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Wei Ouyang

Publications and source records attributed to Wei Ouyang.

At least 19 recordsLinked to original sources

Genipin cross-linked alginate-chitosan microcapsules: membrane characterization and optimization of cross-linking reaction.

The genipin cross-linked alginate-chitosan (GCAC) microcapsule, composed of an alginate core and a genipin cross-linked chitosan membrane, was recently proposed for live cell encapsulation and other delivery applications. This article for the first time describes the details of the microcapsule membrane characterization using a noninvasive and in situ method without any physical or chemical modifications on the samples. Results showed that the cross-linking reaction generated the fluorescent chitosan-genipin conjugates. The cross-linked chitosan membrane was clearly visualized by confocal laser scanning microscopy (CLSM). A straightforward assessment on the membrane thickness and relative intensity was successfully achieved. CLSM studies showed that the shell-like cross-linked chitosan membranes of approximately 37 microm in thickness were formed surrounding the microcapsule. The reaction variables, including cross-linking temperature and time significantly affected the fluorescence intensity of the membranes. Elevating the cross-linking temperature from 4 to 37 degrees C drastically intensified the membrane fluorescence, suggesting the attainment of a high degree of cross-linking on the chitosan membrane. Extended cross-linking time altered the cross-linked membranes in modulation. Although genipin concentration and cross-linking time had little effects on the membrane thickness, cross-linking at higher temperatures tended to form relatively thinner membranes.

Alginates↗

A new method for microcapsule characterization: use of fluorogenic genipin to characterize polymeric microcapsule membranes.

Numerous microcapsule systems have been developed for a wide range of applications, including the sustained release of drugs, cell transplantation for therapy, cell immobilization, and other biotechnological applications. Despite the fact that microcapsule membrane is a dominant factor governing overall microcapsule performance, its characterization is challenging. We report a new method for characterizing microcapsule membranes, using the most common alginate-poly-L-lysine-alginate (APA) microcapsule as an example. Our data demonstrate that genipin, a naturally derived reagent extracted from gardenia fruits, interacts with poly-L-lysine (PLL) and generates fluorescence. This fluorescence allows clear visualization and easy analysis of the PLL membrane in the APA microcapsules using confocal laser scanning microscopy. The results also show that PLL binding correlates to the reaction variables during PLL coating such as PLL concentration and coating time. In addition, five other different microcapsule formulations consisting of PLL and/or chitosan membranes were examined, and the results imply that this method can be extended to characterize a variety of microcapsule membranes. These findings suggest that genipin can serve as a fluorogenic marker for rapid characterization of microcapsule membranes, a superior method that would have important implications for microcapsule research and potential in many other applications.

Capsules↗

[Field-scale study on performance comparison of bio-augmentation and compost treatment of oily sludge].

In order to explore better treatment process of oily sludge, the field scale experiments were conducted using the sludge containing 12.68% oil. The performance of microbe preparation bio-augmentation (MPB) and compost treatment with manure (CTM) was compared. For the first experiment, 10 L solution containing 150 g microbe preparations and the nutrition were sprayed onto the MPBC cell. The initial oil content of final mixture amounted to 12.12%. The initial oil content of CTM after final mixture approximated to 10.14%. During the experimental period, same quantities of the microbe preparation and nutrient solution were sprayed on MPB at the 15th and 30th day separately. At the same days, the 10 kg manure was added to CTM cell. The degradation effect of MPB was more obvious, oil content dropped to 6.42% with a 47% removal rate of oil. The oil content in control decreased slightly to 10.15% after 56 days, while in CTM it fell down to 6.98% with a total removal rate of 31%. The pH in control fluctuated slightly between 8.28 to 7.93 while that in MPB, from 7.33 to 8.08, which might due to the addition of microbe preparation. The microbial count was analyzed weekly, which represented the adaptation ability of microbe in sludge. Temperature of compost increased rapidly up to 54 degrees C in the presence of manure. The differences of two kinds of methods were identified by GC-MS and the hydrocarbons with less 21 carbons were degraded easily.

Bacteria↗

Reaction of chitosan with genipin and its fluorogenic attributes for potential microcapsule membrane characterization.

This study investigates the fluorogenic characteristics of the chitosan-genipin reaction for applications in microencapsulation research. Results showed that the chitosan-genipin reaction generated a colored and fluorescent product, with optimal excitation and emission wavelengths at 369 and 470 nm, respectively. Furthermore, it was found that reaction conditions affected the fluorescence intensity of the product. Mixture at the ratio of 4:1 (chitosan: genipin by weight) fluoresced the most. It also fluoresced stronger if the reaction occurred at higher temperature, with the intensity of 10.4 x 10(5) CPS at 37 degrees C, 5.9 x 10(5) CPS at 20 degrees C, and 2.5 x 10(5) CPS at 4 degrees C. As well, the fluorescence of the mixture developed gradually over time, attaining the emission maxima of 2.9 x 10(5), 7.6 x 10(5), and 10.0 x 10(5) CPS in 1, 6, and 18 h, respectively. Chitosan-coated alginate microcapsules were prepared without prior labeling, to which subsequent genipin treatment was applied in order to examine the potential of using genipin in microcapsule characterization. Chitosan bound to the alginate beads interacted with genipin, from which the resultant fluorescent signals allowed for clear visualization of the chitosan coating under confocal laser scanning microscopy. The relative fluorescence intensity across the chitosan membrane was found to be considerably higher than the controls (175 vs. 50). The membrane thickness measured was 29.2 +/- 7.3 microm. These findings demonstrate a convenient and effective way of characterizing chitosan-based microcapsules using genipin as a fluorogenic marker, a technique that will be useful in microcapsule research and other biomedical applications.

Capsules↗

In vitro study of alginate-chitosan microcapsules: an alternative to liver cell transplants for the treatment of liver failure.

The application of alginate-chitosan (AC) microcapsules to liver cell transplantation has not been previously investigated. In the current in vitro study, we have investigated the potential of AC microcapsules for the encapsulation of liver cells and show that the AC membrane supports the survival, proliferation and protein secretion by entrapped hepatocytes. The AC membrane provides cell immuno-isolation and has the potential for cell cryopreservation. The AC microcapsule has several advantages compared to more widely used alginate-poly-L-lysine (APA) microcapsules for the application of cell therapy.

Alginates↗

[Different patterns of abnormalities in exercise 201TI myocardial scintigraphy and their mechanisms].

OBJECTIVE: To categorize the patterns of abnormalities in exercise (201)TI myocardial scintigraphy and explore the mechanisms. METHODS: Exercise (201)TI myocardial scintigraphy was performed in 203 patients with clinically suspected coronary artery disease, including 74 normotensive patients, 78 hypertensive patients without left ventricle hypertrophy (LVH) and 51 hypertensive patients with LVH. All the patients underwent coronary angiography one month before or after (201)TI myocardial scintigraphy, and the patterns of abnormal findings were categorized as segmental, non-segmental and mixed patterns. Patients with abnormal (201)TI myocardial perfusion and normal coronary angiographic findings were followed up. RESULTS: In hypertensive patients without and with LVH, the ratios of abnormal perfusion in segmental, non-segmental and mixed types were 52/60 and 32/58, 4/60 and 9/58, and 4/60 and 17/58, respectively. The ratios of normal coronary angiography in the 3 types were 17/84, 13/13 and 10/21, respectively. Among the 40 patients followed up, 5 with segmental abnormality and 2 with mixed abnormalities developed large coronary artery disease, which was found in none of the patients with segmental abnormality. CONCLUSIONS: In hypertensive patients with and without LVH, segmental perfusion abnormalities may be attributed to the anatomic and functional stenosis of the large coronary arteries, and the non-segmental abnormal perfusion might be only possible with coronary microvascular diseases.

Coronary Disease↗

Artificial cell microcapsule for oral delivery of live bacterial cells for therapy: design, preparation, and in-vitro characterization.

PURPOSE: Bacterial cells can be engineered to synthesize a wide array of disease modifying substrates such as cytokines, vaccines and antibodies; however, their use as an orally delivered therapeutic is limited by poor gastrointestinal (GI) survival and instigation of immunogenic response. Artificial cell microcapsules have been well studied as a means to overcome such problems, however, presently obtainable microcapsules have limitations. This study summarizes a novel microcapsule design specifying its preparation and GI stability in-vitro. METHOD: Multilayer APPPA microcapsules were designed, prepared and characterized in-vitro for bacterial cell oral delivery using Lactobacillus reuteri cells as a model. Microcapsule structural integrity, mechanical stability, and GI survival studies were performed in simulated gastric (SGF) and intestinal (SIF) fluids in various pH conditions at 37.2 degrees C and compared with presently available alginate/poly-l-lysine/alginate (APA) microcapsules. HPLC was used for the microcapsule membrane permeability study. RESULTS: Results show that APPPA microcapsules can be prepared for bacterial cell encapsulation and are stable in simulated GI conditions. No microcapsule damage was reported when exposed to SGF and SIF for 12 hours at 250 rpm mechanical shaking at 37.2 degrees C. In addition, 93.2+/-2.3% and 98.9+/-0.6% of microcapsules were undamaged after 24 hours in SGF and SIF respectively. Microcapsule pH stability results show that 92.8+/-3.1% of microcapsules remained intact at pH 1, 3, 5, and 7 and no damage was observed at pH 9.0 when challenged for 24 hours. When exposed for 3 hours with 250 rpm shaking at 37.2 degrees C, no damage of the microcapsules in SGF and SIF at pH, 1,3,5,7, and 9 was observed. Compared to APA microcapsules, APPPA membranes showed superior GI stability and permeability for cell encapsulation. CONCLUSION: Novel APPPA microcapsules have superior features for oral delivery of live bacterial cells and they can be used for various clinical applications. However, further study such as membrane permeability, cytotoxicity, immune protection capacity, and suitability for live bacterial cell oral delivery in-vivo is required.

Alginates↗

Depression by isoflurane of the action potential and underlying voltage-gated ion currents in isolated rat neurohypophysial nerve terminals.

We characterized the effects of the volatile anesthetic isoflurane on the ion currents that contribute to the action potential (AP) in isolated rat neurohypophysial (NHP) nerve terminals using patch-clamp electrophysiology. Mean resting membrane potential and AP amplitude were -62.3 +/- 4.1 and 69.2 +/- 2.9 mV, respectively, in NHP terminals. Two components of outward K(+) current (I(K)) were identified in voltage-clamp recordings: a transient I(K) and a sustained I(K) with minimal inactivation. Some terminals displayed a slowly activating I(K), probably the big Ca(2+)-activated K(+) current (BK). Isoflurane reversibly inhibited AP amplitude and increased AP half-width in normal extracellular Ca(2+) (2.2 mM). In high extracellular Ca(2+) (10 mM), isoflurane also reduced the afterhypolarization peak amplitude. A transient tetrodotoxin-sensitive Na(+) current (I(Na)) was the principal current mediating the depolarizing phase of the AP. A slowly inactivating Cd(2+)-sensitive current (probably a voltagegated Ca(2+) current; I(Ca)) followed the initial I(Na). Isoflurane reversibly inhibited both I(Na) and I(Ca) elicited by a voltage-stimulus based on an averaged AP waveform. The isoflurane IC(50) for AP waveform-evoked I(Na) was 0.36 mM. Isoflurane (0.84 +/- 0.04 mM) inhibited AP waveform-evoked I(Ca) by 37.5 +/- 0.16% (p < 0.05). The isoflurane IC(50) for peak I(K) was 0.83 mM and for sustained I(K) was 0.73 mM, with no effect on the voltage dependence of activation. The results indicate that multiple voltage-gated ion channels (Na(+) > K(+) > Ca(2+)) in NHP terminals, although not typical central nervous system terminals, are inhibited by the volatile general anesthetic isoflurane. The net inhibitory effects of volatile anesthetics on nerve terminal action potentials and excitability result from integrated actions on multiple voltage-gated currents.

Action Potentials↗

Serotonin modulates hypothalamic neuronal activity.

Effects of serotonin (5-HT) on electrophysiological activities of single hypothalamic arcuate neurons in rat brain slices were observed by extracellular recording. The results showed that (1) of 385 arcuate neurons observed, the patterns of spontaneous firing were divided into 3 categories: "slow irregular" (46.0%), "fast continuous" (22.6%), and "bursting" firing (31.4%); (2) of 149 neurons tested for 5-HT, most (55.0%) responded to the drug by decreasing firing rate, 22.2% by increasing firing rate, 11.4% exhibit biphasic pattern, and 11.4% did not respond to 5-HT application; (3) substitution of low Ca2-high Mg2+ artificial cerebrospinal fluid (ACSF) for normal ACSF did not abolish the 5-HT-induced excitatory effect while it did abolish the 5-HT-induced inhibitory effect, suggesting the effect in latter cases was elicited by a Ca2+-dependent release of neuroactive substances; (4) cyproheptadine, a non-selective 5-HT receptor antagonist, antagonized the 5-HT-induced excitatory effect in all neurons tested, while pindolol, a 5-HT1A/1B receptor antagonist, antagonized the 5-HT-induced excitatory effect in 50% of neurons tested; (5) both cyproheptadine and pindolol antagonized the 5-HT-induced inhibitory effect; and (6) bicuculline, a GABAA receptor antagonist, antagonized the 5-HT-induced inhibitory effect. These results suggest that 5-HT may exert its excitatory effects directly through 5-HT1A/1B and other subtypes of 5-HT-receptors located on the surface of the neurons recorded, while its inhibitory effects are mediated indirectly through the activation of a local inhibitory GABAergic interneuron.

Action Potentials↗

Microencapsulated Genetically Engineered Lactobacillus plantarum 80 (pCBH1) for Bile Acid Deconjugation and Its Implication in Lowering Cholesterol.

Cholesterol is known to be a major risk factor for coronary heart disease (CHD). Current treatments for elevated blood cholesterol include dietary management, regular exercise, and drug therapy with fibrates, bile acid sequestrants, and statins. Such therapies, however, are often suboptimal and carry a risk for serious side effects. This study shows that microencapsulated Lactobacillus plantarum 80 (pCBH1) cells can efficiently break down and remove bile acids, and establishes a basis for their use in lowering blood serum cholesterol. Results show that microencapsulated LP80 (pCBH1) is able to effectively break down the conjugated bile acids glycodeoxycholic acid (GDCA) and taurodeoxycholic acid (TDCA) with bile salt hydrolase (BSH) activities of 0.19 and 0.08 $\mu$ mol DCA/mg CDW/h respectively. This article also summarizes the physiological interrelationship between bile acids and cholesterol and predicts the oral doses of microencapsulated Lactobacillus plantarum 80 (pCBH1) cells required for lowering cholesterol.

Journal Article↗

[99mTc-N-NOET myocardial perfusion imaging during exercise for diagnosis of coronary artery disease].

OBJECTIVE: To investigate the value of (99m)Tc-N-NOET(NOET) myocardial perfusion imaging during exercise in the diagnosis of coronary artery disease (CAD), and the relationship between exercise NOET lung/heart ratio and left ventricular diastolic function. METHODS: Exercise-delayed NOET myocardial perfusion imaging was performed in 49 patients undergoing coronary angiography, among whom 29 had coronary stenosis>or=50% and 20 normal coronary artery. RESULTS: The sensitivity and specificity of exercise NOET myocardial perfusion imaging were 86.2% and 95.0%, respectively, in the detection of CAD. The NOET lung/heart ratio of CAD patients with multiple branch involvement (0.76+/-0.13) was significantly higher than those of patients with single branch lesion (0.62+/-0.06) and with normal coronary artery (0.58+/-0.13, F=18.04, P=0.002- 0.001). When the lung/heart ratio was over 0.70, the sensitivity and specificity of the imaging for detecting the presence of multiple branch involvement were 93.5% and 83.3%, respectively. NOET lung/heart ratio showed a significant correlation with E/A ratio (r=-0.771, P<0.000 1). CONCLUSION: Exercise NOET lung/heart ratios has diagnostic values for multiple branch lesions and left ventricular diastolic function abnormalities in patients with CAD.

Adult↗

[Organic pollutants biodegradation in micro-polluted water enhanced by ultrasonic].

The effect of ultrasonic on the biotreatment of micro-polluted source water in a membrane bioreactor was studied through contrast experiments between the membrane bioreactor with and without ultrasonic. The results showed that ultrasonic at proper intensity could improve biological activity, increase organic load of the bioreactor, and enhance the removal of organic matters. The study of TTC-DHA of the bacteria and apparent molecular size distribution (AMSD) of organic compounds in the influent and effluent in the contrast experiments further proved that ultrasonic enhanced the bioactivity of the membrane bioreactor. The experiments with ultrasonic at different powers showed that ultrasonic at 10 W enhanced bioactivity most effectively. The effect of ultrasonic changed with running time. It was found that ultrasonic effect could be maintained for 24 hours, so the interval of ultrasonic treatment could be set at 24 hours. The mechanism of biological activity enhancement by ultrasonic was also investigated.

Biodegradation, Environmental↗

[Performance of treatment wetland systems for surface water quality improvement].

Intercropped with Phragmites communis and Typha angustifolia, subsurface flow constructed wetland systems (CWs) with the surface area of 3 x 20m x 2m were established beside Guanting Reservoir, an important source water base of Beijing. The treatment performance of the systems with different season were studied, the impacts of influent concentration, hydraulic loading rate and water temperature on contaminations removal were analyzed. The result showed that the subsurface flow CWs had the better decontamination effect to micro-pollution surface water. The relationship between the concentrations of CODMn and NH4+ -N in inflow and outflow followed the linear equation. The removal rates of total nitrogen (TN) and total phosphorus (TP) in the systems were 20%-60% and 30%-45%, respectively. The removal rates of contaminations were reduced with the decrease of water temperature and the increase of hydraulic loading rate, the removal rates of CODMn, N4+ -N and TN showed the positive correlation with their inflow concentration, but the removal rate of TP showed the negative correlation with its inflow concentration. Operation and management considerations of the subsurface flow CWs in winter were investigated in this study.

Biodegradation, Environmental↗

[Effects of iodine-containing food on 99mTc and 131I uptake in patients with Graves' disease].

OBJECTIVE: To investigate the changes in 99mTc and 131I uptake in patients with Grave's disease after intake of iodine-containing food. METGIDSl The 3-hour and 24-hour radioactive iodine uptake (RAIU) and 99mTc uptake ratio (TI) were measured and the thyroid weight (TW) was estimated in 20 patients with Graves' disease both before and after restraint of iodine-containing diet. RESULTS: Significant difference was found in RAIU and TI in patients after restraint of iodine-rich diet (Z=3.920, P=0.000 for 3-hour RAIU and Z=3.920, P=0.000 for 24-hour RAIU; Z=2.199, P=0.028 for TI and Z=3.920, P=0.000 for TW estimated from 99mTc images). The tendency in such changes was significantly different (Z=4.066, P=0.000 for RAIU and TI; Z=4.243, P=0.000 for RAIU and TW). After restraint of iodine-rich food, RAIU of 3-hour and 24-hour increased in all the patients, and TI decreased in 16, remained the same level in 2 and increased in 2 patients; TW decreased in 18 and increased in 2 patients. CONCLUSION: Iodine-containing food has different effects on thyroid 131I and 99mTc uptakes, which decreases 131I uptake in all the patients and increases 99mTc in 90% of them.

Adolescent↗

Isoflurane and propofol inhibit voltage-gated sodium channels in isolated rat neurohypophysial nerve terminals.

Mounting electrophysiological evidence indicates that certain general anesthetics, volatile anesthetics in particular, depress excitatory synaptic transmission by presynaptic mechanisms. We studied the effects of representative general anesthetics on voltage-gated Na+ currents (INa) in nerve terminals isolated from rat neurohypophysis using patch-clamp electrophysiological analysis. Both isoflurane and propofol inhibited INa in a dose-dependent and reversible manner. At holding potentials of -70 or -90 mV, isoflurane inhibited peak INa with IC50 values of 0.45 and 0.56 mM, and propofol inhibited peak INa with IC50 values of 4.1 and 6.0 microM, respectively. Isoflurane (0.8 mM) did not significantly alter the V1/2 of activation; propofol caused a small positive shift. Isoflurane (0.8 mM) or propofol (5 microM) produced a negative shift in the voltage dependence of inactivation. Recovery of INa from inactivation was slower from a holding potential of -70 mV than from -90 mV; isoflurane and propofol further delayed recovery from inactivation. In conclusion, the volatile anesthetic isoflurane and the intravenous anesthetic propofol inhibit voltage-gated Na+ currents in isolated neurohypophysial nerve terminals in a concentration- and voltage-dependent manner. Marked effects on the voltage dependence and kinetics of inactivation and minimal effects on activation support preferential anesthetic interactions with the fast inactivated state of the Na+ channel. These results are consistent with direct inhibition of oxytocin and vasopressin release from the neurohypophysis by isoflurane and propofol. Inhibition of voltage-gated Na+ channels may contribute to the presynaptic effects of general anesthetics on nerve terminal excitability and neurotransmitter release.

Anesthetics, Inhalation↗

[Protective effects of preconditioning phlebotomy against myocardial ischemia-reperfusion injury in rat].

OBJECTIVE: To investigate the protective effect of preconditioning phlebotomy against ischemia-reperfusion injury and the role of calcitonin gene-related peptide (CGRP) in this protection mechanism. METHODS: Sixty SD rats were randomly assigned in equal number into control, phlebotomy, and CGRP polyclonal antibody (PcAb) groups, all of which were subjected to 30 min regional ischemic followed by two-hour reperfusion, initiated 15 min after phlebotomy in the latter 2 groups. The rats in CGRP PcAb group were given the antibody (2.5 mg/kg) before phlebotomy. After the operations, plasma CGRP level was determined in 8 rats from each group by radioimmunoassay, and the infarct size (IS) by nitro blue tetrazolium, represented as percentage of the area at risk (AAR). RESULTS: The mean plasma CGRP level was significantly increased in phlebotomy group compared with the levels in control and PcAb groups (F=12.4, P=0.032-0.005), and a significant reduction in IS (F=52.4, P<0.001) and IS/AAR (F=43.7, P<0.001) occurred in phlebotomy group. CONCLUSION: Preconditioning phlebotomy has obvious cardioprotective effect against ischemia-reperfusion injury, in the mechanism of which CGRP may play a role.

Animals↗

Serotonin excites arcuate neurons directly but inhibits them through intercalated GABAergic neurons.

Effects of serotonin (5-HT) on spontaneous discharges of single hypothalamic arcuate neurons were observed in rat brain slices by extracellular recordings. The results showed that (1) of 149 neurons selected randomly and tested for 5-HT application, 33 (22.2%) were excited, 82 (55.0%) were inhibited, and 34 (22.8%) showed biphasic responses or failed to respond; (2) substitution of low Ca(2+)-high Mg(2+) artificial cerebrospinal fluid (aCSF) for normal aCSF abolished the 5-HT-induced inhibitory effect but failed to affect the 5-HT-induced excitatory effect; (3) cyproheptadine, a non-selective 5-HT receptor antagonist, could block either the 5-HT-induced excitatory or inhibitory effects in all neurons tested; and (4) bicuculline, a GABA(A)-receptor antagonist, blocked the 5-HT-induced inhibitory effect. These results imply (1) 5-HT excites arcuate neurons through a mechanism that is insensitive to the decreased extracellular Ca(2+), suggesting a direct postsynaptic action of 5-HT on the 5-HT-receptors located in the membrane of the neurons recorded; and (2) 5-HT might elicit the inhibitory effect through a Ca(2+)-sensitive release of GABA from intercalated GABAergic local neurons that are excited first by 5-HT.

Animals↗

Evidence for endogenous agmatine in hypothalamo-neurohypophysial tract and its modulation on vasopressin release and Ca2+ channels.

Agmatine, decarboxylated from arginine by arginine decarboxylase, is particularly prominent in the hypothalamus. The present study utilized the rat hypothalamo-neurohypophysial system to determine expression and "pre-synaptic" modulation of agmatine in the central nervous system (CNS). Under confocal-laser scanning, agmatine-like immunoreactivity (Agm-LI) was found enriched in arginine-vasopressin (AVP)-containing magnocellular neurons of the supraoptic nuclei (SON) and paraventricular nuclei (PVN). In addition, using electron microscopy, Agm-LI was found closely associated with large neurosecretory-like vesicles in neurohypophysial nerve terminals of posterior pituitary gland. Radioimmunoassay revealed that 10 and 30 microM agmatine concentration-dependently inhibited the depolarization-evoked AVP release from isolated neurohypophysial terminals. Using perforated patch-clamp, effects of agmatine on whole-terminal voltage-gated ion currents in the isolated neurohypophysial nerve terminals were examined. While it did not significantly affect either tetrodotoxin (TTX)-sensitive Na(+) or sustained Ca(2+)-activated K(+) channel currents, agmatine (1-40 microM) inhibited Ca(2+) channel currents in approximately 53% of the total nerve terminals investigated. The onset of inhibitory effect was immediate, and the inhibition was reversible and concentration-dependent with an IC(50)=4.6 microM. In the remaining (approximately 47%) neurohypophysial nerve terminals, only a higher (120 microM) concentration of agmatine could moderately inhibit Ca(2+) channel currents. The results suggest that: (1) endogenous agmatine is co-expressed in AVP-containing, hypothalamic magnocellular neurons of the SON/PVN and in neurohypophysial nerve terminals of posterior pituitary gland; (2) agmatine may serve as a physiological neuromodulator by regulating the voltage-gated Ca(2+) channel and, as a result, the release of AVP from neurohypophysial nerve terminals.

Agmatine↗