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Fluorine-18-labeled androgens: radiochemical synthesis and tissue distribution studies on six fluorine-substituted androgens, potential imaging agents for prostatic cancer.

We have synthesized six androgens labeled with 18F as potential imaging agents for prostatic cancer. These include 16 beta-fluorine-substituted testosterone, dihydrotestosterone and mibolerone, 16 alpha- and 16 beta-fluorine substituted 7 alpha-methyl-19-nortestosterone, and 20-fluoro-R1881 (metribolone). All of the radiochemical preparations proceeded in satisfactory yield, giving material with adequately high effective specific activity for the in vivo studies. In the tissue distribution studies in diethylstilbestrol-treated male rats, high selective uptake by the prostate was observed that ranged from 0.39% to 1.21% injected dose (ID)/g at 1 hr and 0.20 to 0.47 at 4 hr, with prostate-to-blood and prostate-to-muscle ratios ranging from 3.28 to 9.45, respectively, at 1 hr and 4.06 to 35.0, respectively, at 4 hr. Those compounds that are likely to be metabolized rapidly showed lower prostate uptake but higher uptake selectivity at 4 hr; at earlier times, uptake selectivities were more comparable. Compounds with a 16 beta-fluorine substituent showed extensive metabolic defluorination, resulting in ca. 50% of the dose being deposited in bone at 4 hr. This is consistent with a 16 alpha-hydroxylation process that may proceed rapidly with these compounds, but would be retarded by a 17 alpha-methylation, blocked by inversion of stereochemistry at C-16, and would not affect fluorine at the C-20 position. These fluoroandrogens, together with 20-fluoromibolerone described previously, are the first positron-emitting androgens to show high affinity and selective uptake by androgen target tissues in vivo, and they may be useful as in vivo prostate imaging agents in man.

Animals

Fluorine-18-labeled diethylaminosulfur trifluoride (DAST): an F-for-OH fluorinating agent.

A new fluorinating agent was developed by incorporation of 18F into diethylaminosulfur trifluoride (DAST), a reagent capable of replacing hydroxyl and carbonyl oxygen with fluorine. The DAST was synthesized using sulfur tetrafluoride and trimethylsilyldiethylamine in a freon-11 solvent at -78 degrees C and purified by reduced-pressure distillation. Labeling was then accomplished by exchange with anhydrous 18F-hydrofluoric acid, which caused more than 80% of the available activity to be incorporated into the DAST. Fluorine-18-labeled methyl fluoride, ethyl fluoride, and 2-fluoroethanol were prepared from methanol, ethanol, and ethylene glycol, with yields of 20%, 25%, and 12%, respectively.

Ethanol

Fluorinated psychopharmacological agents: noninvasive observation by fluorine-19 nuclear magnetic resonance.

Fluorinated psychopharmacological agents were measured with fluorine-19 nuclear magnetic resonance spectroscopy in the brain of intact rats that had been treated with fluphenazine. These in vivo experiments were compared to in vitro measurements of fluphenazine-treated rats. A high-field shift was observed in both in vivo and in vitro measurements. On the basis of the in vitro measurements, fluphenazine concentration in the brains of treated rats was estimated. Our observations demonstrate the feasibility of this technique for determining fluorinated neuroleptics in live mammals.

Animals

Liposomes containing fluorinated steroids: an analysis based on photon correlation and fluorine-19 nuclear magnetic resonance spectroscopy.

Small unilamellar liposomes containing fluorinated steroids (flumethasone and dexamethasone) were obtained. A physicochemical evaluation was conducted based on photon correlation spectroscopy (PCS) and fluorine-19 (19F) nuclear magnetic resonance (NMR) spectroscopy compared with standard biochemical methods (HPLC). The PCS method provides a fast and adequate evaluation of some critical features of liposomes (size, physical stability). In addition, 19F NMR spectroscopy gives substantial information, in a nondestructive manner, on steroid behavior in the membrane upon encapsulation and also when the temperature of liposomes is increased. The combined spectroscopic approach proposed here might prove useful in (1) the management of liposomal formulation, especially in the documentation of physicochemical properties, (2) pharmaceutical control in the industrial production line, and (3) control preceding injection at the clinical site. Spectroscopic techniques might offer a complementary approach to classical biochemical methods in the evaluation of the properties of a liposomal formulation and could be usefully integrated into quality control procedures.

Chemical Phenomena

Fluorinated quinazolones III: synthesis and CNS depressant activity of fluorinated quinazolone derivatives.

The synthesis of 2-allylthio-3-(4'-fluorophenyl)-5,6,7,8-tetrafluoro-4-quinazolone, 2-n-propylthio-3-(4'-fluorophenyl)-5,6,7,8-tetrafluoro-4-quinazolone, 3-(4'-bromophenyl)-5,6,7,8-tetrafluoro-2,4-quinazolinedithione, and seven fluorinated 2-alkyl/phenyl-3-aryl-4(3H)-quinazolones is described. The synthesized compounds were screened for CNS depressant activity using pentobarbital sleeping time, pentylenetetrazol convulsions, and condition avoidance test as the parameters. Most of the screened compounds exhibited significant depressant activity.

Animals

Fluorinated blood substitute retention in the rat measured by fluorine-19 magnetic resonance imaging.

RATIONALE AND OBJECTIVES: Emulsions of perfluorocarbons (PFCs) have been tested as blood substitutes. However, evidence exists that there is long-term retention of some PFCs by the organs of the reticuloendothelial system (RES). The authors investigate organ retention of the blood substitute component, perfluorotripropylamine (FTPA), using fluorine-19 (19F) magnetic resonance imaging (MRI). METHODS: Various dosages of an emulsion of FTPA were administered to five rats. At intervals up to 86 weeks after infusion, 19F MRI was used to measure the amount of FTPA in liver and spleen. The data were fit to both linear and exponential elimination models, and organ retention half-lives were calculated. RESULTS: The exponential half-lives for combined liver and spleen FTPA ranged from 110 to 190 days. Linear half-lives ranged from 175 to 300 days. CONCLUSIONS: FTPA retained by the liver and spleen may be quantified by 19F MRI: The half-lives that were measured are longer than those reported previously for FTPA.

Animals

Tracer feasibility for monitoring tumor radiotherapy: a quadruple tracer study with fluorine-18-fluorodeoxyglucose or fluorine-18-fluorodeoxyuridine, L-[methyl-14C]methionine, [6-3H]thymidine, and gallium-67.

In a rat AH109A tumor model, metabolic tracers for glucose, amino acid, and nucleic acid metabolisms (2-deoxy-2-[18F]fluoro-D-glucose (18FDG), L-[methyl-14C]methionine (14C-Met), [6-3H]thymidine (3H-Thd), and 2'-deoxy-5-[18F]fluorouridine (18FdUrd], and the conventional radionuclide 67Ga-citrate were used to assess the feasibility of monitoring tumor radiotherapy using a quadruple tracer technique. Two combinations of four tracers (18FDG or 18FdUrd, 14C-Met, 3H-Thd and 67Ga) were compared in a time-course study after single-dose irradiation (20 Gy) and were also used in a dose-dependency study performed 6 days after 5, 10, 15, or 20 Gy of irradiation. Fluorine-18-FDG showed a large change in uptake and a steady response to radiotherapy. Fluorodeoxyuridine showed a rapid decrease after radiotherapy, but the range of change in uptake was narrow. Gallium-67 could not detect tumor response early after treatment, but showed a marked change in uptake later. [6-3H]Thd and 14C-Met showed a rapid response to irradiation and a high sensitivity for monitoring radiotherapy, suggesting that they may be feasible for PET studies.

Animals

Studies in potential organo-fluorine antibacterial agents. Part 2: Synthesis and antibacterial activity of some new fluorine-containing 3.5-disubstituted isoxazoles.

A series of new fluorine-containing 3,5-disubstituted aryl/alkylisoxazoles has been synthesized by the condensation of hydroxylamine with appropriate beta-diketones in the presence of pyridine and characterized by IR and 1H NMR spectral studies. These isoxazoles have been screened for their antibacterial activity against the gram positive bacteria, Staphylococcus albus, Streptococcus nonhemolyticus and the gram negative bacterium Escherichia coli.

Anti-Bacterial Agents

[Effect of subacute fluorine poisoning in the rabbit on fluorine and phosphorus-calcium metabolism and on radiography of the skeleton].

Rabbit subacute fluoride intoxication effects (21,4 mg a day for 10 months) are researched on fluor, calcium and phosphorus metabolism and on skeletal radiology. Fluoremy increase (p less than 0.05) and there is a strong fluor retention (p less than 0.01), due to fluor digestive utilization coefficient increase (p less than 0.05), in spite of relative hyperfluorury (p less than 0.05). Calcemy decreases (p less than 0.01), but phosphatemy and alkaline phosphatasemy do not vary but a little. Calcium and phosphorus balances become negative (p less than 0.05), due to calcium digestive utilization coefficient inversion (p less than 0.05) and phosphorus digestive utilization coefficient decrease (p less than 0.05) and hypercalciury (p less than 0.05) and hyperphosphatury (p less than 0.05) with phosphorus renal reabsorption coefficient decrease (p less than 0.05). Some skeletal radiological abnormalities appear on rachis and limbs.

Alkaline Phosphatase