
The chelating agents oxine, acetylacetone, tropolone, and 2-mercaptopyridine 1-oxide were analysed for their suitability in labeling the bacterium Erysipelothrix rhusiopathiae (E.r.), strain B10, with 111In and 67Ga. The labeling conditions were improved. The bactericidal activity of the labeling process was investigated. The different chelates did not result in a significant difference in labeling yield. The addition of 0.01% detergent to the labeling buffer doubled the labeling yield up to 45%. Labeled bacteria were injected intravenously into rats. The percentage organ distribution was determined and compared with a control group.
L’elevation de la temperature interne du lapin apres injection d’endotoxine varie en fonction de la voie utilisee. Une elevation de temperature de 1,71 ± 0,411°C est obtenue apres injection intraveineuse de 1 ng/kg d’endotoxine d’ Escherichia coli 0111.B.4. L’injection intrathecale par la voie sous occipitale de 0,1 ng/kg entraine une elevation de 1,93 ± 0,236°C; l’analyse statistique des resultats montre que la reaction hyperthermique du lapin est dix fois plus intense lorsque l’endotoxine est injectee par cette voie.
This report describes the comparison between two adrenal medulla imaging agents, mIBG and I-CPP. Biodistribution demonstrated an early and preferential uptake by both adrenal glands and heart and then storage in the adrenal gland of both agents, however I-CPP is less stable in vivo than mIBG. Reserpine depletion study in rat indicated that the I-CPP and mIBG uptake mechanisms are not similar.
The rise of the rabbit internal temperature after i.v. injection of an endotoxin solution is proportional to concentration. Gelation of Limulus amoebocyte, when in presence of an endotoxin solution, is also related to concentration. We compared the sensitivity of these two methods. With our experimental procedure, the rabbit is sensitive to a 0.40 ng/mL solution and the Limulus amoebocyte lysate to a 0.14 ng/mL solution. The rabbit sensitivity increase is related to the per kilogramme injected volume, whereas sensitivity is not related to the volume to check in the case of the lysate.
L’etude de 17 preparations radiopharmaceutiques, auxquelles des quantites connues d’endotoxines ont ete ajoutees, montre qu’aucune n’inhibe la reaction pyrogene du lapin et que 4 d’entre elles inhibent la reaction de coagulation du test Limulus , ce sont: le citrate d’erbium colloidal 169 Er, le sulfure colloidal de rhenium 186 Re, le sulfure de technetium 99 m Tc (Re) colloidal pour scintigraphie hepatique et le sulfure de technetium (Re) colloidal pour lymphographie. Leur action inhibitrice est annulee, selon les produits, soit par dilution, soit par ajustement du pH a la neutralite. Les deux tests etant pratiques sur les 313 lots de differentes prepartions radiopharmaceutiques, 95% des resultats sont identiques (93% negatifs, 2% positifs). Les 5% restants correspondent a un resultat LAL positif et a un resultat lapin negatif. On n’observe pas de resultats avec un test LAL negatif et un test lapin positif.
The binding of plutonium to human apo-transferrin and to rat serum was investigated following delivery of the metal to the protein either as the plutonium-tri-n-butyl phosphate (Pu-TBP) complex in n-dodecane or as plutonium nitrate. Chromatographic behaviour, the failure to bind to iron-saturated transferrin and the release of plutonium by the chelating agents CaNa3DTPA and 3,4,3-LICAM(C) suggest that the transferrin complexes formed from the two plutonium compounds are similar. The tetracatechoylamide ligand LICAM(C) was found to be about 500 times more effective than DTPA, on a molar basis, for the release of plutonium from transferrin in rat serum.
The preparation of 99mTc(Sn)MDP was investigated as a function of pH, MDP concentration and Sn(II) concentration. The labeling efficiency was over 90% in the majority of the experiments and remained constant over the range pH 2-9. The MDP concentration had little effect, while the Sn(II) concentration had a significant positive influence. The complex formation appeared to be partly reversible. The formation of different complexes was investigated by means of gel chromatography under various experimental conditions. Altogether six complexes were found. At acid conditions two major complexes were found and at neutral pH one major complex. The presence or absence of a particular complex was mainly determined by the pH and by the MDP concentration. The Sn(II) concentration had very little effect. The results are compared with previous results of similar experiments with 99mTc(Sn)pyrophosphate.
The lymph node uptake of 165Dy was measured in 25 patients treated by radiation synovectomy via intra-articular injection of 165Dy-ferric hydroxide macroaggregates (FHMA). An average of 0.12% of the injected dose was found in the inguinal lymph nodes 19h post injection. This results in a lymph node of 16.6 rad (166 mGy), a dose significantly less than that reported following radiation synovectomy with other radiocolloids. Dosimetry calculations for the intra-articular injection of 165Dy-FHMA are provided in the appendix.
A new bifunctional chelating agent, p-carboxyethylphenylglyoxal-di(N-methylthiosemicarbazone) (CE-DTS), containing a di(N-methylthiosemicarbazone) as the technetium coordinating site and an aralkyl carboxylate site for the protein conjugation was synthesized. Coupling to human serum albumin (HSA), selected as a model protein was carried out by the phosphorylazide method using diphenylphosphoryl azide (DPPA). The conjugation level of CE-DTS to HSA played a critical role in its biological evaluation. A 99mTc-CE-DTS-HSA with high in vivo stability was obtained when CE-DTS was coupled to HSA at 1:1 molar ratio. This compound showed similar in vivo stability to 131I labeled HSA in mice and rabbits.
As a basic structure of a bifunctional radiopharmaceutical (BR), dithiosemicarbazone (DTS) enables the formation of a small conjugated chelating ring with divalent metals (Cu2+, Zn2+, Ni2+), yielding stable and compact complexes. In the development of a neutral and compact monomeric DTS complex of technetium (99mTc), a DTS containing ligand, kethoxal-bis(thiosemicarbazone) (KTS) was selected. A well known monomeric Cu-KTS complex (or 64Cu-KTS) is taken as a model compound, and in vitro (TLC, EP, HPLC) and in vivo (mice biodistribution) studies were compared. Using the stannous chloride method, under conditions to avoid the hydrolytic polynucleation of technetium, a good yield of 99mTc-KTS with characteristics resembling the non-charged, compact and stable Cu-KTS is obtained, in in vitro as well as in vivo studies. The importance of DTS as the constituent of a BR is discussed.
This report describes the comparison between two adrenal medulla imaging agents, mIBG and I-CPP. Biodistribution demonstrated an early and preferential uptake by both adrenal glands and heart and then storage in the adrenal gland of both agents, however I-CPP is less stable in vivo than mIBG. Reserpine depletion study in rat indicated that the I-CPP and mIBG uptake mechanisms are not similar.
A new subtraction method was developed to improve visual resolution in fluorescent scanning. A digital gate circuit could subtract backscatter of a fluorescing gamma ray source in real time without the need for a computer for postprocessing of the image data.
Experiments using 17 radiopharmaceuticals containing known amounts of added endotoxin show that none of them inhibits the pyrogenic reaction of the rabbit. Gelation of the Limulus amoebocyte lysate (LAL) is inhibited by 4 of them: colloidal erbium 169Er citrate, colloidal rhenium 186Re sulfide, colloidal technetium 99mTc (Re) sulfide for liver scintigraphy and the colloidal technetium 99mTc (Re) sulfide for lymphography. This inhibition is cancelled, either by dilution or after neutral pH adjustment. Both controls were performed on 313 batches of various radiopharmaceuticals, 95% of results were identical (93% negative, 2% positive). The remaining 5% correspond to positive LAL tests vs negative rabbit tests on the same batches. No negative LAL test vs positive rabbit test was observed.
The rise of the rabbit internal temperature after i.v. injection of an endotoxin solution is proportional to concentration. Gelation of Limulus amoebocyte, when in presence of an endotoxin solution, is also related to concentration. We compared the sensitivity of these two methods. With our experimental procedure, the rabbit is sensitive to a 0.40 ng/mL solution and the Limulus amoebocyte lysate to a 0.14 ng/mL solution. The rabbit sensitivity increase is related to the per kilogramme injected volume, whereas sensitivity is not related to the volume to check in the case of the lysate.
The rise of the rabbit internal temperature after endotoxin injection is related to the route of administration. A rise of 1.71 +/- 0.411 degrees C is obtained after i.v. injection of 1 ng/kg Escherichia coli 0111.B.4 endotoxin. An increase of 1.93 +/- 0.236 degrees C is obtained after suboccipital intrathecal injection of 0.1 ng/kg of the same endotoxin; with the intrathecal route, the hyperthermia is induced by E. coli endotoxin after a dose ten times lower than with i.v. injection as shown by statistical analysis.
As Zn is closely associated with the exocrine and endocrine functions of the pancreas, exploitation of Zn metabolism for anatomical and functional diagnosis was conceived, namely with the recent availability of positron emitting 62Zn (t1/2 = 9 h). In the present paper, response changes in Zn biodistribution (mice) and Zn excretion through the pancreatic duct (rats) due to the stimulation of gastro-intestinal hormones like secretin, CCK-PZ (exocrine stimulation) and glucose (endocrine stimulation) were studied. Under these stimuli, the pancreatic secretion of radioactive Zn through cannulated pancreatic duct showed increased Zn secretion only under the CCK-PZ effect, 3 h post 65Zn (t1/2 = 270 d) injection. Tissue biodistribution in mice pre-injected with 65Zn showed pancreas specific decrease of radioactive Zn whenever a gastro-intestinal hormone was post-administered, whereas the glucose effect was negligible. Thus, the effective mobilization of the injected radioactive Zn, upon exocrine stimulation, represented by CCK-PZ, favored the exploration of a functional study of the pancreas with the positron computed tomograph (PCT) using short lived nuclide labeled 62Zn-EDDA in dog. Evidence of the applicability of this system in regional function studies of the pancreas was obtained. Demonstration of Zn participation in the exocrine function of the pancreas in-vivo holds considerable promise for diagnosis of pancreatic diseases.
The metabolic pathway of radioactive 62Zn-EDDA (ethylenediamine-N,N'-diacetic acid), in the exocrine pancreas was studied with respect to that of endogenous Zn. In pancreatic duct cannulated dog, the secretion of intravenously injected exogenous 62Zn into pancreatic juice increased under the stimulation of CCK-PZ (pancreatic protein secretion stimulating hormone), which closely correlated to endogenous Zn. Moreover, in pancreatic juice, 62Zn as well as endogenous Zn was selectively bound to Zn-metalloenzymes, carboxypeptidase A and B. These results demonstrated the close correlation between the endogenous and the exogenously-administered Zn (62Zn-EDDA), as well as the high availability of 62Zn-EDDA as a marker of pancreatic function for the follow up of carboxypeptidase metabolism.
The adsorption of pyrophosphate, tin-pyrophosphate and 99mTc(Sn)pyrophosphate on Ca3(PO4)2 was investigated at pH 4.0 and pH 7.4. All components were radioactively labeled. Tin and reduced technetium were in most cases almost completely bound. The adsorption of pyrophosphate, tin(II) and technetium-99m at pH 4.0 was higher than at pH 7.4. The presence of tin gave rise to an increase of the pyrophosphate adsorption that was much larger than can be accounted for by a stoichiometric adsorption of tin-pyrophosphate. It is concluded that tin and technetium are bound as negatively charged complexes with pyrophosphate. Finally it is argued that the fraction of the bone scanning agent that reaches the bone surface is adsorbed completely by the mineral phase.
A systematic analysis of various factors involved in the CDI-mediated coupling of DTPA to IgG have been carried out, in order to optimize the labeling yield of a monoclonal antibody labeled to high specific activity. Various CDI-to-DTPA ratios were tested, followed by a range of DTPA (activated) to IgG ratios. Specific activities as high as 600 Ci/mmol could be obtained following labeling with 113mIn, when an IgG : DTPA : CDI ratio of 0.01 : 1:20 was used. Other aspects, such as the volume of each of the reactants, the pH and the reaction times, were also standardized to yield a labeled IgG2a (KS1/4) that could be consistently tested for biodistribution and tumor-binding.