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J Barbera

Publications and source records attributed to J Barbera.

11 recordsLinked to original sources

Extracellular nucleotides activate non-selective cation and Ca(2+)-dependent K+ channels in rat osteoclasts.

1. Extracellular ATP elevates cytosolic free Ca2+ concentration ([Ca2+]i) in osteoclasts, but its effects on ion channels have not been reported previously. Membrane currents and [Ca2+]i were recorded in isolated rat osteoclasts using patch clamp and fluorescence techniques. 2. At negative membrane potentials, ATP (1-100 microM) activated an inward current that peaked rapidly and then declined. A later current was outward at potentials positive to the equilibrium potential for K+ (EK) and showed oscillations. 3. The initial inward current, studied in isolation using Cs+ in the electrode solution, showed rapid activation, inward rectification and reversal at +3 +/- 4 mV. Reduction of [Na+]o to 10 mM shifted the reversal potential to -21 +/- 3 mV, indicating that ATP activates a non-selective cation current, consistent with involvement of P2X receptors. 4. The later current activated by ATP, studied with K+ in the electrode solution, exhibited a linear I-V relationship, and reversed at -71 +/- 4 mV. The reversal potential shifted 51 mV per 10-fold change of [K+]o, indicating that ATP activates a K+ current (IK). 5. In fura-2-loaded cells, ATP caused elevation of [Ca2+]i that persisted in Ca(2+)-free solution, indicating that ATP induced release of Ca2+ from intracellular stores, consistent with involvement of P2Y receptors. Simultaneous patch clamp and fluorescence recordings revealed that IK was associated with the elevation of [Ca2+]i. Using a Ca2+ ionophore (4Br-A23187) to elevate [Ca2+]i, IK activated when [Ca2+]i exceeded approximately 400 nM, with half-maximal activation at 580 +/- 50 nM. 6. In cell-attached patches, ATP activated a channel with a conductance of 48 +/- 6 pS, that reversed director, near EK. Channel open probability increased with elevation of [Ca2+]i, indicating the Ca2+ dependence of this channel. 7. These results demonstrate that rat osteoclasts express two types of purinoceptors. P2X receptors give rise to non-selective cation current. P2Y receptors mediate Ca2+ release from stores, causing activation of a Ca(2+)-dependent K+ channel.

Adenosine Triphosphate

Cholinergic inhibition of Ca2+ current in guinea-pig gastric and tracheal smooth muscle cells.

1. Cholinergic regulation of L-type Ca2+ channels was investigated in freshly dissociated guinea-pig gastric and tracheal smooth muscle cells. Acetylcholine (ACh, 50 microM) decreased Ca2+ channel current (ICa) by 37 +/- 3% (mean +/- S.E.M., 46 cells). 2. ACh reduced ICa at all voltages, with no shift in the current-voltage relationship. Effects of ACh were rapid (within 5 s) and repeatable, with multiple applications reproducibly inhibiting ICa in the continued presence of extracellular Ca2+ and in the presence of protein kinase C inhibitors. 3. The involvement of Ca2+ stores in this inhibition was investigated using Ca(2+)-free solution or cyclopiazonic acid (CPA) to deplete the stores. ACh initially inhibited ICa in the Ca(2+)-free solution (Na+ as charge carrier, 53 +/- 4% decrease, 18 cells) with subsequent responses significantly attenuated (n = 9). CPA (1 microM) reduced, then abolished, the effects of ACh on ICa (n = 5). 4. When studied in cell-attached patches (Ba2+ as charge carrier), ACh reduced Ca2+ channel open probability in twenty-two of thirty-six cells, consistent with the involvement of a diffusible cytosolic messenger. 5. ACh also inhibited ICa in tracheal muscle cells (reduction of 38 +/- 6% in 1 mM Ca2+, 4 cells; 77 +/- 3% in Ca(2+)-free solution, 7 cells). Furthermore, in cells where ACh elicited oscillating Ca(2+)-activated Cl- current, oscillatory inhibition of ICa was also observed (3 cells). 6. In summary, ACh causes rapid and reversible inhibition of ICa in gastric and tracheal muscles. Ca2+ stores were required to initiate this effect, with the rapid onset and oscillatory inhibition consistent with Ca2+ inhibition of the channel. Suppression of ICa would reduce Ca2+ entry during cholinergic excitation.

Acetylcholine

Buffered versus plain lidocaine as a local anesthetic for simple laceration repair.

STUDY OBJECTIVE: Buffered lidocaine was compared with plain lidocaine as a local anesthetic for simple lacerations. DESIGN: Randomized, double-blind, prospective clinical trial. SETTING: Urban emergency department. TYPE OF PARTICIPANTS: Ninety-one adult patients with simple linear lacerations were enrolled. Patients with allergy to lidocaine and patients with an abnormal mental status were excluded. INTERVENTIONS: Each wound edge was anesthetized with either plain or buffered lidocaine using a randomized, double-blind protocol. The pain of infiltration was measured with a previously validated visual analog pain scale. MEASUREMENTS AND MAIN RESULTS: Analysis of pooled data and paired data (using patients as their own controls) revealed that infiltrating buffered lidocaine was significantly less painful than plain lidocaine (P = .03 and P = .02, respectively). There was no significant difference in the anesthetic effectiveness of the two agents during suturing. CONCLUSION: Buffered lidocaine is preferable to plain lidocaine as a local anesthetic agent for the repair of simple lacerations.

Adult

Sequential morphological and functional changes in kaolin-induced hydrocephalus.

An experimental model of kaolin-induced hydrocephalus in the dog was studied in order to evaluate the progress of ventricular dilatation and the communications between the ventricular system and the subarachnoid space. Skull and spine radiological studies were obtained after metrizamide intraventricular injection, and the baseline ventricular pressure and cerebral pulse pressure amplitude were measured in anesthetized animals. Intracranial compliance and resistance to drainage of cerebrospinal fluid were calculated by means of bolus injection test. Light and scanning electron microscope studies were done at different developmental stages of hydrocephalus. With these experimental parameters, two successive phases were seen: an initial acute hypertensive hydrocephalus (H1) with high resistance, low compliance, severe ependymal damage, and subependymal edema; and a late chronic normotensive hydrocephalus (H2) with little resistance increase, normal compliance, epithelial regeneration, and subependymal gliosis. Both the H1 and H2 stages showed an increase in the cerebral pulse pressure amplitude.

Animals

Scanning and transmission electron microscopy of a craniopharyngioma: x-ray microanalytical study of the intratumoral mineralized deposits.

This paper discusses the value of scanning electron microscopy (SEM) and x-ray microanalysis in the classification of craniopharyngiomas. This neoplasm shows epithelial nest, cords of cuboid cells, foci of squamous metaplasia, and microcystic degeneration. SEM reveals that the epithelial cysts are lined with elongated cells that possess numerous microvilli and blebs and that some cysts are lined with polyhedral cells. The microvilli are interpreted as characteristic of the fast growing craniopharyngiomas. A microanalytical study of the calcified areas reveals the presence of magnesium, phosphorus, and calcium.

Calcinosis