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Biomedical subjects

I Rundquist

Publications and source records attributed to I Rundquist.

29 records · Page 2Linked to original sources

Sciatic nerve blood flow measured by laser Doppler flowmetry and [14C]iodoantipyrine.

Blood flow was examined in sciatic nerves of pentobarbital-anesthetized rats by means of laser Doppler flowmetry (LDF) and intravenous [14C]iodoantipyrine infusion. Continuous LDF signals demonstrated slow oscillations and acute, pressure-related changes in flow. The steady-state LDF signal was related linearly to nerve blood flow, as measured with [14C]iodoantipyrine, in intact nerves and nerves stripped of the epineurium. In 14 intact nerves, nerve blood flow averaged 0.27 +/- 0.03 (SE) ml X min-1 X g-1, whereas it averaged 0.13 +/- 0.01 in 5 stripped nerves. Autoradiographs of [3H]-nicotine-infused nerves and intra-arterial injection of 57Co-labeled microspheres demonstrated that flow was not uniform throughout the nerve cross section. The results indicate that LDF can be used to examine nerve blood flow in vivo, demonstrate a linear relation between the LDF signal and flow, and establish absolute values for blood flow in intact and stripped nerves of the anesthetized rat.

Animals↗

Dimethylsulfoxide increases the survival and lysosomal stability of mouse peritoneal macrophages exposed to low-LET ionizing radiation and/or ionic iron in culture.

Reactive oxygen-derived free radicals form excessively during irradiation of biological structures, but also normally in many cellular oxidative processes, albeit in small amounts. Unless scavenged by protective mechanisms, such radicals may induce peroxidation of polyunsaturated fatty acids resulting in membrane damage. The process may be catalysed to a considerable extent by transitional metals with the capacity to form redox systems, such as Fe3+ in equilibrium Fe2+. In the present study, it is shown that radiation by X-rays and/or exposure to ionic iron (Fe3+) causes decreased survival in parallel with lysosomal labilization of cultured mouse peritoneal macrophages (MPMs). The latter event was demonstrated as a reduced capacity of lysosomes in living MPMs to retain acridine orange during photo-oxidative stress caused by continuous exposure to blue light of short wavelength. The effects of X-irradiation, and/or lysosomal iron-loading, could be counteracted by the addition of the .OH-scavenging drug dimethylsulfoxide (DMSO) to the cell culture medium. The findings suggest that X-irradiation may damage certain sensitive G0 cells, such as Kupffer cells, serous cells of salivary glands and old macrophages, which normally have substantial concentrations of metals within their vacuolar apparatus, possibly by lysosomal damage involving .OH-mediated lipid peroxidation.

Acridine Orange↗

Cytofluorometric quantitation of acridine orange uptake by cultured cells.

The vacuolar accumulation of the lysosomotropic weak base acridine orange (AO) within living cells in culture was studied by cytofluorometry. Mouse peritoneal macrophages, malignant human glioma cells, and normal human glial cells were utilized. Exposure to AO resulted in granular bright red fluorescence, as well as a diffuse weak green background fluorescence. To obtain reproducible "staining" conditions, the red granular fluorescence was measured as a function of dye concentration and staining time. Exposure to high concentrations of AO (greater than 10 micrograms/ml) was found to cause cell damage in combination with markedly changed fluorescence distribution for the cell population with reduced mean fluorescence and increased variability. Granular uptake of AO was pH-dependent and almost zero at pH 5.5. AO fluorescence, as measured by cytofluorometry, was found to be roughly linear to the amount of AO present in the cells, as measured by spectrofluorometry after cell solubilization, indicating negligible fluorescence quenching. AO labelling of living cells might serve as a useful indicator of the condition of the cellular vacuolar (lysosomal) apparatus.

Acridine Orange↗

Differentiation between attached and ingested immune complexes by a fluorescence quenching cytofluorometric assay.

Immune complexes attached to and ingested by human polymorphonuclear (PMN) cells were quantified by cytofluorometry using a fluorescence quenching assay which permits differentiation between attachment and ingestion. The fluorescence intensity decreased after ingestion as a result of the low pH in the phagolysosomes. When extracellular pH was lowered a slight decrease in phagolysosomal pH was detected in macrophages but not in PMN. When measuring total fluorescence, interaction at pH 5.8 for PMN and at pH 4.4 for macrophages is recommended, since the intensity of extra- and intracellular fluorescence are equal under these conditions. Thirty different dyes were tested for dye exclusion and fluorescence quenching of FITC-conjugated yeast particles, and FITC-conjugated IgG. Because of the lysosomotropic effect of basic dyes, acid and direct dyes are preferable as quenching agents. We could not find physical or chemical properties of the dyes that correlated with their quenching effect. Heat aggregated IgG was used as an immune complex analogue in the development of the assay. Trypan blue (0.2 mg/ml) at pH 4.4 was found to be the best quenching agent of extracellular fluorescence when using ingested aggregated IgG. The technique offers a simple method of quantifying ingested protein aggregates and of studying heterogeneity in phagocyte populations.

Animals↗

A simple fluorescence technique to stain the plasma membrane of human neutrophils.

Three different fluorochromes were tested for their ability to label the plasma membrane proteins of neutrophils without labelling intracellular structures. A fluorescence quenching technique was used to differentiate between extra- and intracellularly localized fluorescence. Fluorescamin and fluoresceinisothiocyanate were shown to stain intracellular structures as well as the plasma membranes of the cells. Another fluorochrome, Evans Blue, is proposed since this dye was shown, by using the fluorescence quenching technique, to selectively stain the plasma membrane of viable neutrophils.

Cell Membrane↗

A versatile localization system for microscopic multiparametric analysis of cells.

A new, simple and relatively inexpensive electronic digital position readout (DPRO) system which can be applied to the rapid localization and recovery of microscopic material is described. It is based upon a commercially available digital position readout system which is routinely utilized by industry for small machine tools and measuring equipment. This has been mounted onto the stage of various microscopic instrumentation to provide X and Y coordinates relative to an arbitrary reference point. The integration of small computers interfaced to scanning interferometric, microdensitometric and fluorescence microscopes were used to demonstrate the reliability, versatility and ease of application of this system to problems of multiparametric measurements and analysis of cultured cells. The system may be expanded and applied to clinical material to obtain automatized, multiparametric measurements of cells in haematology and clinical cytology.

Cells, Cultured↗

Uptake and turnover of dopamine in rat mast cells studied by cytofluorometry and high performance liquid chromatography.

Uptake and turnover of dopamine (DA) in rat peritoneal mast cells were studied by a cytofluorometric technique. The main advantage of the method is that it permits the study of the distribution of amine content within populations of cells. Catecholamines and indolamines can be differentiated, but subtler structural differences in this group of compounds cannot be distinguished. We, therefore, combined the cytofluorometric measurements with a liquid chromatographic method based on reversed-phase chromatography followed by amperometric detection in a thin layer flow cell. Intraperitoneally injected L-DOPA was rapidly decarboxylated to DA, which was accumulated in mast cell granules. The elimination of DA from the mast cells was much faster than previously published 5-hydroxytryptamine and histamine elimination rates. No evidence of intracellular conversion of DA before its elimination was found and simultaneous heparin quantitations gave no evidence of an elimination pathway due to exocytosis of granules. Electron microscopy disclosed no structural changes that could be related to exocytosis during the elimination phase of DA. The rapid elimination together with absence of inhibition of DA-uptake after storage of exogenous 5-hydroxytryptamine suggest that the mechanism of DA storage differs from the mechanism of storage of endogenous mast cell amines.

Animals↗

A flexible system for microscope fluorometry served by a personal computer.

An automated microscope fluorometer based on a modified Leitz MPV I system is described. Automation is mainly attained by the use of a cheap, commercially available personal computer system programmed in extended BASIC supplemented by a few assembly-level subroutines. The automation has resulted in simplified measuring procedures and increased measuring speed. The statistical precision is enhanced because greater cell populations can be analysed within reasonable time. Programs for several biological applications are described. Routines for cell population analysis, including storage of data on disk files, has proved especially useful. Programs for recording of corrected fluorescence emission spectra and of time-dependent fluorescence variables have also been developed. A high flexibility is achieved, as the BASIC programs can readily be modified for specific purposes. Some data on the sensitivity and reproducibility of the instrument alone, and in combination with a staining method, are also presented.

Animals↗

DNA distribution of mast cell populations in growing rats.

The proliferation of rat peritoneal mast cells was examined under normal conditions in vivo. DNA content of individual mast cells was measured by cytofluorometry after staining with the bibenzimidazole dye Hoechst 33258. Diploid non mast cells from each rat were used as a biological standard, which resulted in small long-term variations in the method. The proportion of mast cells in the S + G2 region of the DNA distribution was about 4% for young rats (24 days old, body-weights about 60 g). It decreased in relation to body-weight, and was less than 1% for 105-day-old rats weighing 400 g. During the same growth period the total number of mast cells in the peritoneal cavity increased about 8-fold. The total number of proliferating cells, about 30,000, remained constant throughout the observation period. No evidence of polyploidization or accumulation in G2 of mast cell nuclei was found. It is concluded that peritoneal mast cells increase in number by mitotic proliferation of differentiated cells.

Animals↗

Millisecond fading and recovery phenomena in fluorescent biological objects.

Cytofluorometric signals derived from some frequently used fluorophores were studied during illumination times in the millisecond range. These rapid signals were recorded on a storage oscilloscope. The objects studied included (1) Berberine sulphate stained mast cell heparin, (2) Acriflavine-Feulgen stained DNA, (3) Acridine orange stained mast cell heparin, (4) Acridine orange stained DNA and (5) Fluorescein isothiocyanate-conjugated IgG in an antinuclear factor test. A new rapid fading phenomenon, appearing as an initial peak upon the familiar slowly declining fluorescence signal, is reported. This fading, which had a duration of about 10 ms, also showed a very rapid recovery. The influence of this phenomenon on fluorometric measurement techniques is discussed. The millisecond fading phenomenon occurred in all the fluorophores studied except Fluorescein isothiocyanate-conjugated IgG. In the case of acridine orange the phenomenon was present when the dye was bound to nuclear DNA but absent when the dye was bound to mast cell heparin. This suggests that the millisecond fading and recovery phenomenon may be used in fluorescent microprobe studies.

Animals↗

Quantitation of mast cell heparin by flow cytofluorometry.

Mast cells can be automatically identified in a mixed cell population by flow cytofluorometry after Berberine sulphate staining. Volume specific counts of the total number of cells and number of mast cells, as well as frequency distributions of fluorescence intensities of mast cells, based on a large number of cells, can be rapidly obtained. Results obtained by microscope fluorometry of cells identified by phase contrast microscopy showviously published results it may be inferred that the fluorescence intensity of individual mast cells is proportional to mast cell heparin content. The automated cell counts correlated very well with manual hemocytometer counts. Both cell counts and the determination of mean mast cell fluorescence showed excellent reproducibility.

Animals↗