Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Formamides”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 127 records · Page 7Linked to original sources

Evaluation of the developmental toxicity of formamide in Sprague-Dawley (CD) rats.

Timed-pregnant CD(R) outbred albino Sprague-Dawley rats received formamide (50, 100, or 200 mg/kg/day) or vehicle (5 ml/kg deionized/distilled water, po) on gestational days (gd) 6 through 19. Maternal food and water consumption (absolute and relative), body weight, and clinical signs were monitored at regular intervals throughout gestation. At termination (gd 20), confirmed-pregnant females (21-23 per group) were evaluated for clinical status and gestational outcome; live fetuses were examined for external, visceral, and skeletal malformations and variations. There were no maternal deaths and no dose-related clinical signs. At 200 mg/kg/day, maternal body weight on gd 20, weight gain, and gravid uterine weight were significantly decreased. Maternal weight gain, corrected for gravid uterine weight, liver weight (absolute or relative), and food and water consumption (absolute or relative), were not affected. Formamide did not affect prenatal viability or incidences of fetal malformations or variations. Average fetal body weight/litter was decreased at 100 and 200 mg/kg/day. Fetal body weight was affected at lower daily doses than in previously published studies, possibly due to the longer total exposure period and/or lack of a recovery period between cessation of exposure and termination. In summary, the maternal toxicity no-observed-adverse-effect level (NOAEL) was 100 mg/kg/day and the low observed adverse effect level (LOAEL) was 200 mg/kg/day under the conditions of this study. Similarly, the developmental toxicity NOAEL was 50 mg/kg/day and the LOAEL was 100 mg/kg/day.

Abnormalities, Drug-Induced↗

Cleavage by formamide of intercapsomer bonds in adenovirus types 4 and 7 virions and hemagglutinins.

When crude preparations of adenovirus types 4 and 7 were treated with solutions of formamide, a complete or nearly complete inactivation of infectivity could be achieved without affecting the complement fixation titers of the same preparations. Studies on purified virions showed that the intersubunit bonds within the viral capsid were broken and single capsomers were released as the result of treatment by formamide. When subjected to the same treatment, hemagglutinins were sequentially converted into incomplete hemagglutinins (pentons), which were in turn converted into penton bases and fibers.

Adenoviridae↗

[The effect of formamide on the achromatic apparatus and the chromosomes of dividing pleurodele eggs: an electron microscope study].

Electron microscope studies of blastulae of Pleurodeles waltlii Michah., treated with formamide (0,5 M for 17 hours), show various abnormalities concerning centrospheres, chromosomes and microtubules as well. At the prophase stage, the centrospheres may display at their outer region an accumulation of dense bodies, which shows a temporary blocking of these centrospheres. At metaphase the poles of pluripolar mitoses appear more or less separated from the material which contains the chromosomes of the equatorial region. Each of these poles contains an unique centriole and therefore it is considered as resulting of the subdivision of a normal anaphasic pole. Astral and spindle microtubules are very reduced in number and more or less shortened. The chromosomes are without any recognizable kinetochcre, they show various degrees of condensation. All these electron microscope observations confirm the light microscope ones, and we may conclude that formamide has a double action on microtubules formation and on the ultrastructure of chromosomes, the latter perhaps by a direct action on DNA protein complexes.

Animals↗

In vitro synthesis of double stranded RNA and measurement of thermal stability: effect of base composition, formamide and ionic strength.

Double stranded RNA was prepared by transcription of complementary strands followed by annealing. RNA duplexes prepared in this way showed cooperative thermal transition. Thermal denaturation of RNA duplexes of 33%-70% G+C content shows that Tm increases more sharply [0.93 degrees C/(%G+C)] with increase in G+C than that of DNA. Formamide (up to 80%) reduces Tm of RNA duplex linearly, and the rate of reduction is much less than that of DNA. The relation between salt concentration and Tm of double stranded RNA was also determined. The following relationship has been derived based on the above observations: Tm (ds RNA) = 14.88 logM + 0.93 (%G+C) + 67.62 - 0.4 (%Formamide).

Base Sequence↗

[Studies on acetamides and formamides for embryotoxic and teratogenic activities in the rabbit (author's transl)].

The acid amides acetamide, monomethylacetamide, dimethylacetamide, formamide, monoethylformamide and dimethylformamide were investigated for prenatal and teratogenic effects in rabbits. The compounds were administered by stomach tube to the animals as aqueous solutions from the 6th to the 18th day post insemination. In rabbits monomethylformamide caused the most serious teratogenic effect. A teratogenic effect was also caused by monomethylacetamide. Formamide showed an embryotoxic and weak teratogenic effect when it was given in a non-toxic maternal dosage whereas acetamide and dimethylacetamide had an embryolthal effect only in toxic maternal dosages. The rabbit seems to be more sensitive to dimethylformamide than are other animal species because foetuses with anomalies were already seen when the substance was given in non-toxic dosages.

Acetamides↗

The High-Resolution FTIR Far-Infrared Spectrum of Formamide.

The far-infrared spectrum of formamide (HCONH2) has been recorded at high resolution and over 9000 vibration-rotation lines assigned. Molecular parameters from the rovibrational analyses of the unperturbed 12(1)0 out-of-plane vibration band have been obtained for the ground state and the excited state. An analysis of the complicated resonance system between the 9(1)0, 11(1)0, and 12(2)0 bands has also been carried out. The mid-infrared spectrum of formamide has been recorded at low resolution and assignments for the fundamental, combination, and overtone bands in this region are given. The Large Amplitude Motion (LAM) of the out-of-plane mode has been reanalyzed using the new parameter set. Copyright 1999 Academic Press.

Journal Article↗

Synthesis of silver nanoprisms in formamide.

Polygonal (mainly triangular) silver nanoprisms were prepared by reducing silver perchlorate in formamide in the presence of polyethylene glycol (PEG) at room temperature. The reduction of silver ions by formamide leads to the deposition of arrays of triangular shaped silver nanoparticles on the glass walls of the container, accompanied by evolution of CO2 gas. In the presence of poly(N-vinyl-2-pyrrolidone) (PVP) and PEG (1:1), both nanospheres and nanoprisms are formed.

Journal Article↗

High-level expression of a novel amine-synthesizing enzyme, N-substituted formamide deformylase, in Streptomyces with a strong protein expression system.

N-substituted formamide deformylase (NfdA) from Arthrobacter pascens F164 is a novel deformylase involved in the metabolism of isonitriles. The enzyme catalyzes the deformylation of an N-substituted formamide, which is produced from the corresponding isonitrile, to yield the corresponding amine and formate. The nfdA gene from A. pascens F164 was cloned into different types of expression vectors for Escherichia coli and Streptomyces strains. Expression in E. coli resulted in the accumulation of an insoluble protein. However, Streptomyces strains transformed with a P(nitA)-NitR system, which we very recently developed as a regulatory gene expression system for streptomycetes, allowed the heterologous overproduction of NfdA in an active form. When Streptomyces lividans TK24 transformed with pSH19-nfdA was cultured under the optimum conditions, the NfdA activity of the cell-free extract amounted to 8.5 U/mg, which was 29-fold higher than that of A. pascens F164. The enzyme also comprised approximately 20% of the total extractable cellular protein. The recombinant enzyme was purified to homogeneity and characterized. The expression system established here will allow structural analysis and mutagenesis studies of NfdA.

Amidohydrolases↗

Unexpected formation of an azetidine-carborane derivative by dehydration of N-(1,12-dicarba-closo-dodecaboran-1-yl)formamide. The first X-ray structure of a 2,3-bis(imino)azetidine.

Efforts to dehydrate (1,12-dicarba-closo-dodecaboran(12)-1-yl)formamide (a = 6.685(2) A, b = 12.877(4) A, c = 12.547(4) A, alpha = gamma = 90 degrees, beta = 90.724(11) degrees, V = 1080.8(6) A(3), Z = 4) resulted in the formation of a series of unexpected products. Addition of the Burgess reagent to the formamide, for example, led to the isolation of the corresponding methyl carbamate (a = 11.529(8) A, b = 11.529(8) A, c = 11.402(12) A, alpha = beta = gamma = 90 degrees, V = 1516(2) A(3), Z = 4), while treatment with triphosgene, a well-known dehydrating agent, resulted in the formation of a highly unusual 2,3-bis(p-carboranylimino)azetidine derivative. This particular compound, in the presence of Re(I), was hydrolyzed to give the corresponding amide, which is the first example of a 2,3-bis(imino)azetidine that has been characterized crystallographically (a = 38.496(13) A, b = 11.920(4) A, c = 27.523(10) A, beta = 127.050(5) degrees, V = 10079(6) A(3), Z = 8).

Journal Article↗

Computational study of noncovalent complexes between formamide and formic acid.

The geometries and binding energies of 1:1, 1:2, and 1:4 formic acid-formamide complexes (FA-FMA) are calculated by quantum chemical procedures. Vibrational spectra and intermolecular distances of the most stable FA-FMA dimers as well as the influence of the basis set superposition error (BSSE) on the geometries and energies of the dimers are also discussed. All FA-FMA dimers are optimized at the B3LYP/cc-pVTZ, the MP2/cc-pVDZ, aug-cc-pVDZ, cc-pVTZ, and aug-cc-pVTZ levels of theory to study the influence of the level of theory on the calculated geometries and energies. CCSD(T)/cc-pVTZ single-point calculations at the MP2/aug-cc-pVTZ-optimized geometries were performed as reference for estimating the quality of lower level calculations. These calculations allow us to qualitatively describe the competition between different types of hydrogen-bonding interactions in FA-FMA complexes. FA-FMA dimers are compared to other formamide complexes and to the FA-FMA crystal structure.

Journal Article↗

Ru-catalyzed hydroamidation of alkenes and cooperative aminocarboxylation procedure with chelating formamide.

[reaction: see text] A strategy of chelation-assisted activation of formamide was employed to achieve hydroamidation of alkenes to generate one-carbon-elongated amides in moderate to good selectivity and yields. Also reported is the two-metal-catalyzed cooperative aminocarboxylation of aryl iodides, in which Ru is presumed to catalyze decarbonylation of formamide to release carbon monoxide and amine for the subsequent Pd-catalyzed aminocarboxylation routes, thus enabling the net transformation to be performed in the absence of external CO pressure.

Journal Article↗

Characterization of novel isocyanate-derived metabolites of the formamide N-formylamphetamine with the combined use of electrospray mass spectrometry and stable isotope methodology.

Bioactivation of the formamide N-formylamphetamine (NFA) to 1-methyl-2-phenylethyl isocyanate (MPIC) was investigated in rats by screening bile and urine for conjugates subsequent to the phase I event. NFA was administered to rats as a mixture of protio- and pentadeuteriophenyl analogues to gain insight into the carbamoylating activity of MPIC when traced by electrospray liquid chromatography/mass spectrometry (LC/MS). An LC/MS contour generated by recording the summed mass spectrum as a function of chromatographic retention time allowed four biliary metabolites to be identified from four sets of doublets, with the peak of each doublet offset by 5 amu and ca. 0.07 min. Tandem mass spectrometry experiments allowed these metabolites to be attributed structurally to the glutathione, cysteinylglycine, cysteine, and N-acetylcysteine conjugates of the isocyanate MPIC. These assignments were subsequently validated by comparison of the LC/MS properties of the metabolites to synthetic reference compounds. Only the carbamoylated N-acetylcysteine conjugate was detected in urine. The observed excretion in bile of all metabolites of the mercapturate pathway is novel for formamide metabolism. NFA can thus be added to the short list of compounds that are eliminated in this fashion. Factors envisioned as contributory to this metabolic profile in bile include hepatorenal, enterohepatic, and biliary-hepatic cycling, in addition to possible equilibrium exchange of the isocyanate from thiocarbamate conjugates to endogenous free thiols during the course of biliary transit.

Amphetamines↗

Double half-cubane copper(II) complexes available from copper(II) 1,1,1,5,5,5-hexafluoropentane-2,4-dionate dissolved in formamides.

Tetranuclear copper(II) complexes were obtained after simply dissolving [Cu(hfac)2] in formamide-methanol mixed solvents (Hhfac=1,1,1,5,5,5-hexafluoropentane-2,4-dione). X-Ray diffraction studies revealed that they possessed a tetranuclear double half-cubane core sandwiched with two trianionic ligands from 2,4,6-tris(trifluoromethyl)tetrahydropyran-2,4,6-triol (H3ttpt). Complexes [Cu4(ttpt)2(hfac)2(dmf)2.5], [Cu4(ttpt)2(tfa)2(def)4], and [Cu4(ttpt)2(hfac)2(H2O)4](fa) were prepared from N,N-dimethylformamide(dmf)-MeOH, N,N-diethylformamide (def)-MeOH, and formamide(fa)-MeOH (Htfa=trifluoroacetic acid), respectively. A possible mechanism is proposed where a templated aldol-type reaction takes place between hfac and 1,1,1-trifluoroacetonate. Magnetic measurements revealed the presence of antiferromagnetic interaction in the Cu4O6 core.

Journal Article↗

Contribution of a Cyanide-insensitive Alternate Respiratory System to Increases in Formamide Hydro-lyase Activity and to Growth in Stemphylium loti in Vitro.

Stemphylium loti, a pathogen of a cyanogenic plant, possesses a cyanide-insensitive alternate respiratory pathway. In the absence of cytochrome inhibitors, the alternate system had only a minor role in respiration. When S. loti was grown in medium amended with antimycin to block the cytochrome chain, the alternate system accounted for the total oxygen consumption associated with respiration.The contribution of the alternate respiratory system to increases in formamide hydro-lyase (FHL) activity and to growth in S. loti in vitro was assessed. FHL, induced by cyanide, converts cyanide to nontoxic formamide and is partially responsible for the tolerance of S. loti to high concentrations of cyanide in vitro. When the cytochromes were blocked and the cyanide-insensitive respiratory pathway accounted for 100% of the oxygen uptake associated with respiration, FHL activity, but not changes in dry weight, was positively correlated with activity of the alternate pathway. As the alternate pathway activity decreased with increasing concentrations of salicylhydroxamic acid, the level of FHL activity correspondingly decreased. The alternate respiratory system may provide for increases in FHL activity but not for growth. S. loti appears to have two mechanisms for cyanide tolerance in vitro: cyanide-insensitive respiration and FHL activity. The initial activity of FHL for detoxification of cyanide may depend on the alternate respiratory pathway when the cytochromes of the electron transport chain are blocked.

Journal Article↗

Computational study of the process of hydrogen bond breaking: the case of the formamide-formic acid complex.

MP2/6-311++G(d,p) and B3LYP/6-311++G(d,p) quantum calculations are used to study the formamide-formic acid complex (FFAC), a system bound by two hydrogen bonds, N--H...O and O--H...O, that forms a bond ring at equilibrium. When the intermolecular separation between monomers R increases, this ring opens at a distance for which the weaker N--H...O bond breaks remaining the stronger O--H...O bond. The computational study characterizes that process addressing changes of interaction energy DeltaE, structure and properties of the electron density rho(r) as well as spatial distributions of rho(r), the electrostatic potential U(r), and the electron localization function eta(r). It is shown that the spatial derivatives of DeltaE, the topology of rho(r), and qualitative changes noticed in U(r) = 0 isocontours allow to identify a precise distance R for which one can say the N--H...O hydrogen bond has broken. Both levels of theory predict essentially the same changes of structure and electron properties associated to the process of breaking and virtually identical distances at which it takes place.

Computer Simulation↗

Inhibitory action of high formamide concentrations on excitation-contraction coupling in skeletal muscle.

Strips of guinea pig ileum lose over 70% of their contractility when bathed in Krebs-Ringer solution containing 0.4-0.9 M formamide (FMD). This effect is not accompanied by an appreciable loss of tissue water and is totally reversed by washing the preparation in normal solution. Frog sartorius muscles also paralyze when immersed in Ringer containing FMD, but higher concentrations (1.0-2.0 M) and longer exposure times are required. Contractility is not recovered upon transferring these muscles to normal Ringer. However, the contractile proteins still respond to activator calcium as shown by the fact that these muscles still contract in the presence of caffeine. The membrane of muscles uncoupled by FMD retain electrical excitability, and neuromuscular transmission appears to be unimpaired. However, alterations in the early after-potential of the spikes suggest the occurrence of a sarcotubular disruption. Therefore, FMD appears to exert two separate effects on muscle: a reversible inhibition of contractility, as observed in ileal strips and an irreversible blockade due to an osmotic shock observed when frog muscles are returned to normal Ringer. The reversible effect is probably related to interference with the availability of activator calcium, since no marked inhibitory effects on the activities of the actomyosin-like and the calcium-dependent and -independent ATPases could be observed on FMD-treated subcellular fractions.

Adenosine Triphosphatases↗

Rearrangement with formamide extrusion in the electrospray mass spectra of aminoacylbenzylamines.

Several aminoacylbenzylamines and their analogs were synthesized and analyzed by electrospray ionization mass spectrometry together with high-resolution and tandem mass spectrometric techniques. Fragment ions ([M + H - CH3NO](+)) were observed and attributed to a transfer of the benzyl group to the N-terminal amino group, leading to elimination of formamide. The proposed mechanism is supported by accurate mass measurements, and by experiments on deuterium labeling and variations of functional groups.

Amino Acids↗