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Amperometric enzyme electrode for determination of theophylline in serum.

This paper describes an amperometric enzyme electrode for the rapid determination of theophylline in serum. The method is based on the catalysed oxidation of theophylline by the haem-containing enzyme theophylline oxidase. Results are presented for two approaches. First, ferrocene monocarboxylic acid was used as a mediator. The second-order rate constant was 1.1 x 10(3) 1 mol-1 s-1. Secondly, the organic conducting salt NMP.TCNQ was used to construct enzyme electrodes. These electrodes were employed for the rapid (60 s) measurement of theophylline in serum at a working potential of +100 mV versus Ag/AgCl. Linear calibration curves were obtained over the clinically relevant range (y = 0.13x + 0.22, n = 8). Caffeine, theobromine and 3-methylxanthine at levels up to 100 mg l-1 do not interfere and 1-methylxanthine shows cross-reactivity at concentrations greater than 50 mg l-1.

Biosensing Techniques

Electrochemical sensor toolkit for simultaneous glutamate detection at edge of cleft and peri-soma.

Simultaneously monitoring glutamate (Glu) dynamic at edge of synaptic cleft and peri-soma is crucial for understanding Glu-related pathology. Here, we created an electrochemical Glu sensors toolkit with spatial resolution of ∼60 nm, combining biologically engineered Glu binding protein for specifically capturing Glu together with chemically designed ferrocene groups for signal labeling. Modulation conjugation approach between GluR and ferrocene significantly improved sensitivity up to 32-folds. More importantly, protein engineering of residue mutation and linker peptides flexibility expanded linear range from 10 μM to 6 mM, accelerated on/off times down to 35/40 ms. This toolkit realized real-time quantifying of Glu both at edge of cleft and peri-soma, we discovered that Glu was almost released through SLC7A11 channels in calyx of held synapse upon oxygen-glucose-deprivation, while Glu was mainly released through hemichannels upon β-amyloid42 stimulation. Our work provided a methodology for investigating Glu release and reuptake and offered insights for Glu related pathology.

Glutamic Acid

Chemical modification of proteins under high pressure. Preparation of ferrocene-attached bovine serum albumin and glucose oxidase.

High hydraulic pressure was used for denaturing proteins during chemical modifications. Bovine serum albumin and glucose oxidase were selected as the first targets of this unique technique and the ferrocene group was introduced into them, to obtain a macromolecular electron mediator and a self-electron-mediating oxidase, respectively. The result was compared with those obtained under non-denaturing conditions and under urea-denatured conditions. As for the number of ferrocene group linked to the protein, the pressure denaturation is superior to chemical denaturants, where ferrocenecarboxyaldehyde was used as the modifier. In both proteins the ferrocene group seemed to be introduced mainly inside the molecules with the pressure method, as the native conformation of the protein was restored when the high pressure was removed.

Ferrous Compounds

Sensitive ferrocene reagents for derivatization of amines for high-performance liquid chromatography with electrochemical detection.

Six reagents possessing ferrocene as an electrophore were prepared and evaluated for pre-column derivatization of amino compounds for their determination by high-performance liquid chromatography with electrochemical detection. The utility of these reagents was investigated employing phenethylamine as a model compound. Among these six, N-succinimidyl 3-ferrocenylpropionate was the best with respect to reactivity, stability and electrochemical properties. The developed method was applied to the determination of putrescine formed from ornithine by ornithine decarboxylase.

Amines

Enantiotopic differentiation in horse-liver alcohol-dehydrogenase-catalyzed oxidoreduction studied with novel substrates having organometallic moieties.

Horse-liver alcohol-dehydrogenase-catalyzed oxidation of 1,2-bis(hydroxymethyl)ferrocene (1) gave (1R)-(+)-1-formyl-2-hydroxymethylferrocene (3) (86 +/- 2% enantiomeric excess, e.e.), while the reduction of the corresponding dialdehyde 1,2-diformylferrocene (2) gave the antipode (1S)-(-)-3 (94 +/- 2% e.e.). This fact indicates that the pro-R group in both 1 and 2 was preferentially converted by the enzyme. When one of two substituents on the substrate was replaced by a methyl group or moved to the beta-site, the stereoselectivity in the reaction decreased as evidenced by the enantiomeric purity of the products (5-64% e.e.). Treatment of racemic 1-hydroxyethylferrocene (14) with horse-liver alcohol dehydrogenase (HLADH) gave optically pure (R)-(-)-14 together with acetylferrocene. The reduction of 2 with HLADH, NAD and (2H6)ethanol gave (-)-(1S,2R)-1-formyl-2-[(R)-hydroxy(2H1)methyl]ferrocene and that of 1,2-di[(2H)formyl]ferrocene with HLADH, NAD and ethanol gave (-)-(1S,2R)-1-(2H)formyl-2-[(S)-hydroxy(2H1)methyl]ferrocene. These configurations indicate that the enzymic reduction occurred on the re-face of pro-R formyl group. The re-face selectivity was also found in the enzymic reduction of (eta 6-benzaldehyde)tricarbonylchromium and its (2H)formyl analogue. Docking of 2 into the active site of HLADH was examined using computer graphics. It has been suggested that the enantioselectivity to the pro-R side in the oxidoreduction of 1 and 2 by HLADH is a natural consequence of the re-face selectivity, which is caused by a steric interaction between the ligand and the side chain of Phe-93 or the Zn complex and strengthened by an interaction between the unreactive polar alpha-substituent and the protein, probably by hydrogen bond formation.

Alcohol Dehydrogenase

Biochemical and biophysical investigations of the ferrocene-iron-loaded rat. An animal model of primary haemochromatosis.

Male Wistar rats fed with ferrocene had high hepatic iron loading (7.24 +/- 1.97 mg Fe/g tissue) after 6 weeks, principally located in lysosomes, which was comparable to the levels and distribution determined in human haemochromatosis. The two iron-storage proteins, ferritin and haemosiderin were isolated from the livers of the ferrocene-loaded rats and their iron cores were investigated by Mössbauer spectroscopy and inductively coupled plasma-emission spectrometry. Ferrihydrite was the predominant form of iron present in both ferritin and haemosiderin, while haemosiderin contained higher amounts of phosphorus, magnesium, calcium and barium, then either normal or ferrocene-loaded ferritin. Free-radical-mediated damage in the iron-loaded livers was inferred by the significant depletion of alpha-tocopherol in both the livers and subcellular hepatic lysosomal fraction, which inversely correlated with the increasing iron content (r = -0.61; P less than 0.05) and was associated with increased fragility of the lysosomal membranes.

Animals

Iron overload of the liver by trimethylhexanoylferrocene in rats.

Iron-deficient female Wistar rats were fed a diet, which contained 0.5% trimethylhexanoylferrocene, over a 56-week period. This dietary iron loading resulted in a progressive siderosis and enlargement of the liver with a maximum iron content of 947.0 +/- 148.0 mg (vs. 0.07 +/- 0.04 mg in iron deficiency) and a maximum organ weight of 39.4 +/- 6.6 g (vs. 6.9 +/- 1.4 g in iron-deficient control rats). Up to 43 weeks, whole liver iron rose by increase in iron concentration (max. 28.0 +/- 6.1 mg/g wet weight, w.w.) as well as by enlargement of the organ. Afterwards whole liver iron increased solely by ongoing hepatomegaly. At the commencement of iron loading, stainable iron was almost exclusively stored by hepatocytes equally throughout all areas of the liver lobule. Later, the distribution of iron-loaded hepatocytes became strikingly periportal, and, in addition, Kupffer cells as well as sinus-lining endothelia began to store iron. Animals with a liver iron concentration of more than 10.4 +/- 0.75 mg/g w.w. showed no further increase in ferritin and haemosiderin within hepatocytes. Iron-burdened Kupffer cells/macrophages, however, accumulated permanently, hereby forming intrasinusoidal and portal siderotic nodules and areas. First signs of liver damage such as necrosis of single hepatocytes and mild fibrosis began at a liver iron concentration of 14.7 +/- 1.4 mg/g w.w. With advancement of iron loading, focal necrosis of hepatocytes and iron-burdened macrophages took place, and significant perisinusoidal as well as portal fibrosis developed. Cirrhosis, however, the final stage of impairment in iron overload of the liver in humans, could not be induced in this animal model up to now.

Animals

Iron overload of the bone marrow by trimethylhexanoyl-ferrocene in rats.

Iron-deficient female Wistar rats were fed a diet which contained 0.5% 3,5,5-trimethylhexanoyl (TMH)-ferrocene over a 57-week period. The state of iron deficiency was characterized by means of the absence of stainable iron in the bone marrow. After the first days on the iron-enriched diet, ferritin-containing siderosomes were found, in numerous erythroblasts up to orthochromatic normoblasts and in reticulocytes, i.e. the dispensed iron was used for haemoglobin synthesis. After 1 week the first macrophages showed a positive Perls' Prussian blue reaction. In the cytoplasm they stored the iron in the form of free ferritin molecules and lysosomally as aggregated ferritin and/or haemosiderin. The iron loading of the macrophages increased in both of the storage qualities proportionally with duration of the feeding period and reached a maximum after 38 weeks. Final stages showed extremely iron-loaded macrophages with high concentrations of free ferritin molecules and large siderosomes, partially flowing together to still greater units. Iron deposits within endothelial cells of bone marrow sinusoids can be observed for the first time after 4 weeks. In these cells the iron is stored as ferritin in siderosomes of relatively small and uniform size; free ferritin molecules in the cytosol were of only slight concentration. The TMH-ferrocene model of iron overload shows in the bone marrow: (1) an unimpeded utilization of the iron component for erythropoiesis, (2) development of excessive iron overload of the bone marrow in macrophages and endothelial cells of sinusoids and (3) a pattern of distribution of iron as seen in secondary haemochromatosis.

Anemia, Hypochromic

Ferrocenopapain, an organometallic protein formed by site-specific inactivation of papain using chloroacetylferrocene.

Papain is rapidly, specifically and irreversibly inactivated by chloroacetylferrocene in a time-dependent, two-stage process which involves initial, physical complexation between the enzyme and the organometallic reagent followed by chemical reaction. The kinetics of the process show saturation kinetics with respect to inactivator concentration. The modification occurs with a 1:1 stoichiometry and the degree of loss of enzymatic activity is directly reflected in the loss of thiol groups in the active-site that are accessible to Ellman's reagent. The modification is faster at higher pH. The ferrocenium ion of the modified papain can be generated at low pH by anaerobic treatment with ferric nitrate and shows a 180 percent increased lifetime at pH 3.3 compared to the acetylferrocenium ion under identical conditions. The spectral properties of the ferrocenopapain indicate that the ferrocene is in an unusual environment at the protein active-site and the implications of this are discussed.

Cysteine

Ferrocene modified polypyrrole with immobilised glucose oxidase and its application in amperometric glucose microbiosensors.

Gold microelectrodes were modified with electropolymerised polypyrrole in both organic and aqueous electrolytes. Cyclic voltammetry studies confirmed that electron conduction through the films in aqueous electrolytes is greatly reduced and is inefficient at mediating the oxidation/reduction of solution redox species. Films formed in aqueous electrolyte were also found to be more heterogenous in structure compared to those formed in acetonitrile. Aqueous polymerised films were used as an immobilisation matrix for glucose oxidase, and modified gold micro electrodes were used in the analysis of glucose using hydrogen peroxide detection. It was found that glucose oxidase was strongly absorbed into the films and that the sensors remained stable for several weeks. An improved linear range and oxygen insensitivity was achieved by incorporating the "water-insoluble" electron transfer mediator, dimethyl ferrocene, into the polypyrrole films by absorption. Good currents and response times to glucose addition were obtained from these electrodes, however, the electrodes possessed poor stability caused by the apparent loss of mediator from the films. Greater operational stability was achieved by covalently functionalising the films with the ferrocene derivative, ferrocenecarbonyl chloride. Covalently bound ferrocence was found to be an efficient oxidant of reduced glucose oxidase. Electrodes constructed in this manner possessed a good linear range, oxygen insensitivity and better stability. Electron transfer mechanisms are discussed.

Biosensing Techniques

[Stability of ferricinium cations and their cytostatic effect].

The relative stabilities of different ferricinium cations were studied in buffer or serum-containing solution and in vivo and compared with their cytostatic effects in cultures of Yoshida ascites tumor cells. Although the ferricinium cation itself was the most unstable cation compared with the dimethyl-ferricinium cation and the deuterated ferricinium derivatives it showed the highest cytostatic effect.

Animals

Progress towards in vivo glucose sensing with a ferrocene-mediated amperometric enzyme electrode.

A range of miniature, amperometric enzyme electrodes have been constructed using the principle of mediated transfer of electrons. Ferrocene, or one of its derivatives, can be used in conjunction with immobilised glucose oxidase to produce sensors which are linear to at least 20 mmol/l glucose, have fast response times, are relatively oxygen insensitive and are suitable for implantation studies. In preliminary experiments in non-diabetic pigs, electrode responses followed blood responses, although mean tissue levels were about one fifth of those in blood. The ferrocene technology thus appears to be suitable for adaptation to the construction of implantable glucose electrodes for use in diabetic man.

Animals