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Biomedical subjects

B H Stuart

Publications and source records attributed to B H Stuart.

9 recordsLinked to original sources

The identification of adipocere in grave soils.

Soil samples recovered from grave exhumations have been analysed in an attempt to identify and characterise adipocere contained in the samples. The soil samples were collected from different environments, including samples recovered from forensic grave sites. Gas chromatography-mass spectrometry (GC-MS) was employed to identify adipocere and characterise the fatty acid composition. X-ray diffraction was used to characterise the soil environments.

Journal Article↗

A Fourier transform infrared spectroscopic study of P2 protein in reconstituted myelin.

The secondary structure of P2 protein, isolated from bovine peripheral nervous system myelin, in reconstituted myelin was studied using Fourier transform infrared (FTIR) spectroscopy. Spectra of the protein in aqueous solution and in the lipid environment were compared and notable changes were observed. It was proposed that there are significant differences in the conformation of the protein in the contrasting environments. An increase in alpha-helical structure was observed for the protein in myelin and the significant amount of beta-structure observed in aqueous solution was reduced. The degree of alpha-helix appears to be related to the neuritogenic activity of the P2 protein. The findings of this study also support the view that the presence of both alpha-helices and beta-structure plays a significant role in membrane proteins.

Amino Acid Sequence↗

A Fourier transform infrared spectroscopic study of the secondary structure of myelin basic protein in reconstituted myelin.

The secondary structure of myelin basic protein (MBP) in reconstituted central nervous system myelin was studied using Fourier transform infrared (FTIR) spectroscopy. The spectra of the protein in aqueous solution and in the lipid environment were compared and notable differences were observed. It is proposed that there are significant differences in the conformation of the protein in the contrasting environments. Significant increases in both alpha-helical structure and beta-structure were observed on reconstitution in myelin. The findings of this study also support the view that the presence of both alpha-helices and beta-structure plays a important role in membrane proteins.

Amino Acid Sequence↗

Denaturation studies of P2 protein using circular dichroism.

The denaturation process of P2 protein has been investigated using circular dichroism spectroscopy. The influence of temperature and the presence of urea were the factors investigated. Increasing temperature causes the destruction of beta-structure, while helical structure remains intact even at relatively high temperatures. Increasing the urea concentration destroyed all forms of secondary structure in P2 and the study also supports the model of a stepwise denaturation process of the protein.

Amino Acid Sequence↗

Study of the CN1 peptide of P2 protein using Fourier transform infra-red spectroscopy.

The conformation of the CN1 peptide, derived from the nervous system P2 protein, has been studied in deuterium oxide solution using Fourier transform infra-red (FTIR) spectroscopy. The peptide was found to be mainly random, with some alpha-helix and beta-structure present. The open structure of CN1 indicates that the constraints necessary for formation of the largely beta-structure in P2 are removed by cleavage of the protein to form peptides. The study produced different quantitative estimations of secondary structures to those previously reported in circular dichroism studies, but the FTIR results are shown to be more reliable.

Amino Acid Sequence↗

Two-dimensional analysis of the redox state of the rat cerebral cortex in vivo by NADH fluorescence photography.

A photographic method for measuring two-dimensional changes in NADH fluorescence and hemoglobin distributions in the rat cerebral cortex in vivo has been developed. Intracellular NADH was excited by UV light peaking at 360 nm and the emission was observed through a window with the maximum transmission at 450 nm. The fluorescence photographs (360 leads to 450 nm) required 20-25 sec exposures at the aperture opening of f/5.6 and the reflectance photographs (360 leads to 360 nm) 10 sec exposures at f/32. The digitization of photographic images was achieved either by a PDP-8-controlled microdensitometer coupled to an A/D converter or by a combination of a manually operated microdensitometer and a computer-controlled digitizer. In the latter case, a photographic negative was scanned with a Joyce-Loebl microdensitometer in parallel lines 170 mum apart, and the densitometric tracings were digitized with a PDP-8-controlled TV digitizer. The digital data were processed by DEC PDP-10 computer and the results were displayed in 3-dimensional surfaces. Nitrogen anoxia caused increases in fluorescence at 450 nm ranging from 10 to 75% fo the normoxic fluorescence intensities (after correcting for the logarithmic characteristics of the photographic films) and decreases in reflectance intensities in the range of 10-30%. The spatial resolution of the present technique is limited to approximately 30 mum X 30 mum on the cortical surface and the time resolution to 10-25 sec. The optical properties of the cerebral cortex in vivo appear to be controlled primarily by blood vessel patterns and hemodynamic factors and secondarily by the redox state of the tissue. Evidence for a heterogeneous redox response of the cerebral cortex toward N2 anoxia was obtained.

Animals↗