mediates desensitization of the response. 7. Arachidonic acid (100 microM) inhibited the ACh-induced response and enhanced desensitization. However, this effect did not appear to be mediated by protein kinase C since it was also obtained with docosahexaenoic acid, an analogue of arachidonic acid which does not activate protein kinase C.

Acetylcholine

The initiation of calcium release following muscarinic stimulation in rat lacrimal glands.

1. Acinar cells were isolated from rat lacrimal glands, and the Ca2+ release response of these cells was studied using two experimental approaches. In one approach, changes in Ca2+ concentration, Cai2+, were monitored by measuring Ca2(+)-dependent Cl- currents using tight-seal whole-cell recording. Alternatively, such changes were measured as a fluorescence signal in cells loaded with Fura-2. 2. Following bath application of ACh (0.5 microM), the cell current recorded at -60 mV was unchanged for ca 0.8 s, then rose in a biphasic manner. The initial phase of the current rise ('hump') took different appearances depending on the cell studied, and it sometimes stood out from the main part of the response as a partially isolated transient. 3. In cells which had been loaded with Fura-2, Cai2+ was found to rise abruptly following a silent period. The delay was larger if ACh (0.2-0.5 microM) was applied in a depolarizing isotonic K+ saline than if it was applied in the normal saline. In addition, the maximum of the Cai2+ response was reduced with depolarizing stimulating solutions. This indicates that membrane potential modulates the Cai2+ response. 4. Responses to 5 microM-ACh, a saturating agonist concentration, were almost identical in K+ saline and in normal saline. 5. If the cell potential was hyperpolarized, the delay of the ACh-induced current became shorter. 6. Breaking into an acinar cell with a pipette containing an elevated Ca2+ concentration (0.1-1 mM) led to a transient activation of Ca2(+)-induced currents during the first seconds of whole-cell recording. These transients were obtained more reliably if the transition to the whole-cell mode was achieved by applying a sharp pulse of potential ('zapping') rather than by applying suction to the pipette compartment. At -60 mV, the transients elicited with the former method by 0.5 mM-Ca2+ had a time-to-peak near 0.6s and an amplitude varying between 10 and 600 pA. With 0.1 mM-Ca2+, similar transients were also observed, but a number of cells failed to respond. Calcium-induced transients were blocked if cells were previously loaded with 50 microM-Ruthenium Red. 7. Performing the same experiments with inositol trisphosphate (InsP3, 20 microM) in the pipette solutions also led to early transient Ca2(+)-induced currents. Amplitudes, times-to-peak and 20-80% transition times were similar for 0.5 mM-Ca2+ and 20 microM-InsP3 stimulations.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetylcholine

Blockage of Ca-activated Cl conductance by furosemide in rat lacrimal glands.

Single cells isolated from rat lacrimal glands were studied with the tight-seal whole-cell recording technique. It was found that furosemide (1 mM, applied externally) selectively blocked one part of the electrical response elicited by muscarinic agonists. This component of the response had been shown in a previous work (Marty et al. 1984) to be due to Ca-dependent Cl channels. The action of furosemide was further studied on cells which were dialysed with a high-Ca, high-Na solution, and which mainly displayed the Ca-dependent Cl conductance. In these experiments, furosemide (1 mM) was again found to depress the Ca-dependent Cl current. The present findings offer an explanation for previous reports that furosemide blocks ion fluxes and electrolyte secretion in exocrine glands without necessarily involving the neutral Na-K-Cl carrier usually assumed to be affected by the drug.

Animals

Muscarinic response in rat lacrimal glands.

A large variety of responses has been uncovered by recent investigations of conductance changes elicited by muscarinic agonists. In exocrine glands, the permeability to K+, Cl- and Na+ ions is increased, and internal Ca2+ serves as a second messenger. Patch-clamp analysis of the secreting cells has revealed three types of Ca2+-dependent channels, which are respectively selective for K+, for Cl-, and for monovalent cations. The channels differ in their sensitivity to the internal Ca2+ concentration, Cai. K+-selective channels are partially activated at rest, with Cai approx. 10 nmol l-1; Cl(-)-selective channels are activated between 100 nmol l-1 and 1 mumol l-1; activation of cationic channels requires micromolar Cai levels. Cell-attached recordings, performed either on isolated cells or on cell clusters, show an activation of all three channel types upon application of acetylcholine. In whole-cell recordings, mostly K+- and Cl(-)-selective channels are activated. The cell currents display slow oscillations linked to variations of Cai. Whole-cell currents rise after a delay of approx. 1 s, and decay with a time constant of approx. 0.7 s upon removal of acetylcholine. They do not depend on extracellular Ca2+. The recent demonstration that Ca2+-dependent currents can also be obtained when dialysing the cells with inositoltrisphosphate or with GTP gamma S, a non-hydrolysable analogue of guanosine triphosphate, opens promising leads to an analysis of intracellular events regulated by acetylcholine.

Acetylcholine

Three types of calcium-dependent channel in rat lacrimal glands.

Isolated cells from rat lacrimal glands were studied with patch-clamp techniques. Whole-cell and cell-attached recordings were obtained while the cells were stimulated by application of carbamylcholine or of the Ca ionophore, A23187. The results were compared with recordings of Ca-dependent channels obtained in isolated patches. Whole-cell recordings revealed two types of carbamylcholine-induced current. At low levels of stimulation, a specific class of Ca-dependent K channels was selectively activated ('BK channels'). With more intense stimulation an inward current, Ii, was obtained at the cell resting potential. Ii rose rather abruptly after a long delay. In several cells, Ii currents presented spontaneous oscillations. Both K and Ii current responses to carbamylcholine were due to activation of muscarinic receptors. Both responses were elicited by a rise of the intracellular Ca concentration. The immediate source of Ca was intracellular. Replacement of intracellular K with either Na or Cs blocked BK channels entirely, thus allowing the study of Ii currents free from K currents. Ii responses to carbamylcholine were, however, less frequently obtained in Na- or Cs-dialysed cells than in K-dialysed cells. In symmetrical NaCl solutions, Ii inverted at 0 mV. When replacing part of the intracellular or extracellular Cl with glutamate the reversal potential, Ei, was found to vary in the same direction as the equilibrium potential for Cl ions, ECl. In some experiments, Ei was close to ECl but in others Ei deviated strongly from ECl. These experiments suggested that Ii was mainly due to a Cl-selective conductance, and that another conductance type was contributing to Ii in variable proportions. It was found that, in K-free solutions, Ii had a reversal potential very close to ECl. Noise analysis showed that the Cl channels involved in Ii current had a unit conductance of about 1-2 pS in symmetrical NaCl solutions. At -60 mV, the mean channel open time derived from noise power spectra was about 200 ms. The activation of the Ca-dependent Cl channels was increased by depolarization. Voltage jumps elicited slow exponential relaxations. At -60 mV, the time constants of the relaxations were in the range 100-250 ms. Cell-attached recordings suggested that internal Ca activated three types of channel, depending on the Ca concentration: BK channels, 2-4 pS channels and 25 pS channels. Inside-out and outside-out patch conditions allowed a rough estimate to be made of the Ca concentration needed to activate each class of channel.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals