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J Corley

Publications and source records attributed to J Corley.

4 recordsLinked to original sources

Endotoxemia alters splanchnic capacitance.

The splanchnic circulation constitutes a major portion of the total capacitance vasculature and may affect venous return and subsequently cardiac output during low output states. This study assessed the effects of rapid (10 microg/kg over 5 min) and slow (10 microg/kg over 60 min) induction of endotoxin (Escherichia coli) shock on splanchnic blood volume in 8 farm swine. Blood volume was measured by using Tc99m-labeled erythrocytes and radionuclide imaging. Baseline arterial pressure (MAP), central venous pressure (CVP), and liver, splenic, mesenteric and total splanchnic volumes were stable during the 30-min baseline. Approximately 30 min after the rapid endotoxin infusion, splenic volume decreased by 45%, whereas liver volume increased by 40% and MAP decreased by 60% (P < 0.01). The reduction in splenic volume occurred within 10 min of the endotoxin infusion, whereas liver volume changes occurred after MAP reduction. The slow endotoxin infusion also reduced splenic volume by approximately 50% (P = 0.05), whereas MAP declined by 30% (P < 0.05). However, the slow endotoxin infusion lowered liver volume (P < 0.05). Mesenteric volume was unaffected by the fast or slow endotoxin infusion. Total splanchnic volume was unaffected by the fast infusion but decreased by 37% in the slow infusion group (P < 0.05). In summary, E. coli endotoxin reduces splenic blood volume and increases liver blood volume after acute hypotension ensues. Endotoxin does not increase total splanchnic blood volume and may actually decrease total splanchnic volume in the absence of circulatory collapse. This endotoxin shock model is not associated with blood volume pooling in the splanchnic capacitance circulation.

Animals↗

Solid matrix, room temperature phosphorescence identification and quantitation of the tetrahydrotetrols derived from the acid hydrolysis of benzo[a]pyrene-DNA adducts from human lung.

A new method, suitable for human biomonitoring, that uses room temperature phosphorescence for the detection of DNA damage by carcinogenic metabolites of polycyclic aromatic hydrocarbons is described. Samples of human lung DNA (1 mg) that had been subjected to immunoaffinity chromatography (anti-benzo[a]pyrene-diol-epoxide deoxyguanosine monoclonal antibodies) were acid hydrolyzed (0.1 N HCl, 90 degrees C, 3 h) and the resulting DNA lung hydrolyzates separated by high performance liquid chromatography. Relevant fractions were combined with a solid matrix support which consisted of a mixture of alpha-cyclodextrin (alpha-CD):NaCl (1:9) or alpha-CD:TINO3: aNO3 (1:1:8). The dried and powdered sample-matrix material was analyzed by phosphorescence spectroscopy at room temperature. Certain fractions of human lung samples were found to contain materials that yielded phosphorescence spectra that were indistinguishable from those produced when an authentic r-7, t-8, t-9, c-10-tetrahydroxy-7,8,9,10-tetrahydrobenzo[a]pyrene reference standard was analyzed. The data confirm previous studies that have reported the presence of r-7, t-8 dihydroxy-t-9,10-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene-DNA adducts in human tissues at levels of 1 adduct/10(7)-10(8) nucleotides. The alpha-cyclodextrin solid matrix, room temperature phosphorescence technique was performed with a commercially available instrument, but is 50 times more sensitive than the synchronous fluorescence spectroscopic technique previously used.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Gray-to-white matter ratios of HMPAO in the human brain.

The gray-to-white matter ratio of technetium 99m-hexamethylpropyleneamine oxime (99mTc-HMPAO) in 14 anesthetized patients undergoing partial brain resection for treatment of complex partial seizures. The gray-to-white matter ratio of 99mTc-HMPAO was 1.8:1 (standard deviation 0.6) in the temporal lobe. Many of the biopsied specimens demonstrated histopathological abnormalities.

Adult↗