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Spectrophotometric assay for chloramphenicol and some derivatives in the pure form and in formulations.

A new analytical method for chloramphenicol and its derivatives, chloramphenicol succinate sodium and D-(-)-threo-2-amino-L-[p-nitrophenyl]-1,3-propanediol (chloramphenicol base) in the pure state or in pharmaceutical preparations, is described. The method is based on measuring the blue colour produced by the interaction of ammonium molybdate with the products of the alkaline hydrolysis of the drugs. There are certain advantages of simplicity and sensitivity over current methods. The Beer's law limits, effects of temperature, acidity and reagent concentration, and statistical analysis of experimental results are reported.

Journal Article↗

Enantiomeric separation of chiral carboxylic acids, as their diastereomeric carboxamides, by thin-layer chromatography.

A thin-layer chromatographic (TLC) method is described for the enantiomeric separation of chiral carboxylic acids using chiral derivatization and non-chiral TLC conditions (ordinary plates and mobile phases) to separate the diastereomeric carboxamides obtained. New chiral derivatizing agents, "levobase" (1R, 2R)-(-)-1-(4-nitrophenyl)-2-amino- 1,3-propanediol, and "dextrobase" (the enantiomer of levobase) are used for carboxamide formation in the presence of dicyclohexylcabodiimide as coupling agent. The procedure is very simple and convenient to carry out. Good resolution is obtained for a wide range of carboxylic acid enantiomeric pairs containing one to two chiral centres.

Journal Article↗

Radiosynthesis and evaluation of N-(3-[18F]fluoropropyl)paroxetine as a radiotracer for in vivo labeling of serotonin uptake sites by PET.

To visualize serotonin uptake sites by positron emission tomography (PET), N-(3-[18F]fluoropropyl)-paroxetine ([18F]FPP), a derivative of the selective serotonin uptake blocker paroxetine, was synthesized from 3-[18F]fluoropropyltosylate and paroxetine via a one-pot procedure. The rate of formation of [18F]FPP was a function of the ratio of the initial amount of paroxetine to that of 1,3-propanediol bistosylate with which [18F]fluoropropyltosylate was synthesized. When the reaction mixture contained an excess amount of paroxetine over that of the propyl-bistosylate, the radiosynthesis followed by HPLC purification, which took approx. 90 min, gave [18F]FPP in a radiochemical yield of approx. 8%, and in high radiochemical and chemical purity. The specific activity was 2640 +/- 360 mCi/mumol. The brain biodistribution of [18F]FPP showed no distinguishable localization in regions with high density of serotonin uptake sites such as hypothalamus or olfactory tubercles. In vitro binding assays revealed that N-fluoropropylation of paroxetine reduced the affinity for the serotonin uptake site by three orders of magnitude.

Animals↗

Kinetics of propylene glycol elimination and metabolism in rat.

The kinetics of 1,2-propanediol (PD) metabolism in vivo have been determined by employing the Michaelis-Menten rate equation; it was found that maximum metabolizing capacity was 8.33 mmole PD/kg/hr in the rat, which is equivalent to 1.06 kg/day for an average 70-kg human. The rate equation could be suitably used for optimizing the dosage schedule of a drug from the linear elimination pattern; in the present case this gave a Km value of 17.86 mmole/kg on the basis of the elimination rate of PD. The competitive inhibition of PD elimination by preadministration of pyrazole (Ki = 44 mumole/kg) demonstrated that the first step of the biotransformation of PD catalyzed by the NAD-dependent dehydrogenase might be the rate-limiting step for its in vivo metabolism. The low threshold level of the compound and significant rate of metabolism suggested that the CNS toxicity reported in clinical studies might be due to some of its metabolites such as lactaldehyde and other oxo compounds. Thus, PD could not be considered as an inert and innocuous substance.

Alcohol Dehydrogenase↗

The role of propylene glycol metabolism in lactatemia in the rabbit.

Propylene glycol (1,2-propanediol PD) has been reported to significantly alter the blood parameters when administered as a drug vehicle. In this study, experiments were performed to estimate the pH, levels of PD, and its metabolites to determine the acute effect of PD in blood. PD was administered to rabbits orally in a single dose of 1 ml 28.4% aqueous solution per 100 g body weight equivalent to 38.66 mmol/kg. Whole blood pH and the levels of PD and metabolites were estimated at fast (O.O h, before feeding PD) and at 0.25, 1, and 3 h after the dose. PD elevated the concentrations of blood PD to its maximum (41.04 +/- 9.98 mmol/liter, n = 4) at 1 h; whereas blood PD is normally absent during fasting. PD significantly increased (P less than 0.01) the concentration of L-lactate in blood, which reached its plateau (2.55 +/- 0.62 mmol/liter, n = 4) at 0.25 h and was 2.45-fold higher than the observed fasted values (1.04 +/- 0.22 mmol/liter, n = 4). Production of D-lactate in blood was similarly increased significantly from 5.1 +/- 5.0 mumols/liter at fast to 150.0 +/- 30.4 mumols/liter at 3 h after oral PD (P less than 0.001, n = 4). As was observed in the fasted blood of PD treated rabbits, D-lactate levels at fast and after saline ingestion in the control animals was found either absent or too low. Despite this increase in lactate, blood pH did not alter significantly when appropriate anticoagulant, i.e., heparin + 4-methylpyrazole, was employed.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Felbamate modulates the strychnine-insensitive glycine receptor.

Felbamate (2-phenyl-1,3-propanediol dicarbamate) is a novel anticonvulsant substance whose mechanism of action is not clearly understood. The present investigation examined its ability to modulate the strychnine-insensitive glycine receptor associated with the N-methyl-D-aspartate (NMDA) receptor. Felbamate decreased the magnitude of glycine (100 microM)-enhanced NMDA (100 microM)-induced intracellular calcium ([Ca2+]i) transients in mouse cerebellar granule cells which had been loaded with the Ca(2+)-sensitive fluorescent probe indo-1 acetoxymethyl ester (indo-1/AM). This effect of felbamate was concentration dependent, with a maximal effect observed at 300 microM (65 +/- 4% of control). In the Frings audiogenic seizure-susceptible mouse model of reflex epilepsy, the glycine agonist D-serine (150 nmol, i.c.v.) completely blocked the anticonvulsant activity of a maximally effective dose of felbamate (19 mg/kg, i.p.). This effect of D-serine could be reversed by increasing the administered dose of felbamate to 29 mg/kg. Furthermore, administration of D-serine (300 nmol, i.c.v.) to felbamate-treated Frings mice produced a parallel right shift in felbamate's anticonvulsant dose-response curve (ED50s: 9.4 mg/kg for felbamate vs. 17.7 mg/kg for felbamate + D-serine). The results obtained in this investigation suggest that the ability of felbamate to modulate the strychnine-insensitive glycine receptor may be physiologically and behaviorally relevant to its anticonvulsant mechanism of action.

Animals↗

Felbamate, a novel antiepileptic drug, reverses N-methyl-D-aspartate/glycine-stimulated increases in intracellular Ca2+ concentration.

Felbamate, 2-phenyl-1,3-propanediol dicarbamate, is a novel, orally active anticonvulsant that has recently been approved for the treatment of Lennox-Gastaut syndrome and partial onset seizures in the United States. Felbamate is active in a broad range of animal anticonvulsant tests. Although its mechanism of action has yet to be fully elucidated, felbamate appears to act by inhibiting the spread of seizures and elevating seizure threshold. One proposed mechanism of action for felbamate is via the NMDA receptor complex. Previous studies have demonstrated the ability of felbamate to inhibit glycine binding at the NMDA receptor complex. The present study examined the effects of felbamate on NMDA/glycine-stimulated increases in intracellular calcium (Ca2+) using cultured rat hippocampal neurons. The results of these experiments demonstrate that felbamate inhibits NMDA/glycine-stimulated increases in intracellular Ca2+ with a minimal effective concentration of 100 microM.

Animals↗

Metallophthalocyanines as possible lignin peroxidase models.

Several metalloporphyrins, particularly highly chlorinated water soluble meso-tetraphenylporphyrins, have been shown to be good biomimetics of the lignin peroxidases which degrade lignin in vivo. Metal complexes of the water soluble phthalocyaninetetrasulfonic acid have been examined as catalysts for the oxidation of lignin since the phthalocyanines are readily available and inexpensive. The copper(II), nickel(II) and cobalt(II) complexes showed little catalytic activity towards the oxidation of veratryl alcohol (a substrate of the lignin peroxidases). The iron(III) and manganese(III) complexes on the other hand were able to catalyze the oxidation of veratryl alcohol, 4-ethoxy-3-methoxyphenyl-glycerol-beta-guaiacyl ether (a beta-O-4-dimer) and 1-(4-ethoxy-3-methoxy)-2-(4-methoxyphenyl)-1,3-propanediol (a beta-1 dimer). These catalysts are, however, much less stable than the halogenated meso-tetraphenylporphyrins and this lower stability, which is dependent upon pH and the oxidant, limits their use as catalysts.

Benzyl Alcohols↗

Enzymatic synthesis of (2E,4E)-(6R,10R)-4,6,10,12-tetramethyl-2,4-tridecadien-7-one, the sex pheromone of Matsucoccus matsumurae Japanese pine bast scale.

The sex pheromone of Matsucoccus matsumurae Japanese pine bast scale (2E,4E)-(6R,10R)-4,6,10,12-tetramethyl-2,4-tridecadien-7-one (1) was synthesized with stereocontrol from (2R,4S)-5-acetoxy-2,4-dimethyl-pentanol (3), which in turn was prepared by lipase-catalyzed transesterification of meso-2,4-dimethyl-1,5-propanediol (2).

Acetylation↗

Synthesis and evaluation of 1'-[18F]fluorometoprolol as a potential tracer for the visualization of beta-adrenoceptors with PET.

(+/-)-1'-[18F]Fluorometoprol 4 was prepared from desisopropylmetoprolol and [18F]fluoroisopropyl tosylate 2 with a radiochemical yield of 2% [corrected for decay to end of bombardment (EOB), synthesis time 90 min]. Synthon 2 was prepared from (S)-1,2-propanediol di(p-toluenesulfonate) in 45% radiochemical yield (EOB, 40 min). Compound 4 shows in two in vitro assays a similar affinity at beta-adrenoceptors (about 0.3 microM) as metoprolol 5, but with a slightly higher beta 1/beta 2-adrenoceptor selectivity ratio (48.6 vs 30.7). In vivo experiments with 4 showed almost no receptor-mediated uptake in the heart, probably because the affinity of (fluoro)metoprolol for the beta 1-adrenoceptors is too low for successful imaging. However, the in vitro experiments suggest that the fluoroisopropyl group is suitable for the synthesis of [18F]fluorinated beta 1-adrenergic receptor binding ligands.

Animals↗

Synthesis and biological evaluation of radioiodinated phospholipid ether analogs.

Previous work has shown that radioiodinated phospholipid ether analogs with the iodine-125 substituted on the meta position of the aromatic ring readily localized in a variety of animal tumors. In an effort to ascertain the importance of such meta substitution, three phospholipid ether analogs with the iodine-125 in the para position were synthesized for evaluation as potential tumor-localizing imaging agents. 12-(p-Iodophenyl)dodecyl phosphocholine, 1-O-[12-(p-iodophenyl)dodecyl]-1,3-propanediol-3-phosphocholine, and 1-O-[12-(p-iodophenyl)dodecyl]-2-O-methyl-3-rac-glycerophosphocholine were synthesized and labeled with iodine-125 via an isotope exchange procedure. Similar to previous results with the meta substituted analogs, tissue distribution studies with the three para analogs demonstrated tumor localization and retention of radioactivity at 24 h after i.v. injection. In all three cases, the para isomers showed greater tumor avidity than the meta isomers and clearance of the radiotracer from the tumor was much slower than the clearance from nontarget tissue. 12-(p-Iodophenyl)dodecyl phosphocholine afforded the greatest tumor-to-nontarget tissue ratio. For example, the tumor-to-blood and tumor-to-liver ratios at 24 h were 10.96 and 1.85, respectively. As a result of such selective tumor retention, it was possible to clearly delineate the tumor using gamma-camera scintigraphy.

Animals↗

Incorporation of nonbase residues into synthetic oligonucleotides and their use in the PCR.

Oligonucleotides containing the nonbase residues 1,3-propanediol or 1,4-anhydro-2-deoxy-D-ribitol were synthesized and used as primers for the polymerase chain reaction (PCR). Since these residues cannot be replicated by a DNA polymerase, the resulting PCR products have protruding 5' ends. Primers were designed with three regions, a 3' region complementary to the desired template, a 5' region complementary to a preselected nucleotide sequence, and a nonreplicable element interposed between these two containing 1-3 of the nonbase residues. The primers were used in a PCR and the products hybridized without denaturation to a solid support containing an immobilized preselected nucleotide sequence. Studies are reported showing the effects of the nonreplicable elements in primer extension reactions and the application to the capture of PCR products.

Base Sequence↗

Comparative quantification of sphingolipids and analogs in biological samples by high-performance liquid chromatography after chloroform extraction.

Sphingosine 1-phosphate (S1P) is an extra- and intracellular messenger that specifically activates five G-protein-coupled cell surface receptors designated S1P(1-5). The S1P(1) receptor is particularly important for the maintenance of immune surveillance by regulating egress of lymphocytes from thymus and secondary lymphoid organs. S1P is generated through phosphorylation of sphingosine which is catalyzed by sphingosine kinase types 1 and 2. The immunosuppressant and sphingosine analog Fingolimod (2-amino-2-(2-[4-octylphenyl]ethyl)-1,3-propanediol, FTY720) can also be phosphorylated and induces lymphopenia by downregulating cell surface expression of the S1P(1) receptor on lymphocytes. To analyze the role of S1P in lymphocyte circulation and distribution we established a high-performance-liquid-chromatography-based method for parallel detection and quantification of Fingolimod, sphingosine, and dihydrosphingosine together with their phosphorylated derivatives Fingolimod-phosphate, S1P, and dihydrosphingosine 1-phosphate. Phosphorylated and nonphosphorylated lipids were efficiently isolated from biological samples such as cells, tissues, serum, plasma, and media by simple chloroform extraction. Fluorescence labeling with 9-fluorenylmethyl chloroformiate ensured high selectivity and enhanced sensitivity for sphingolipid detection. The described method provides an accurate approach to investigate phosphorylation, dephosphorylation, hydrolyzation, and dehydrolyzation of sphingolipids and analogs. In addition it works independently from enzymatic conversions, measuring actual concentrations rather than enzymatic activities.

Animals↗

Structural studies of a Phe256Trp mutant of human salivary alpha-amylase: implications for the role of a conserved water molecule in enzyme activity.

In the mechanism of hydrolysis of starch by alpha-amylases, a conserved water molecule bridging two catalytic residues has been implicated. In human salivary alpha-amylase (HSAmy), this water (W641), observed in many alpha-amylase structures, is part of a chain of water molecules. To test the hypothesis that W641 may be involved in the mechanism, Phe256 in the close vicinity was mutated to a Trp residue. X-ray structure of F256W complexed to 2-amino-2-(hydroxyethyl)-1,3-propanediol at 2.1A revealed that the water chain is disrupted. In the F256W structure exhibits a positional shift in His305, characteristic of alpha-amylase complex structures. Kinetic analysis, in comparison with HSAmy, revealed that the mutant exhibited a 70-fold decrease in the specific activity for starch and significantly reduced k(cat) (20-fold) and K(m) (4-fold) for maltoheptaoside. Collectively, these results suggest that W641 and the chain of water molecules may be critical for the alpha-amylase activity.

Amino Acid Substitution↗

Potential factors affecting embryo survival and clinical outcome with cryopreserved pronuclear human embryos.

OBJECTIVE: This study was undertaken to determine whether the method of fertilization has a significant impact on survival and/or clinical pregnancy rates of cryopreserved human pronuclear (2PN) stage embryos. DESIGN: A retrospective analysis of cryosurvival and clinical pregnancy rates after thawing of 2PN stage embryos from January 2000 through December 2002 in a private Assisted Reproductive Technology (ART) center. MATERIAL AND METHODS: A total of 1408 human 2PN embryos were cryopreserved using a Planer Kryo 10 Series III freezing unit (TS Scientific, Perkasie, Pa) after dehydration/equilibration through Propanediol (Sigma Chemical, St. Louis, Mo) and sucrose. On thawing, embryos were cultured in vitro with P-1 medium with 10% Serum Substitute Supplement (Irvine Scientific, Santa Ana, Calif). Embryo transfer was performed at 40 to 48 hours from time of thaw into a recipient uterus after standard estradiol/progesterone preparation. RESULTS: In 2000, 78% of all frozen 2PN embryos survived and were transferred in 181 cycles producing a delivery rate of 26% per transfer. However, 59% of these cycles were intracytoplasmic sperm injection (ICSI), and the survival of frozen 2PN from these cycles (72%) was lower than the respective survival of frozen 2PN embryos from in vitro fertilization (IVF) (81%; P<.025). Changes to protocols for thawing frozen 2PN embryos were therefore explored and implemented during 2001, resulting in equivalent survival rates of frozen 2PN embryos from IVF and ICSI during 2001 (78% and 80%, respectively) and 2002 (73% and 74%, respectively). Coincidentally, the proportion of all cycles that were performed with ICSI increased (73% in 2001 to 78% in 2002; P<.01) and pregnancy rates after transfer of frozen/thawed 2PN embryos from ICSI increased from 15% in 2000 to 30% in 2002. CONCLUSION: 2PN stage embryo cryosurvival may be negatively affected by ICSI, possibly caused by disruption of the zona pellucida and vitelline membrane before cryopreservation, and/or because ICSI promotes fertilization of some compromised eggs (producing compromised 2PN embryos) that would not have fertilized by conventional IVF. Without close attention to embryo freezing and thawing protocols relative to outcome, lower cryosurvival of unselected ICSI-produced embryos can negatively impact pregnancy outcomes.

Cryopreservation↗

Maturation rates of vitrified-thawed immature buffalo (Bubalus bubalis) oocytes: effect of different types of cryoprotectants.

Cryopreservation of oocytes collected from slaughtered animals of high genetic value, their subsequent utilisation for production of embryos for transfer may provide an opportunity to replenish the valuable germplasm lost. Experiments were conducted to study the effect of cryoprotectants, dimethyl sulfoxide (DMSO), ethylene glycol (EG), 1,2-propanediol (PROH) and glycerol at different concentrations (3.5, 4, 5, 6 and 7 M each with 0.5M sucrose and 0.4% BSA in DPBS) on morphological survival and in vitro maturation of vitrified-thawed immature buffalo oocytes. The cumulus oocyte complexes were harvested from the ovaries obtained from a local slaughterhouse by aspirating the visible follicles. Less number of oocytes reached metaphase-II stage from the oocytes cryopreserved in any of the concentrations of DMSO, EG, PROH and glycerol compared to fresh oocytes. Among the vitrified groups, highest maturation (40.3, 42.5, 40.4 and 23.5%) was obtained in 7 M DMSO, EG, PROH and glycerol, respectively. Oocytes reaching to M-II stage from the oocytes cryopreserved in 7 M glycerol were significantly lower than that of the oocytes vitrified in 7 M DMSO, EG and PROH. It can be concluded that 7 M solutions of DMSO, EG and PROH can be used for vitrification of immature buffalo oocytes for subsequent utilisation of these oocytes in IVM/IVF and embryo production for transfer.

Animals↗

Histological and ultrastructural analysis of cryopreserved sheep preantral follicles.

The aim of this study was to verify the histological and ultrastructural characteristics of sheep preantral follicles after exposure of ovarian tissue to cryopreservation in glycerol (GLY), ethylene glycol (EG), propanediol (PROH) or dimethyl sulfoxide (DMSO) in order to determine the optimum method to store sheep ovarian tissue for later experimental or clinical use. Each ovarian pair from five mixed-breed ewes was divided into 17 fragments. One (control) fragment was immediately fixed for routine histological and ultrastructural studies and the remaining (test) fragments were randomly distributed in cryotubes, equilibrated at 20 degrees C/20 min in 1.8 mL of minimal essential medium (MEM) containing 1.5 or 3 M GLY, EG, PROH or DMSO and then either fixed for morphological studies to determine their possible toxic effect or frozen/thawed and then fixed to test the effect of cryopreservation on preantral follicles. Histological analysis showed that, compared to control fragments, all cryoprotectants at both concentrations significantly reduced the percentage of normal preantral follicles in ovarian fragments prior to or after cryopreservation. PROH 3.0 M appeared to exert a more toxic effect (P<0.05) than the other cryoprotectants in noncryopreserved tissues. After freezing/thawing, the highest (P<0.05) percentages of lightmicroscopical normal preantral follicles were observed in ovarian fragments cryopreserved in EG (1.5 and 3 M) or DMSO (1.5 M). However, transmission electronic microscopical (TEM) examination showed that only the DMSO-cryopreserved preantral follicles had normal ultrastructure. The data suggest that sheep preantral follicles should be cryopreserved with 1.5 M DMSO for later clinical or experimental application.

Animals↗

Physico-chemical studies of the gelation of chitosan in a hydroalcoholic medium.

The formation of chitosan physical hydrogels without any external cross-linking agent was studied. This gelation took place in an acetic acid-water-propanediol solution. Static light scattering was used to detect the gel point and then, to study the gelation for different initial conditions. Thus, we investigated the influence of the degree of acetylation, the gelation temperature and the nature of the initial solvent. The variation of the solvent composition during gelation was determined from a simple weighting, and the ionisation state of the polymer at the gel point, by pH titrations. This work showed that it was possible to form a chitosan physical-hydrogel, whatever the degree of acetylation provided typical conditions were observed. The mechanism of gelation simply consisted in the modification of the hydrophilic/hydrophobic balance allowing the formation of both hydrophobic interactions and hydrogen bonding. Several parameters had an important role on this mechanism: 1--the apparent charge density of chitosan, modified by the degree of neutralisation, 2--the dielectric constant of the solvent, related to the composition of the medium, 3--the degree of acetylation, 4--temperature, playing a role on the interactions responsible for the physical cross-linking and the molecular mobility, and, 5--the molecular mobility depending on possible changes of conformation, steric hindrance and viscosity of the medium.

Acetic Acid↗