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In situ liquid propane jet-freezing and freeze-etching of monolayer cell cultures.

A procedure for in situ liquid propane jet-freezing of unfixed and unglycerinated monolayer cell cultures is described. We have used the method to study monolayer cultures of rat Sertoli cells and human monocytes. The described procedure gives a cooling rate during specimen freezing high enough to yield adequately frozen specimens even in the absence of any cryoprotectant. Use of the procedure therefore eliminates artefacts usually caused by cell fixation and addition of cryoprotectives.

Animals↗

Cooling rate and ice-crystal measurement in biological specimens plunged into liquid ethane, propane, and Freon 22.

Specimens sandwiched between copper planchettes were plunged up to a depth of 430 mm into coolants used for cryofixation. Hydrated gelatin containing a miniature thermocouple was used to mimic the behaviour of tissue during freezing. Gelatin and red blood cells were used for ice-crystal analysis. Ethane produced the fastest cooling rates and the smallest ice-crystal profiles, and Freon 22 produced the slowest cooling rates and the largest crystal profiles. Smaller crystal profiles were often seen in the centre of the specimens than in subsurface zones. The results show that ethane, rather than propane, should be used for freezing metal-sandwiched freeze-fracture specimens by the plunging method, and probably also in the jet-cooling method. They further suggest that good cryofixation could occur at the centre of thin specimens rather than only at their surfaces. Comparison between theoretical and experimental ice-crystal sizes was satisfactory, indicating that where the experimental parameters can be defined then realistic predictions can be made regarding cryofixation results.

Chlorofluorocarbons, Methane↗

Utilization of trihalogenated propanes by Agrobacterium radiobacter AD1 through heterologous expression of the haloalkane dehalogenase from Rhodococcus sp. strain M15-3.

Trihalogenated propanes are toxic and recalcitrant organic compounds. Attempts to obtain pure bacterial cultures able to use these compounds as sole carbon and energy sources were unsuccessful. Both the haloalkane dehalogenase from Xanthobacter autotrophicus GJ10 (DhlA) and that from Rhodococcus sp. strain m15-3 (DhaA) were found to dehalogenate trihalopropanes to 2,3-dihalogenated propanols, but the kinetic properties of the latter enzyme are much better. Broad-host-range dehalogenase expression plasmids, based on RSF1010 derivatives, were constructed with the haloalkane dehalogenase from Rhodococcus sp. strain m15-3 under the control of the heterologous promoters P(lac), P(dhlA), and P(trc). The resulting plasmids yielded functional expression in several gram-negative bacteria. A catabolic pathway for trihalopropanes was designed by introducing these broad-host-range dehalogenase expression plasmids into Agrobacterium radiobacter AD1, which has the ability to utilize dihalogenated propanols for growth. The recombinant strain AD1(pTB3), expressing the haloalkane dehalogenase gene under the control of the dhlA promoter, was able to utilize both 1,2,3-tribromopropane and 1,2-dibromo-3-chloropropane as sole carbon sources. Moreover, increased expression of the haloalkane dehalogenase resulted in elevated resistance to trihalopropanes.

Hydrolases↗

Propane and n-butane oxidation by Pseudomonas putida GPo1.

Propane and n-butane inhibit methyl tertiary butyl ether oxidation by n-alkane-grown Pseudomonas putida GPo1. Here we demonstrate that these gases are oxidized by this strain and support cell growth. Both gases induced alkane hydroxylase activity and appear to be oxidized by the same enzyme system used for the oxidation of n-octane.

Butanes↗

Metabolism of n-propylamine, isopropylamine, and 1,3-propane diamine by Mycobacterium convolutum.

Mycobacterium convolutum strain NPA-1 can utilize n-propylamine (NPA), isopropylamine (IPA), and 1,3-propane diamine (PD) as sole source of carbon, nitrogen, and energy. Enzyme assays, fatty acid profiles, and 14CO2 incorporation experiments indicate that NPA is deaminated to propionate and further metabolized via the methylmalonyl succinate pathway, and IPA and PD were metabolized (after deamination) through a C2 + C1 cleavage. An inducible amine dehydrogenase was present in cell extracts after growth on the three amines. Polyacrylamide gel electrophoresis of cell extracts from NPA- and IPA-grown cells yielded one major band of amine dehydrogenase activity. When extracts of NPA-grown cells were assayed with NPA, IPA, or PD as substrate, the relative position of the major band on gel electrophoresis was equivalent. Similar results were obtained with extracts prepared from IPA-grown cells. Sephadex G-100 chromatography also indicated one major peak of activity. This suggests that one enzyme of broad specificity is involved in deamination of IPA, NPA, and PD. IPA-grown cells utilized NPA readily, whereas NPA-grown cells could not utilize IPA without lag. Since amine dehydrogenase activity was present in extracts of cells after growth on either substrate, this lag was probably due to the inability to transport IPA without an induction period. The molecular weight of the amine dehydrogenase was approximately 38,500 as determined by gel filtration.

1-Propanol↗

Carbon nanotubes and other fullerene nanocrystals in domestic propane and natural gas combustion streams.

Carbon nanotubes and other aggregated fullerene-related multi-layer shell structures have been collected in propane and natural gas flame emissions from domestic cooking stoves and observed by transmission electron microscopy. Some aggregated nanoparticles collected on 3 mm electron microscope grids by thermal precipitation were mostly multi-walled nanotubes; many tangled and distorted, and aggregated with other closed-concentric, multi-shell forms. Such clean-burning regimes may be major contributors to complex particulate matter in indoor and outdoor air.

Air Pollution, Indoor↗

Molecular properties of the "ideal" inhaled anesthetic: studies of fluorinated methanes, ethanes, propanes, and butanes.

We examined 35 unfluorinated, partially fluorinated, and perfluorinated methanes, ethanes, propanes, and butanes to define those molecular properties that best correlated with optimum solubility (low) and potency (high). Limited additional data were obtained on longer-chained alkanes. Using standard techniques, we assessed anesthetic potency (minimum alveolar anesthetic concentration [MAC] in rats); vapor pressure; stability in soda lime; and solubility in saline, human blood, and oil. If nonflammability, stability, low solubility in blood, clinically useful vapor pressures, and potency permitting delivery of high concentrations of oxygen are essential components of an anesthetic that might supplant those presently available, our data indicate that such a drug would have three or four carbon atoms with single or dual hydrogenation of two carbons, especially terminal carbons. We conclude that: 1) smaller and larger molecules and lesser hydrogenation provide insufficient potency; 2) high vapor pressures of smaller molecules do not permit the use of variable bypass vaporizers; 3) greater hydrogenation enhances flammability, and complete hydrogenation decreases potency; 4) internal hydrogenation decreases stability; and 5) greater hydrogenation increases blood solubility.

Alkanes↗

Insect intercellular junctions: rapid freezing by jet propane.

The ventral nerve cord of the cockroach, Periplaneta americana, and that of the locust, Schistocerca gregaria, have been studied after rapid freezing by cryo-jet, using liquid propane. Such tissues, unfixed and uncryoprotected, have been compared with unfixed cryoprotected tissues, as well as with material fixed with glutaraldehyde and cryoprotected with glycerol or polyvinylpyrrolydone. The perineurial tight junctions in the cryo-jet-frozen tissues exhibit characteristic intramembranous P-face ridges, but frequently these are composed of smooth-surfaced strands, comparable to those seen with fast-freezing in mammalian tissues, rather than of bead-like fibres. The intramembranous PF ridges, characteristic of axonal and glial processes in the insect central nervous system, also display a smooth surface in rapidly frozen preparations. Prior fixation and/or cryoprotection produces a bead-like appearance in the ridges. The interglial gap junctions, after fast-freezing, exhibit both clustered connexon arrays in the E-face and loosely aggregated ones; hence the coupled state cannot be unequivocally associated with the latter configuration. The septate junctions between glial cells are unchanged after rapid freezing, exhibiting the typical rows of P-face intramembranous particles with complementary E-face pits that are found in replicas from fixed and cryoprotected tissues. The surfaces of the axons and glial processes exhibit pleiomorphic depressions and associated particles as well as PF pits with complementary EF mounds, both with associated IMPs. These structures are not usually seen after fixation or cryoprotection and may represent some kind of receptor structure, or axo-glial specialization.

Animals↗

Aryl-aryl coupling reaction using a novel and highly active palladium reagent prepared from Pd(OAc)2, 1,3-bis[diphenylphosphino]propane (DPPP), and Bu3P.

A palladium-assisted coupling reaction of aryl triflate with arene was investigated, and a novel Pd reagent prepared from equimolar Pd(OAc)2, 1,3-Bis[diphenylphosphino]propane (DPPP), and Bu3P was developed. This method is useful for intramolecular biaryl coupling reactions, not only between aryl triflate and arene (triflate-amide), but also between aryl halide and arene (halo-amide).

Cyclization↗

[Fatal propane-butane poisoning].

Two lethal poisonings by butane and propane are described, and the corresponding concentrations in the body fluids and organ tissues are evaluated. One case appeared to be an accident after deliberate inhalation for butane, one was a suicide. The mechanism of the inhalation could be reconstructed in both cases. The concentrations in the biological material agreed well with observations in similar cases.

Accidents↗

New 3-[4-(aryl)piperazin-1-yl]-1-(benzo[b]thiophen-2-yl)propane derivatives with dual action at 5-HT1A serotonin receptors and serotonin transporter as a new class of antidepressants.

Some benzo[b]thiophene derivatives with different substituents in positions 3 and 5 have been synthesized in order to obtain new dual antidepressant drugs. Compounds derived from 2-acetyl-3-methylbenzo[b]thiophene or 2-acetyl-3,5-dimethylbenzo[b]thiophene were prepared with two different phenylpiperazines (2-methoxy and 2-hydroxyphenylpiperazine) and evaluated for in vitro 5-HT1A receptor affinity and serotonin reuptake inhibition by radioligand assays. Compound 1-(3,5-dimethylbenzo[b]thiophen-2-yl)-3-[4-(2-methoxyphenyl)piperazin-1- yl]propan-1-ol (II.2.a) shows good values (nM) for both activities: Ki = 85 for 5-HT1A receptor and Ki = 120 for serotonin transporter.

Antidepressive Agents↗

[Fatal inhalation of butane-propane gas].

Fatal intoxications with butane and/or propane are rare although the inhalation of such liquid gases in order to induce hallucinations is not uncommon amongst youngsters, the number of which is difficult to evaluate. Thus the possibility of gas intoxication should be taken into consideration in all cases of unclear death of youngsters, in which case the macroscopic and histological findings will be unspecific whereas the chemical-toxicological analyses, especially of the native brain, lung and liver tissue, lead to definite conclusions.

Adolescent↗

[Suicide by propane-butane inhalation: a case report and literature review].

A case of suicide of a 26-year old woman by propane-butane inhalation is presented with a description of the circumstances, postmortem pathomorphological and toxicological findings. The literature relating to deaths due to inhalation of these gaseous substances was briefly reviewed.

Administration, Inhalation↗

[Experimental poisoning with gaseous hydrocarbons: changes in concentrations of propane and butane in the lung and adipose tissue in relation to the time of death].

Postmortal changes of propane, butane and iso-butane concentration in the lung and fat of mice exposed to lethal intoxication with commercial liquid gas are studied. The hydrocarbon tissue concentrations after exposure were determined by gas liquid chromatography. The hydrocarbons progressively decreased in the lung and disappeared, depending on the degree of putrefaction; even in case of remarkable putrefaction, it was still possible to detect them in the fat tissue.

Adipose Tissue↗

New efficient chiral derivatizing agent, alpha-cyano-alpha-fluoro(2-naphthyl)acetic acid (2-CFNA). application to the EE determination of (-)-3-acetoxy-2-fluoro-2-(hexadecyloxymethyl)propan-1-ol.

The new chiral derivatizing agent (CDA), alpha-cyano-alpha-fluoro(2-naphthyl)-acetic acid (2-CFNA) 1 was prepared in optically pure form by chiral HPLC separation of racemic 2-CFNA methyl ester (2-CFNA Me ester) (+/-)-2. The ester was obtained by fluorination of methyl alpha-cyano(2-naphthyl)acetate with FClO3. 2-CFNA 1 has proven to be a significantly superior CDA for determination of enantiomeric excess (ee) of a primary alcohol when compared to alpha-methoxy-alpha-trifluoromethylphenylacetic acid (MTPA, Mosher's agent) and alpha-cyano-alpha-fluoro(p-tolyl)acetic acid (CFTA). The ee of (-)-3-acetoxy-2-fluoro-2-(hexadecyloxymethyl)propan-1-ol (-)-9, a fluorinated analog of anticancer active ether lipids, was determined using (+)-2-CFNA (+)-1.

Journal Article↗