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Glucose sensing based on interdigitated array microelectrode.

A micro glucose sensor consisting of an interdigitated array gold microelectrode was developed. The interdigitated array structure, which has 10 microns band width and 10 microns band gap, was fabricated in a small region (2.5 x 5 mm2) on a quartz substrate. Glucose oxidase was chemically fixed onto the electrode surface through self-assembled monolayer of 11-mercaptoundecanoic acid; ferroceneacetic acid was used as electron mediator. Electrochemical properties of the glucose oxidase-immobilized microelectrode were investigated by cyclic voltammogram measurements. Results confirmed that the reductive ferroceneacetic acid generated at counter electrode diffuses through a narrow band gap (10 microns) and can reach the working electrode surface.

Acetic Acid↗

Development of a platinized and ferrocene-mediated cholesterol amperometric biosensor based on electropolymerization of polypyrrole in a flow system.

The preparation of a cholesterol amperometric biosensor using a platinized Pt electrode as a support for the electropolymerization of a polypyrrole film, in which cholesterol oxidase and ferrocene monocarboxylic acid (electron-transfer mediator) were co-entrapped, is described. All the biosensor preparation steps (platinization and electropolymerization) and the cholesterol determination take place in the same flow system. The presence of the mediator enhances the sensitivity and selectivity of the platinized biosensor without modifying the dynamic parameters of the response, and the platinized layer improves the operational lifetime of the mediated sensor. The sensitivity obtained was 88.51 nA mM(-1) and the limit of detection was 12.4 microM of cholesterol. The analytical properties of the biosensor for the flow-injection determination of cholesterol were studied and compared with those of other more simple amperometric biosensor configurations.

Biosensing Techniques↗

Amperometric glucose biosensor based on mediated electron transfer between immobilized glucose oxidase and plasma-polymerized thin film of dimethylaminomethylferrocene on sputtered gold electrode.

We propose an electron transfer-mediated amperometric enzyme biosensor based on plasma-polymerized thin film of dimethylaminomethylferrocene (DMAMF) on a sputtered gold electrode. The DMAMF plasma-polymerized film is deposited directly onto the surface of the electrode under dry conditions. The resulting thin film not only has redox sites but also is extremely thin (approximately 20 nm), adheres well onto the substrate (electrode), has a flat surface and a highly-crosslinked network structure, and is hydrophilic in nature. Glucose oxidase is densely immobilized onto the surface of DMAMF plasma-polymerized film on the gold electrode. From the electrochemical measurement, the biosensor can cover the wide range of glucose concentration (1.3 - 81 mM) at +350 mV of applied potential. The current response of the glucose biosensor was decreased by less than 5% in an aerobic solution as compared to that in an anaerobic solution. These show that the DMAMF plasma-polymerized films play a role as the electron transfer mediators between the reaction center of enzyme and the electrode.

Biosensing Techniques↗

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↗

Ferrocenoyl amino acids and peptides: probing peptide structure.

Recent studies clearly show the utility of the carbodiimide protocol to attach the redox-active Fc moiety to the N-terminal side of amino acids and peptides under mild conditions, resulting in stable and often crystalline products that afford themselves to structural analysis by X-ray crystallography. Electrochemical studies of Fc-peptides show that there is a significant influence of the redox potential depending on the amino acid sequence. The Fc moiety is sensitive to structural changes that occur in the peptide to which it is attached. For helical Fc-oligoprolines, the redox potential of the Fc group makes it easier to oxidize as the oligoproline chain increases in length. Nonhelical peptides, having a similar primary but different secondary structure, give rise to very different redox potentials. The ramifications of these findings to biological systems are significant in that they provide further evidence that the redox properties of a metal center are influenced by factors that go beyond the primary ligand sphere and thus for the involvement of long-range interactions. The Fc group is clearly sensitive to the shape of the peptide. These effects are currently under more detailed investigation [45] in order to gain further insight into the electronic structure of these ferrocenoyl peptides. Although we are not yet in a position to distinguish between "sensing" coordination or "sensing" conformation changes, this effect is of interest because it may allow the development of peptidic sensors.

Amino Acids↗

[Study of 137Cs transfer to the rat offspring with breast milk and a modifying effect of ferrocene on this process].

137Cs transfer to the lactating rats' offspring has been investigated following daily administration of the radionuclide to the females. Certain patterns have been established for 137Cs accumulation dynamics in the female rats and their progeny during 30 days of suckling. Radiocaesium accumulation multiplicity in both female rats and offspring, as well as absorbed dose formation and a modifying effect of ferrocinum on these processes have been studied.

Animals↗

Polyaspartamides as water-soluble drug carriers. Part 1: Antineoplastic activity of ferrocene-containing polyaspartamide conjugates.

BACKGROUND: Numerous detrimental side effects and/or lack of water-solubility of anticancer drugs often prove dose-limiting in chemotherapy. Water-soluble polymeric drug carriers may overcome/minimise many of these limitations. MATERIALS AND METHODS: Aspartic acid polymers to which ferrocene-containing antineoplastic agents are covalently bound, were tested for cytotoxicity against murine EMT-6 cancer cells. Cell survival was measured by means of the colorometric 3-(4,5-dimethylthiazol-2-yl)-diphenyltertrazolium bromide assay. RESULTS: The 90% lethal dosage of pure 3-ferrocenylbutanoic acid is 452 microg/mL LD90 for the polymeric derivative, expressed in terms of 3-ferrocenylbutanoic acid content, is only 65 microg/ml. A polymer structural effect in drug activity was evident: longer side chains linking drugs to polymer backbones enhanced drug activity. Drug activity is also enhanced if drug modifications (to enable drug anchoring) resulted in a lower ferrocenyl reduction potential. CONCLUSIONS: The effectivity of antineoplastic drugs may be enhanced by covalently anchoring them on suitable biodegradable water-soluble polymeric drug carriers.

Animals↗

Cytotoxicity and cell death pathways invoked by two new rhodium-ferrocene complexes in benign and malignant prostatic cell lines.

BACKGROUND: Apoptotic propensity is currently viewed as an important parameter in drug-induced toxicity. But other cell death pathways exist e.g. micronucleation, intermitotic cell death, abnormal nuclear morphology and necrosis. This investigation explores the onset of apoptosis and abnormal morphology in response to 3 drugs i.e. Cisplatin, a novel Ferrocene (fctfa) and a novel Rhodium-Ferrocene [Rh(fctfa)(cod)] complex. MATERIALS AND METHODS: A pair of prostate cell lines from normal human prostate epithelium (1542N) and malignant human prostate epithelium (1542T) were exposed to increasing concentrations of the drugs for 24 hours, double-stained with FITC-Annexin V and with Propidium Iodide and analysed by dual parameter flow cytometry to quantitate viable cells in quadrant I, early apoptotic cells in quadrant IV and late apoptotic/necrotic cells in quadrant III. Apoptosis was also scored by microscopy after Acridine Orange staining, by Western blots for caspase 3 induction and for caspase 8 induction using a colorimetric assay. RESULTS: The toxicity of Cisplatin and the Ferrocene and Rhodium-Ferrocene complexes was found to be 0.9-1.3 microM; 4.1-4.5 microM and 10.1-13.2 microM, respectively. Apoptotic propensity scored after 24 hours was found to be dose-dependent and in the range of 7-19% for Cisplatin and 1-4.1% for the Ferrocene and Rhodium-Ferrocene complexes. Cisplatin produces a distinct apoptotic response followed by a necrotic response, whereas the Ferrocene and the Rhodium-Ferrocene complexes produce a massive necrotic reaction in the region of 3-19% and very little if any apoptosis. Absence of apoptosis was corroborated by lack of caspase 3 activation, absence of typical apoptotic morphology and by lack of caspase 8 activation. CONCLUSION: The 3 drugs Cisplatin, the novel Ferrocene and the novel Rhodium-Ferrocene complexes show similar toxicities in the 1-10 micro-molar range in prostate cell lines. However the drugs differ significantly in the activation of death pathways. While Cisplatin predominantly induces apoptosis documented by morphology, Annexin V staining and caspase 8 activation, the Ferrocene and Rhodium-Ferrocene complexes induce late necrosis and abnormal nuclear morphology. Unlike Cisplatin-treated cells which enter apoptosis and necrosis sequentially, the 2 Ferrocene drugs invoke direct entry of cells into late necrosis without first entering the early apoptotic compartment.

Antineoplastic Agents↗

[A study on the ultraviolet spectra of halogenated benzoylferrocenes].

The ultraviolet spectra of all of the o, m, p-halogenated benzoylferrocenes have been studied the following rules obtained: 1. The lambdamax of the ultraviolet spectrum R band and K band for the isomers is lambdamax(m-X) > lambdamax(p-X) > lambdamax(o-X). 2. With the same substituted positions of the different halogen on the benzene ring, the lambdamax of the ultraviolet spectrum K band is lambdamax(C1) > lambdamax(Br) > lambdamax(I) > lambdamax(F), then, the lambdamax of ultraviolet spectrum R band is lambdamax(I) > lambdamax(Br) > lambdamax(Cl) > lambdamax(F).

Benzene↗

Radiosensitization of CHO cells by two novel rhodium complexes under oxic and hypoxic conditions.

BACKGROUND: Tumour hypoxia severely limits the success of radiotherapy. Radiosensitization of hypoxic tumour cells by drugs is thus an important clinical issue. MATERIALS AND METHODS: Two novel ferrocene-containing beta-diketonato complexes of the transition metals rhodium and iridium were examined for their cytotoxic activity against Chinese hamster ovary (CHO) cells by MTT and clonogenic assays. The same complexes were also tested for their capacity to sensitize hypoxic CHO cells against 8 MeV photons. RESULTS: The IC50 for [Rh(fcta)(cod)] (I) and [Rh (fctca)(cod)] (II), where (fctfa) = ferrocenoylacetonato-4,4,4-trifluoro and (fctca) = ferrocenoyl-4,4,4-trichloro- and (cod) = 1,5-cyclooctadiene, were found to be 1.38 microM and 4.18 microM, respectively, closely resembling that of cisplatin which was found to be 1.21 microM. The rhodium (I) complex was identified as an effective anoxic radiosensitizer showing a dose-modifying factor (DMF) of 1.93 +/- 0.02, resembling cisplatin where the DMF was found to be 1.99 +/- 0.02. Small DMF's in the range of 1.10 were also found for cisplatin and the rhodium (I) complex under aerobic conditions, but these were not statistically significant. The DMF for the iridium complex was small and found to be 1.06 +/- 0.04. CONCLUSION: The cytotoxicity and radiosensitizing properties of the rhodium (I) complex are very similar to cisplatin and show considerable potential for clinical application.

Animals↗

In vitro activity of ferroquine (SAR97193) is independent of chloroquine resistance in Plasmodium falciparum.

Nowadays, chloroquine-resistant malaria appears in almost all endemic regions. Ferroquine is a derivative of chloroquine and shows good activity in vitro and in animal models, but the development of cross-resistance is of concern. We tested in vitro susceptibilities of Plasmodium falciparum field isolates from Gabon to ferroquine, chloroquine, and artesunate. As expected, chloroquine resistance was present in all parasite isolates (median 50% inhibitory concentration = 113 nmol/L). Ferroquine (1.94 nmol/L) and artesunate (0.96 nmol/L) were highly active, and no significant correlation between any of the three drugs was observed. In contrast to our findings, previous studies showed an association between chloroquine and ferroquine activities. We could reproduce this association by using different initial parasitemias, but analysis of covariance revealed that initial parasitemia and not parasite strain was the critical determinant for the correlation between chloroquine and ferroquine activities. We conclude that ferroquine is highly active in chloroquine-resistant parasites, and we anticipate no enhanced selection for resistance against ferroquine in chloroquine-resistant parasites.

Aminoquinolines↗

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↗