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Biomedical subjects

David Stirling

Publications and source records attributed to David Stirling.

At least 19 recordsLinked to original sources

Three novel hydroxybenzoate saxitoxin analogues isolated from the dinoflagellate Gymnodinium catenatum.

In a recent survey of paralytic shellfish poisoning (PSP) toxins in Gymnodinium catenatum Graham extracts, using LC with postcolumn oxidation and fluorescence detection, three novel saxitoxin analogues were revealed in isolates from several locations, including Australian waters. We have named them as G. catenatum toxins, GC1 (1), GC2 (2), and GC3 (3). The compounds were isolated from a culture of the Australian strain by LC-MS-guided fractionation employing a C18-silica column and hydrophilic interaction chromatography. The unusual structures of these novel compounds were characterized by low- and high-resolution MS, MS/MS, and NMR spectroscopy. GC3 (3) was found to be the 4-hydroxybenzoate ester derivative of decarbamoylsaxitoxin, while GC1 (1) and GC2 (2) are the epimeric 11-hydroxysulfate derivatives of GC3 (3).

Animals↗

A 90-day oral gavage toxicity study of D-methylphenidate and D,L-methylphenidate in Sprague-Dawley rats.

D-methylphenidate is an enantiomer of D,L-methylphenidate and was developed as an improved treatment for attention deficit hyperactivity disorder in children. The current study was performed to determine and compare the toxicity of 2-50 mg/kg per day D-MPH and 100 mg/kg per day D,L-MPH for 90 days in rats with the top D-MPH dose being equimolar to 100 mg/kg D,L-MPH. The top D-MPH and D,L-MPH doses were at least 67 times that of the human dose and produced systemic exposures that were over 10 times higher than those typically achieved in children. During the course of the study, one male each from the 50 mg/kg per day and D,L-MPH groups and one female from the 50 mg/kg group died. Incidences of material around nose/eyes, scabbing, foot swelling, alopecia and abrasions were evident at 50 mg/kg per day D-MPH and 100 mg/kg per day D,L-MPH doses. Body weight and its changes decreased in a dose-dependent manner for D-MPH males. There were significant changes in some clinical chemistry measurements at the terminal bleed in the high dose groups of both sexes although most of these changes were resolved by the recovery bleed. Differences in absolute and relative body and certain organ weights for high dose D-MPH and D,L-MPH groups were seen at terminal necropsy with the differences no longer present after the recovery period. No abnormal or gross histopathological changes were associated with any of these organ weight changes reported for the terminal and recovery periods. Based on body weight changes, the no observed adverse effect level for D-MPH in rats was 20 mg/kg. Overall, the toxicity profile observed in rats with 50 mg/kg per day D-MPH was comparable to that of an equimolar dose of D,L-MPH (100 mg/kg per day) when given repeatedly for 90 days using a twice a day dosing regimen.

Administration, Oral↗

A novel method for quantitation of human von Willebrand factor messenger RNA.

We have developed a novel assay for quantitation of human von Willebrand factor (vWF) messenger RNA (mRNA) using the ABI 7700 quantitative PCR system (Applied Biosystems, Warrington, Cheshire, UK). To allow accurate measurement of the vWF mRNA concentration in samples, we have used 18S ribosomal RNA as an internal control. The specificity of the assay was demonstrated by polyacrylamide gel electrophoresis and ABI Prism BigDye terminator cycle sequencing of the PCR product. We have also assessed the assay by using RNA from both a hepatocyte cell line which does not express vWF mRNA, and an endothelial cell line which does express vWF mRNA. By mixing varying amounts of these RNAs together, we were able to adjust the vWF quantity in known increments while keeping the 18S ribosomal RNA internal control constant. The quantitation of vWF mRNA correlated with the proportion of endothelial cell RNA (r(2)=0.912, p<0.001).

Humans↗

Use of IMiD3, a thalidomide analog, as an adjunct to therapy for experimental tuberculous meningitis.

Tuberculous meningitis (TBM), the most severe form of Mycobacterium tuberculosis infection in humans, is associated with significant morbidity and mortality despite successful treatment with antituberculous drugs. This is due to the irreversible brain damage subsequent to the local inflammatory response of the host to M. tuberculosis. Corticosteroids have been used in conjunction with antituberculous therapy in an attempt to modulate the inflammatory response, but this strategy has been of limited success. Therefore, we examined whether combining antituberculous drugs with the immunomodulatory drug thalidomide or with a new thalidomide analog, immunomodulatory drug 3 (IMiD3), would be effective in reducing morbidity and mortality in an experimental rabbit model of TBM. Intracisternal inoculation of 5 x 10(4) CFU of Mycobacterium bovis Ravenel in rabbits induced progressive subacute meningitis characterized by high cerebrospinal fluid (CSF) leukocytosis, protein influx, release of tumor necrosis factor (TNF), substantial meningeal inflammation, and mortality by day 28. Treatment with antituberculous drugs or with antituberculous drugs plus thalidomide improved the clinical course of disease somewhat and increased survival to about 50%. In contrast, treatment with antituberculous drugs in combination with IMiD3 limited pathological neurologic changes and resulted in marked improvement (73%) in survival. IMiD3 treatment was also associated with reduced leukocytosis in the CSF and significantly lower levels of TNF in CSF and plasma. Histologically, the meningeal inflammation in animals treated with antituberculous drugs plus IMiD3 was considerably attenuated compared to that of the other treatment groups. These results suggest a potential role for IMiD3 in the management of TBM in patients.

Animals↗