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Biomedical subjects

S Lin

Publications and source records attributed to S Lin.

At least 55 records · Page 3Linked to original sources

Delta9-THC training dose as a determinant for (R)-methanandamide generalization in rats.

The objective of this study was to examine if (R)-methanandamide, a metabolically stable chiral analog of the endogenous ligand anandamide, is a cannabimimetic with a lower efficacy than delta9-THC. Employing a two-lever choice drug discrimination procedure, rats were trained to discriminate between 1.8, 3.0, or 5.6 mg/kg delta9-tetrahydrocannabinol (delta9-THC) and vehicle. Different training doses were used in order to create assays with different efficacy demands. Generalization tests with 18 mg/kg (R)-methanandamide yielded around 90% delta9-THC responses in the two lower delta9-THC training dose conditions. However, only around 60% delta9-THC responses occurred in the 5.6 mg/kg delta9-THC training dose condition in tests with 18 mg/kg (R)-methanandamide; a higher dose (30 mg/kg) produced even fewer delta9-THC-appropriate responses in this group. Morphine did not substitute for delta9-THC. In conclusion, the data with delta9-THC and (R)-methanandamide indicate that cannabinoid agonists can have varying degrees of intrinsic activity at a receptor site, or may produce their behavioral actions through multiple mechanisms, or both.

Animals

Pre- and postnatal exposure to 3,3',4,4'-tetrachlorobiphenyl: II. Effects on the reproductive capacity and fertilizing ability of eggs in female mice.

This study investigated the effects of 3,3',4,4'-tetrachlorobiphenyl (TCB) on the reproductive capacity of female mice. Female C57BL/6J mice (F-0) were fed diets containing 0, 3, or 30 ppm TCB for 2 weeks before pairing with nontreated C57BL/6J males for a 10-day breeding period. Females were continued on their treatment diet throughout mating, gestation, and lactation. Female offspring (F-1) were fed the same diet as their dams throughout the study. The reproductive capacity of F-1 females was examined by mating with non-treated B6D2-F1 males. In addition, the fertilizing ability of eggs from F-1 females was examined in vitro by insemination with sperm from nontreated B6D2-F1 males. Fecundity in F-0 females after mating was 80%, 71%, and 47% in the 0, 3, and 30 ppm treatment groups, respectively. Four-day and 21-day survival indices were lower for offspring of 30 ppm TCB-treated F-0 females than for offspring of the control females. Fecundity in F-1 females was the same among all treatment groups, however, all offspring born to 3- and 30-ppm TCB-treated F-1 females died before 4 days of age. Although the litter size at birth was not affected, the in vitro fertilizing ability of eggs in the 3- and 30-ppm treatment groups was lower than in the control group. This decrease in fertilizing ability was associated with an increase in degenerated eggs. F-0 females treated with 30 ppm TCB had enlarged livers during pregnancy and lactation. At 5 and 6 weeks, liver enlargement and thymus atrophy were apparent in F-1 females exposed to 30 ppm TCB. This study demonstrated impaired reproductive capacity and decreased egg fertilizing ability in TCB-treated female mice.

Animals

Examination of ligand-induced conformational changes in the beta2 adrenergic receptor.

The environmentally sensitive and cysteine reactive fluorescent probe, IANBD, was used to monitor ligand-induced structural changes in the beta2 adrenergic receptor (beta2AR) by fluorescent spectroscopy. We found that agonists caused a dose-dependent and reversible decrease in fluorescence from the purified IANBD-labeled beta2AR. This suggested that agonists promote a conformational change in the receptor that leads to an increase in the polarity of the environment around one or more IANBD labeled cysteines. The wildtype receptor contains eight free cysteines and mutagenesis and peptide mapping experiments have indicated that several of these sites are accessible for chemical derivatization. Thus, to identify the cysteine(s) involved in the agonist-induced change in fluorescence and thereby map agonist-induced conformational changes in the beta2AR, we generated a series of mutant receptors having limited numbers of cysteines available for fluorescent labeling. Fluorescence spectroscopy analysis of the purified and site-selectively IANBD-labeled mutants showed that IANBD labeled 125Cys and 285Cys are responsible for the observed changes in fluorescence consistent with movements of TM III and VI in response to agonist binding.

Adrenergic beta-Agonists

Structural requirements for arachidonylethanolamide interaction with CB1 and CB2 cannabinoid receptors: pharmacology of the carbonyl and ethanolamide groups.

Analogs of arachidonylethanolamide (anandamide) were prepared to investigate the structural requirements for ligand binding to and activation of the CB1 and CB2 cannabinoid receptors. The importance of the presence and the placement of the carbonyl was examined with analogs lacking the carbonyl or with the carbonyl amide order reversed. The presence and location of the carbonyl is essential for high-affinity binding to both cannabinoid receptor subtypes, and for determination of signal transduction via G-proteins. Methyl groups were substituted on the 1'- and 2'-positions of arachidonylethanolamide and the significance of chirality was examined. Stereochemical differences in the ethanolamide group influence the affinity for both cannabinoid receptor subtypes and the signal transduction capabilities of the methanandamide derivatives.

Adenylyl Cyclases

Allergy-associated FcRbeta is a molecular amplifier of IgE- and IgG-mediated in vivo responses.

A role for the Fc receptor beta chain (FcRbeta) in the pathogenesis of allergy has been suggested by genetic studies. FcRbeta is a subunit common to the high-affinity IgE (FcepsilonRI) and low-affinity IgG (FcgammaRIII) receptors, both of which contribute to the initiation of allergic reactions. Current in vitro data suggest that FcRbeta can function as either a positive or negative regulator, leaving a mechanistic explanation for its association with the development of atopy unclear. To address this controversy, we have generated novel mouse models relevant to human Fc receptor function. Analysis of FcepsilonRI- and FcgammaRIII-dependent responses in these mice provides unequivocal genetic evidence that FcRbeta functions as an amplifier of early and late mast cell responses and, remarkably, in vivo anaphylactic responses.

Anaphylaxis

C-met activation is necessary but not sufficient for liver colonization by B16 murine melanoma cells.

Metastasis to the liver is a frequent event in clinical oncology, the molecular mechanisms of which are not fully understood. We have recently reported a consistent overexpression of c-met in B16 melanoma cells selected in vivo for enhanced liver metastatic ability. In this study we address the question as to whether constitutive activation of c-met is a necessary and sufficient condition for enhanced liver colonization by B16 melanoma cells. Different levels of c-met expression and/or activation in B16 cells were achieved by subcloning, or by c-DNA transfection with either HGF/SF or the oncogenic form of c-met (tpr-met). Metastatic ability of the different populations was then evaluated in vivo by the lung colonization (experimental metastasis) assay. Results indicate that c-met (but not tpr-met) activation in B16 melanoma cells may increase their liver colonizing potential, probably by enhancing motility and invasion in response to paracrine interactions with its ligand. C-met expression per se, however, is not able to change the organ specificity of the cells. C-met activation appears instead to be required at later stages of liver colonization by B16 melanoma cells, in order to enhance their site-specific metastatic ability.

Animals

A zebrafish model for hepatoerythropoietic porphyria.

Defects in the enzymes involved in the haem biosynthetic pathway can lead to a group of human diseases known as the porphyrias. yquem (yqe(tp61)) is a zebrafish mutant with a photosensitive porphyria syndrome. Here we show that the porphyric phenotype is due to an inherited homozygous mutation in the gene encoding uroporphyrinogen decarboxylase (UROD); a homozygous deficiency of this enzyme causes hepatoerythropoietic porphyria (HEP) in humans. The zebrafish mutant represents the first genetically 'accurate' animal model of HEP, and should be useful for studying the pathogenesis of UROD deficiency and evaluating gene therapy vectors. We rescued the mutant phenotype by transient and germline expression of the wild-type allele.

Amino Acid Sequence

Identification of a calcium channel modulator using a high throughput yeast two-hybrid screen.

The interaction of the N-type calcium channel beta3 subunit with the alpha1B subunit alters the activation/inactivation kinetics and the maximal conductance of the channel. The defined protein-protein interaction of the human alpha1B and beta3 subunits provides a target for small-molecule modulation of N-type channel activity. We describe a high throughput screen based on a counterselection yeast two-hybrid assay, which was used to identify small molecules that disrupt alpha1B-beta3 subunit interactions and inhibit N-type calcium channel activity. These small molecules may be a new class of calcium channel antagonists with therapeutic potential.

Calcium Channel Blockers

Plasma antioxidants and lipid peroxidation in acute myocardial infarction and thrombolysis.

OBJECTIVES: The aim of this study was to investigate the balance between prooxidative and protective mechanisms in patients with acute myocardial infarction (AMI) throughout streptokinase (STK) therapy. METHODS: Patients who presented to coronary care unit within 3 hours of infarction were followed. Blood was collected before, 2 and 24 hours post STK. Plasma lipid peroxidation was analyzed by a free radical generating system (AAPH) and malondialdehyde equivalents and conjugated dienes quantitated. Plasma vitamins A, E and beta-carotene, were analyzed by HPLC. Patients' results were compared with those from age-matched, healthy control subjects. RESULTS: In 38 patients with AMI, baseline plasma antioxidant vitamin concentration was reduced compared with a healthy control group. Upon STK therapy, there was a significant drop in plasma vitamin E concentration. Successful reperfusion was followed by an increased plasma oxidizability. Plasma lipids were not significantly different in the AMI patients except for a lower HDL-cholesterol concentration. CONCLUSIONS: Patients with AMI showed a drop in plasma antioxidant vitamins. Upon thrombolysis, there was an enhanced lipid peroxidation. These alterations indicate the significance of free radical generation processes in reperfusion injury in AMI patients, and suggest the potential involvement of antioxidants in the management of AMI treated by thrombolysis.

Aged

Tetravinyl-tetramethylcyclo-tetrasiloxane (tetravinyl D4) is a mutagen in Rat2lambda lacI fibroblasts.

Small fragments of silicone gels injected intraperitoneally have been used to induce plasmacytomas in genetically susceptible mice. Silicone oils, in contrast to silicone gels, are apparently not tumorigenic in the mouse plasmacytoma system. The reason for this difference as well as the mechanism of silicone gel-induced plasmacytoma development is poorly understood. We chose to examine the possibility that low molecular wt silicone compounds such as siloxanes, leaking from the complex silicone gel matrix into the surrounding tissue, may be mutagenic. We postulate that this mutagenicity may be a critical determinant of the plasmacytoma inducing potency of silicone gels. Six siloxane compounds, either linear or cyclic di-, tri-, or tetrasiloxanes substituted with methyl or vinyl moieties, were selected as model compounds to study mutagenicity in Rat2lambda lacI fibroblasts in vitro. Using phage lambda-derived lacI/lacZ genes as target/reporter genes to quantitate mutagenesis, and gamma-cyclodextrin as vehicle to effectively deliver siloxanes, we found that exposure to 50 microM of tetravinyl-tetramethylcyclo-tetrasiloxane (tetravinyl D4) resulted in a modest 1.7-fold increase of mutant frequencies over controls in Rat2lambda lacI cells. In related toxicity experiments, tetravinyl D4 was shown to perturb lipid membranes leading to a loss of cytosolic glutathione (GSH), which by itself resulted in a 1.5-fold increased mutant rate in Rat2lambda lacI cells. We conclude that certain siloxanes may act as direct mutagens in mammalian cells. In addition, siloxane-induced mutagenicity may be enhanced by the depletion of intracellular GSH caused by the interaction of lipophilic siloxanes with cell membranes.

Animals

Utrophin is a regeneration-associated protein transiently present at the sarcolemma of regenerating skeletal muscle fibers in dystrophin-deficient hypertrophic feline muscular dystrophy.

Utrophin, an autosomal homologue of dystrophin, has been suggested as a possible therapeutic replacement of dystrophin in Duchenne or Becker muscular dystrophies (DMD/BMD). We have undertaken this study to examine the expression of utrophin in the skeletal muscle of dystrophin-deficient cats, a spontaneous animal model for dystrophinopathy. Dystrophin was normal in size, but very low in quantity by immunohistochemistry and Western blot. Utrophin was heterogeneously overexpressed at extrajunctional sarcolemma of regenerating muscle fibers, as defined by overexpression of the myogenic markers: vimentin, desmin, and developmental isoform of myosin heavy chain (MHCd). Muscle regeneration occurred in 6 stages as assessed by fiber size, and immunolabeling of desmin, vimentin, and MHCd. Differential developmental patterns of utrophin, alpha-sarcoglycan, and beta-dystroglycan expression were seen with an increase followed by a decrease and with changes in their respective location. These results suggest that utrophin is a regeneration-associated protein. It can functionally replace dystrophin in anchoring dystrophin-associated proteins (DAPs). However, the expression of utrophin and its anchored DAPs is restricted to the period of muscle regeneration and tends to decrease in late stages. This study therefore suggests a novel role of utrophin during skeletal muscle regeneration.

Animals

Effects of maternal work activity during pregnancy on infant malformations.

This article examines the association between two birth defects, neural tube defects and oral cleft defects, and maternal physical work demands during the periconceptional period. A case-control study was conducted by comparing exposure characteristics of mothers of malformed infants, as ascertained from the New York State Congenital Malformations Registry (n = 520), with mothers of non-malformed infants (n = 1154). Case groups were further subdivided on whether infants had additional defects. Occupational exposure information was collected from a self-administered questionnaire, and demographic variables from vital records. The results showed no general differences between cases and controls in most variables. However, those infants with cleft defects plus additional defects tended to have a marginally increased risk (odds ratio = 1.76; 95% confidence interval, 1.02-3.21) in relation to maternal jobs requiring standing (> or = 75% of time). We suggest that exposure assessment be improved and defects subdivided for future studies.

Case-Control Studies

Whole-cell immunolocalization of nitrogenase in marine diazotrophic cyanobacteria, trichodesmium spp

The mechanism by which planktonic marine cyanobacteria of the genus Trichodesmium fix N2 aerobically during photosynthesis without heterocysts is unknown. As an aid in understanding how these species protect nitrogenase, we have developed an immunofluorescence technique coupled to light microscopy (IF-LM) with which intact cyanobacteria can be immunolabeled and the distribution patterns of nitrogenase and other proteins can be described and semiquantified. Chilled ethanol was used to fix the cells, which were subsequently made permeable to antibodies by using dimethyl sulfoxide. Use of this technique demonstrated that about 3 to 20 cells (mean +/- standard deviation, 9 +/- 4) consecutively arranged in a Trichodesmium trichome were labeled with the nitrogenase antibody. The nitrogenase-containing cells were distributed more frequently around the center of the trichome and were rarely found at the ends. On average 15% of over 300 randomly encountered cells examined contained nitrogenase. The percentage of nitrogenase-containing cells (nitrogenase index [NI]) in an exponential culture was higher early in the light period than during the rest of the light-dark cycle, while that for a stationary culture was somewhat constant at a lower level throughout the light-dark cycle. The NI was not affected by treatment of the cultures with the photosynthetic inhibitor dichloro 1,3'-dimethyl urea or with low concentrations of ammonium (NH4Cl). However, incubation of cultures with 0.5 &mgr;M NH4Cl over 2 days reduced the NI. The IF technique combined with 14C autoradiography showed that the CO2 fixation rate was lower in nitrogenase-containing cells. The results of the present study suggest that (i) the IF-LM technique may be a useful tool for in situ protein localization in cyanobacteria, (ii) cell differentiation occurs in Trichodesmium and only a small fraction of cells in a colony have the potential to fix nitrogen, (iii) the photosynthetic activity (CO2 uptake) is reduced if not absent in N2-fixing cells, and (iv) variation in the NI may be a modulator of nitrogen-fixing activity.

Journal Article

Impact of fundoplication on bolus transit across esophagogastric junction.

This study analyzed the effect of fundoplication on the mechanics of liquid and solid bolus transit across the esophagogastric junction (EGJ). The squamocolumnar junction was endoscopically clipped in seven controls, seven hiatal hernia patients, and seven patients after laparoscopic Nissen fundoplication. Concurrent manometry and fluoroscopy were done during swallows of liquid barium and a 13-mm-diameter marshmallow. The EGJ opening, pressure gradients, transit efficacy, and axial motion were measured. The axial motion of the EGJ was reduced in the fundoplication and hiatal hernia patients. The opening dimensions at the squamocolumnar junction were similar among groups, but in each case the constriction limiting flow to the stomach was at the hiatus and this was substantially narrowed with fundoplication. As a result, liquid intrabolus pressure was increased and marshmallow transit frequently required multiple swallows. We conclude that fundoplication limits the axial mobility of the EGJ and leads to a restricted hiatal opening. These alterations decrease the efficacy of solid and liquid transit into the stomach and are potential causes of dysphagia in this population.

Adult

Retinoic acid-receptor activation of SP-B gene transcription in respiratory epithelial cells.

Retinoids are known to play important roles in organ development of the lung. Retinoids exert their activity by modulating the expression of numerous genes, generally influencing gene transcription, in target cells. In the present work, the mechanism by which retinoic acid (RA) regulates surfactant protein (SP) B expression was assessed in vitro. RA (9-cis-RA) enhanced SP-B mRNA in pulmonary adenocarcinoma cells (H441 cells) and increased transcriptional activity of the SP-B promoter in both H441 and mouse lung epithelial cells (MLE-15). Cotransfection of H441 cells with retinoid nuclear receptor (RAR)-alpha, -beta, and -gamma and retinoid X receptor (RXR)-gamma further increased the response of the SP-B promoter to RA. Treatment of H441 cells with RA increased immunostaining for the SP-B proprotein and increased the number of cells in which the SP-B proprotein was detected. An RA responsive element mediating RA stimulation of the human SP-B promoter was identified. RAR-alpha and -gamma and RXR-alpha but not RAR-beta or RXR-beta and -gamma were detected by immunohistochemical analysis of H441 cells. RA, by activating RAR activity, stimulated the transcription and synthesis of SP-B in pulmonary adenocarcinoma cells.

Adenocarcinoma

Influence of hepatocyte growth factor/scatter factor on the metastatic phenotype of B16 melanoma cells.

B16 melanoma cells selected in mice for liver-specific metastasis (B16-LS9) overexpress a constitutively active form of the hepatocyte growth factor/scatter factor receptor (HGF/SFr), the product of the c-met proto-oncogene. HGF/SF can affect both invasion and growth of receptive cells. In fact, we show that overexpression of c-met in B16-LS9 cells results in a higher inducibility of two different proteolytic activities (uPA and gelatinase), in correlation with a stronger invasive and motility response to HGF/SF treatment. However, HGF/SF treatment inhibits growth of B16 cells, which might appear in contradiction with the observation that c-met overexpression and constitutive activation seems to be required for efficient liver colonization. However, this apparent discrepancy is resolved by the finding that liver-derived, but not lung-derived factor(s), can efficiently rescue B16-LS9 cells from the growth inhibitory effects of HGF/SF, while not changing their motility response. Therefore, overexpression of c-met in B16-LS9 cells might give a specific advantage in liver colonization, because specifically at this site B16-LS9 cells can take full advantage of the positive effects exerted by HGF/SF stimulation on motility and invasion, while the negative effects on growth are counteracted by other paracrine factor(s).

Animals

Effects of delta-9-tetrahydrocannabinol and (R)-methanandamide on open-field behavior in rats.

This study compared the effects of (R)-methanandamide, an analog of the mammalian brain constituent anandamide, and delta-9-tetrahydrocannabinol on the open-field behavior of male Sprague-Dawley rats. Rats were individually housed with free access to food and water. Animals were treated with 0, 1, 3, and 5.6 mg/kg delta-9-tetrahydrocannabinol given i.p. 30 min pre-session; and 0, 3, 10, and 18 mg/kg (R)-methanandamide, 15 min pre-session. The behavioral categories recorded were ambulation (the number of squares crossed), rearing (the number of times the rat stood erect on its hind-legs), latency (the time in seconds to leave the starting area, the circle in the center of the field), circling (the number of times the animal turned around its vertical axis, 0.5 point given for each 180 degrees turn), grooming (the number of cleaning bouts), urination and defecation (the number of urination spots and fecal boli deposited during the 5 min observation period). Delta-9-tetrahydrocannabinol was more potent than (R)-methanandamide, but otherwise the effects of delta-9-tetrahydrocannabinol and (R)-methanandamide were similar, with one exception; whereas delta-9-tetrahydrocannabinol produced dose-related increases in circling, (R)-methanandamide did not increase circling over the doses examined. The delta-9-tetrahydrocannabinol-induced increase in circling was blocked by the central cannabinoid receptor CB1 antagonist SR 141716. The differential effects with regard to circling may indicate that there are qualitative behavioral differences in the effects of delta-9-tetrahydrocannabinol and (R)-methanandamide.

Analysis of Variance