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Biomedical subjects

T R Henderson

Publications and source records attributed to T R Henderson.

At least 19 recordsLinked to original sources

Measurement of glomerular filtration rate in ICU patients using 99mTc-DTPA and inulin.

Improved and reliable methods for assessing glomerular filtration rate (GFR) in intensive care patients are needed in light of known deficiencies using creatinine clearance. We compared simultaneous two-hour clearances of inulin (CIn), creatinine (CCr), and 99mTc-diethylenetriaminepentaacetic acid (CDTPA) in 18 medical or surgical intensive care patients (range, 49 to 92 years old) with blood urea nitrogen (BUN) levels greater than 17.9 mmol/liter (0.5 mg/ml), serum creatinine levels greater than 150 mumol/liter (0.02 mg/ml), or estimated Cockcroft clearance less than 60 ml/min. Patients had severe renal dysfunction with average GFR of 35 ml/min (range, 2 to 69 ml/min). CDTPA and CCr correlated significantly with CIn, although CDTPA tended to provide a closer approximation. Cockcroft clearance (32 +/- 4 ml/min) was grossly similar to CDTPA and CIn and correlated significantly, especially when weight was calculated using actual as opposed to ideal body weight. In a subset of 13 patients with CIn less than 30 ml/min, only CDTPA was significantly correlated with CIn. In patients in the intensive care unit, CDTPA provides a rapid, accurate, and inexpensive clinical assessment of GFR, even at very low GFRs.

Aged

Mechanisms of respiratory failure produced by neostigmine and diisopropyl fluorophosphate.

Acetylcholinesterase inhibitors produce diverse physiologic effects, but lethal exposure consistently produces respiratory failure due to neuromuscular paralysis or depression of respiratory control centers in the medulla. Simultaneous measurement of gastrocnemius muscle contraction and efferent phrenic nerve activity was used to determine the primary cause of respiratory failure produced by neostigmine and diisopropyl fluorophosphate (DFP) in anesthetized cats. Both neostigmine and DFP abolished phrenic nerve activity prior to producing neuromuscular blockade. Furthermore, neostigmine did not alter brain acetylcholinesterase activity and pretreatment with either atropine methylbromide or atropine increased the dose of neostigmine required to abolish phrenic nerve activity. In contrast, DFP abolished brain cholinesterase activity and only atropine inhibited its respiratory effects. Despite the loss of efferent phrenic nerve activity, there is no evidence of a direct effect of neostigmine on respiratory control centers. Neostigmine may instead alter afferent inputs which modulate respiration to produce a reflex respiratory failure.

Animals

Inhibition of brain choline acetyltransferase in vivo: (E)-1-methyl-4-(1-naphthylvinyl)-1,2,3,6-tetrahydropyridine hydrochloride (B115), a depot form of a potent inhibitor.

The quaternary ammonium salt (E)-4-(1-naphthylvinyl)pyridine hydroxyethyl bromide (B111) and the tertiary amine salt (E)-1-methyl-4-(1-naphthylvinyl)-1,2,3,6-tetrahydropyridine hydrochloride (B115), both previously shown to protect against organophosphate (OP) toxicity, were examined in vivo for effects on rat brain choline acetyltransferase (CAT) activity and acetylcholine (ACh) levels. When administered iv, but not when given ip, B111 was able to inhibit brain CAT 29% and reduce brain ACh levels 25%, yet was unable to prevent soman-induced increases in ACh. B115, which may serve as a depot form of a quaternary ammonium analogue, was able to decrease CAT activity as much as 80% upon multiple ip administration. This CAT inhibitory potency was unprecedented for a tertiary amine salt of its structure. However, ACh levels were reduced by no more than 25% and B115 was ineffective in preventing soman- and sarin-induced increases in ACh. Since the degree of inhibition of CAT activity produced by B111 and B115 was not accompanied by a corresponding decrease in ACh levels, the protection afforded by these compounds against OP toxicity is most likely not related to CAT inhibition. B115 was also tested for its ability to affect cholinergic receptor binding. B115 was administered to rats ip, twice daily, at low doses throughout a 3-week period. Analysis of cortex tissue revealed a 45% increase in nicotinic receptor binding with no change in either total muscarinic receptor binding (M-1 and M-2) or high-affinity muscarinic receptor binding (M-2 alone).

Acetylcholine

Effects of calcium channel blocking agents on neostigmine-induced fasciculations.

Male Sprague-Dawley rats were anesthetized with pentobarbital and prepared for monitoring contractions of the gastrocnemius muscle evoked by stimulation of the sciatic nerve. Animals received atropine prior to a dose of neostigmine of 0.02 mg/kg i.v. The effects on contractile strength and the number of fasciculations in a 2-min period were assessed. Pretreatment with phenytoin, 20 mg/kg, reduced the number of fasciculations to 32% of control without altering contractile strength. Both nifedipine and nitrendipine, 1 mg/kg each, virtually abolished fasciculations without altering twitch strength. Verapamil, 4 and 8 mg/kg, depressed fasciculation frequency to 50% of control without affecting pre-neostigmine twitch height. The dihydropyridine calcium blocking agents did however reduce the neostigmine-induced augmentation of contraction strength. These data suggest that a calcium-mediated current at presynaptic motor endings participates in the generation of repetitive nerve terminal discharges leading to muscle fasciculations.

Animals

Urinary calculi in children in Western Australia: 1972-86.

Records of all children presenting with urinary calculi in the period 1972-86 were reviewed in order to detail clinical features, laboratory and radiographic findings and treatment. Of a total of 85 children, 59 were Aboriginal and 26 were Caucasian. The features of urolithiasis differed between these groups. In the Aboriginal patients, calculi consisted mainly of uric acid and urates. Important clinical characteristics of this group included a young age at presentation (median = 2.1 years) and frequent presentation with failure to thrive. Calculi were commonly located in the upper urinary tract and most required surgical removal. Documented sequelae included renal scarring and hypertension. Caucasian children presented at a later age (median = 10.5 years), frequently with abdominal pain, and most calculi were associated with an underlying urological or metabolic abnormality.

Child

Cardiovascular effects of 1-methyl-4-(1-naphthylvinyl)piperidine hydrochloride.

1-Methyl-4-(1-naphthylvinyl)piperidine (B-120) produced a dose related decrease in blood pressure in cats. B-120 did not alter the cardiovascular response to acetylcholine or vagal stimulation. It did not affect the response of the nictitating membrane to both pre- and post-ganglionic stimulation. In isolated cortical synaptosomes, B-120 decreased calcium flux below basal levels. Thus, the blockade of calcium channels appeared to be related to the production of hypotension and may be the mechanism by which B-120 protected against organophosphate toxicity.

Animals

Approaches to protection against nerve agent poisoning. (Naphthylvinyl)pyridine derivatives as potential antidotes.

Analogues of the potent inhibitor of choline acetyltransferase (CAT) (E)-4-(1-naphthylvinyl)pyridine methiodide were synthesized and evaluated for their ability to inhibit CAT and protect against nerve agent intoxication. Several compounds, notably (E)-1-(2-hydroxyethyl)-(1-naphthylvinyl)pyridinium bromide (3), (E)-1-methyl-4-(1-naphthylvinyl)-1,2,3,6-tetrahydropyridine hydrochloride (22), and (E)-1-methyl-4-(1-naphthylvinyl)piperidine hydrochloride (23), were found to afford significant protection against sarin in the mouse and against soman in the guinea pig. However, protection was apparently not related to CAT inhibition. Compound 23, our most effective compound in protecting against nerve agent, was without CAT inhibitory activity. Compound 22, which proved to be a potent CAT inhibitor, most likely owed this activity to being dehydrogenated back to the pyridinium quaternary salt by oxidative enzymes. Several of the (naphthylvinyl)pyridine quaternary salts, but not their tertiary amine analogues, were found to be effective in slowing the rate of aging of soman-inhibited acetylcholinesterase. Ability to slow the rate of aging was enhanced by introduction of methoxy substituents on the aryl moiety whereas the aging rate was actually accelerated by chloro substituents. To date, our most effective compound in slowing the rate of aging, (E)-4-[(4-methoxy-1-naphthyl)vinyl]pyridine methochloride (6), did not provide significant protection against soman in the mouse.

Acetylcholinesterase

Binding of nitropyrenes and benzo[a]pyrene to mouse lung deoxyribonucleic acid after pretreatment with inducing agents.

In assessing the biological effects of exposure to a complex chemical mixture, it is important to determine how the behavior of one compound may be influenced by the presence of other compounds in the mixture. In this study the effect of pre-exposure to an organic extract of diesel exhaust or to selected compounds in diesel exhaust on the binding of diesel exhaust compounds to DNA was determined. The amount of radiolabel covalently bound to mouse lung DNA following intratracheal administration of radiolabeled benzo[a]pyrene (BaP), 1-nitropyrene, 1,3,6-trinitropyrene, or a mixture of dinitropyrene was determined following pretreatment with benzo[a]pyrene, 1-nitropyrene, and diesel exhaust extract. Male CD-1 mice, 15-18 weeks of age, received 10 mg/kg of putative inducing agents by intratracheal instillation and, after 24 hr, 0.03 to 1.2 mg/kg radiolabeled putative DNA binding agents. Lung DNA was extracted, and covalent binding was quantitated by liquid scintillation spectroscopy. 1-Nitropyrene was a potent lung DNA binding agent in the absence of inducing agents [Covalent Binding Index (CBI) = 970] and was extremely potent after benzo[a]pyrene pretreatment (CBI = 21,540, comparable to the CBI for aflatoxin B1). Similar results were obtained for DNA binding of dinitropyrene and trinitropyrene with and without BaP pretreatment. DNA binding of BaP was lower (CBI = 40) and less inducible (BaP-pretreatment CBI = 230). Pretreatment with diesel extract caused an elevation in the binding of benzo[a]pyrene but little or no elevation in the binding of the nitropyrenes. Pretreatment with 1-nitropyrene did not increase significantly DNA binding of any of the agents tested. These results indicate that nitropyrenes bind readily to lung DNA and this binding may be increased in the presence of respirable mixtures, especially those containing inducing agents such as BaP.

Aflatoxin B1

Isolation, identification and bacterial mutagenicity of 2-nitro-9-fluorenone from diesel-exhaust particle extracts.

Organic extracts of diesel-exhaust particles show direct mutagenic activity in the Salmonella typhimurium bacterial mutagenicity assay. Nitro-aromatic compounds are believed to be responsible for part of the mutagenicity. A previously unidentified polyfunctional nitro-aromatic compound, 2-nitro-9-fluorenone (2N-Fone) was isolated from diesel-exhaust particles using a two-step fractionation scheme consisting of Sephadex LH20 chromatography and silica-gel thin-layer chromatography. Positive identification was by gas chromatography/mass spectroscopy and coelution with an authentic standard. Direct and indirect mutagenicities of 2N-Fone in several bacterial strains were also determined. The results indicated that 2N-Fone produces 60-70 rev/nmole of direct mutagenic activity, and is about 1/5 to 1/10 as mutagenic as 1-nitropyrene.

Chromatography

Method for determining the lung burden of talc in rats and mice after inhalation exposure to talc aerosols.

A method has been developed to quantitate talc lung burdens in rats and mice after inhalation exposure to talc aerosols. The method is based on acid-insoluble magnesium (Mg) determination by flame atomic absorption. Precipitating protein from homogenates of lungs of unexposed rodents with 5% perchloric acid and washing with 5% trichloroacetic acid removed the soluble and naturally occurring Mg. This resulted in residual Mg content averaging 0.43 micrograms Mg per g lung in rats and less than 0.1 microgram Mg per g lung in mice for young rodents less than 12 weeks old. Rodents 12-18 months old had residual mean (+/- SD) Mg contents of 3.4 +/- 2.0 micrograms Mg per g rat lung (n = 17) and 6.5 +/- 2.9 micrograms Mg per g mouse lung (n = 12). Thus, the background residual acid-insoluble Mg content in rodent lungs appears to increase with age. Negligible quantities of Mg were extracted directly from the talc treated by these procedures. Adding 50-2000 micrograms talc to lungs from unexposed rodents, followed by the sample treatment, gave mean (+/- SD) Mg recoveries of 89 +/- 12% (n = 19) for rat lungs and 96 +/- 26% (n = 15) for mouse lungs. The lung burden of talc in rodents exposed to talc aerosols for 6 h per day, 5 days per week for 4 weeks was determined. Mean lung burdens in rats were 77, 187, and 806 micrograms talc per g lung (n = 10) for exposures at 2.3, 4.3, and 17 mg talc m-3, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Aerosols

Fractionation of diesel particle extracts by sephadex LH-20 and thin-layer chromatography.

A method was developed to concentrate fractions high in bacterial mutagenicity from diesel exhaust particle (DEP) extracts. The two-step fractionation of organic extracts of DEP employed Sephadex LH-20 followed by thin-layer chromatography (TLC). In both steps, nitro-substituted polycyclic aromatic hydrocarbons (nitro-PAHs) were found to co-elute with the fractions of highest specific bacterial mutagenic activity. Although recoveries of mass and mutagenicity from the LH-20 fractionation were high, very low (20-30%) recovery of mutagenicity was found after TLC. Recovery studies using 14C-labeled 1-nitropyrene showed that 78% of the compound was recovered unaltered through the combined fractionation. The most bioactive TLC subfraction was chromatographed using gas chromatography with thermionic specific detection. A sizeable peak was found to co-elute with a nitropyrene standard, but no peak was found co-eluting with nitrofluoranthene. Triple quadrapole mass spectrometry was used to measure the concentrations of nitropyrene in each of the fractions. Nitropyrene was enriched 160-fold in the most bioactive TLC subfraction over the starting material, for a final concentration of over 3200 micrograms g-1. Masses corresponding to several two- and three-ring methylated nitro-PAHs were found in the same fraction, including nitro-(methylbiphenyls/methylacenapthenes) and nitro-(methylanthracenes/methylphenanthrenes).

Animals

Chemical and biological properties of diesel exhaust particles collected during selected segments of a simulated driving cycle.

Particle emissions, percentage of organic extractable materials, and mutagenicities of extracts from a diesel engine operating on a test stand have been determined for the full Federal Test Procedure driving cycle and several individual segments thereof. Particle samples were collected using a computer controlled high volume sampler. Extracts of the exhaust particles were screened for the potent mutagens nitropyrene/nitrofluoranthenes by mass spectrometry/mass spectrometry (MS/MS). Results indicate that a long acceleration from 0-55 mph produced approximately seven times more particles per second than the full cycle. Also, the 0- to 55-mph acceleration and a subsequent 55-mph cruise produced significantly higher amounts of mutagens than other segments or the full FTP cycle. A direct correlation of both NOx levels and temperature with mutagenicity was noted (r = 0.89 and r = 0.89). The specific activities of the extracts showed decreases or remained unchanged when assayed in TA-98 NR or TA-98 1,8 DNP6, nitroreductase deficient strains of TA-98. Three extracts were found to have high levels of nitropyrenes/nitrofluoranthenes, and two of the three had high specific activities in TA-98.

Mutagenicity Tests

Comparative mutagenicity of a coal combustion fly ash extract in Salmonella typhimurium and Chinese hamster ovary cells.

The dichloromethane extract of a coal combustion fly ash sample obtained from an experimental fluidized bed coal combustor was tested for mutagenicity in Salmonella typhimurium and cultured Chinese hamster ovary (CHO) cells. The extract was directly mutagenic in S typhimurium strain TA98 and the nitroreductase deficient strains TA98NR and TA98/1,8DNP6. The mutagenicity observed in TA98NR and TA98/1,8DNP6 was lower than that in TA98. Addition of exogenous Aroclor 1254-induced rat liver supernatant (liver S9) decreased the bacterial mutagenicity of the extract. A different mutagenic response was observed in CHO cells. In the absence of liver S9, although the extract was cytotoxic to CHO cells, no significant mutagenicity was observed. Addition of exogenous liver S9 decreased the cytotoxicity and increased the mutagenicity at both Na+-K+-ATPase and hypoxanthine-guanine phosphoribosyl transferase (HGPRT) gene loci in CHO cells. Using gas chromatography/mass spectrometry (GC/MS) and tandem quadruple mass spectrometry, a number of polynuclear aromatic hydrocarbons (PAHs) and nitrated PAHs (nitro-PAHs) were tentatively identified and quantitated. A possible explanation of the difference in bacterial and mammalian mutagenicity of the extract is that the bacterial mutagenicity was induced by the nitro-PAHs that are potent bacterial mutagens and mammalian mutagenicity was induced by both PAHs and nitro-PAHs that are promutagens.

Animals

MS/MS analysis of diesel emissions and fuels treated with NO2.

Correlations between direct-acting mutagens in diesel emissions and the activity of nitroaromatic compounds have been noted, but detection and identification of nitro-compounds in diesel particulates has remained an elusive problem. In the results reported here, MS/MS (tandem mass spectrometry) was found to detect nitroaromatic compounds in fractionated and unfractionated diesel soot extracts. The nitro-compounds detected ranged from two- to four-ring polynuclear aromatic hydrocarbon derivatives and were primarily mono-nitro derivatives. An aromatic fraction from diesel fuel reacted with NO2 resembled diesel exhaust extracts from an engine operating on the same fuel. Therefore, it is possible that nitroaromatic derivatives in diesel exhaust may be in part due to unburned fuel residues reacting with NO chi formed in the combustion process. The utility of MS/MS in comparing complex mixtures from different sources or subfractions thereof is discussed.

Fuel Oils

Effects of dimethyl sulfoxide on subunit proteins.

The effects of DMSO are thought to result from the formation of hydrogen bonds with proton-donor groups on biopolymers, which are stronger than those formed with water. Since DMSO contains methyl groups, however, effects on hydrophobic bonding in proteins could be expected at higher DMSO levels. Our studies of the effects of DMSO on model subunit proteins can be interpreted in the above terms. At a concentration of 20% or less, DMSO changed glutamate dehydrogenase into the inactive monomer and the effects were fully reversible with the activator (ADP). Higher DMSO levels resulted in irreversible inactivation. The predominant effect noted on beta-glucuronidase was irreversible inactivation by 20% or more DMSO at 37 degrees C. Purified beta-glucuronidase exhibited an activation in 20% DMSO at high substrate levels; this resulted from an apparent substrate inhibition in the absence of DMSO. DMSO inhibited the clotting of fibrinogen by purified thrombin, but the major effect appeared to be due to competition between thrombin and DMSO for binding sites on fibrinogen. These effects appear to be largely due to interactions between DMSO and hydrophobic bonding in fibrinogen, although DMSO also appears to interfere with the aggregation of fibrin monomers through its effects on hydrophilic groups. These results suggest that reversible alterations in protein structure are the major effect of exposure of subunit proteins to low DMSO levels at low temperatues, while irreversible denaturation of subunit proteins may be an appreciable effect a higher temperatures and higher DMSO concentrations.

Adenosine Diphosphate