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Biomedical subjects

M Mueller

Publications and source records attributed to M Mueller.

At least 109 records · Page 6Linked to original sources

Role of granulocyte/macrophage colony-stimulating factor in the regulation of murine alveolar macrophage proliferation and differentiation.

Granulocyte/macrophage (GM)-CSF is one of the hemopoietic growth factors that stimulates neutrophilic granulocyte and macrophage production by bone marrow progenitor cells. In this study, the effect of GM-CSF on the growth and differentiation of murine pulmonary alveolar macrophages (PAM) was investigated. In the presence of GM-CSF, normal murine PAM were induced to proliferate and develop into macrophage colonies with a dose-response curve similar to that of bone marrow GM colony-forming cells. PAM also responded to CSF-1, a lineage-restricted growth factor, but required much higher doses of CSF-1 and a longer incubation time for optimal colony formation. The proliferative response of PAM to CSF-1, however, was greatly enhanced by the concurrent addition of low doses of GM-CSF. In contrast, low doses of CSF-1 failed to potentiate the proliferative response of PAM to GM-CSF. Macrophages derived from GM-CSF cultures were rounder and less stretched and possessed less FcR-mediated phagocytic activity than cells produced in CSF-1 cultures. A study with hydrocortisone-induced monocytopenia showed that nearly one half of lung macrophages may be sustained by local proliferation of PAM without the continuous migration of blood monocytes. This study suggests that GM-CSF may play a major role in the production of PAM by two modes of action, 1) direct stimulation of cell proliferation and 2) enhancement of their responsiveness to CSF-1, thereby producing more mature and functionally competent macrophages.

Animals↗

Effects of fluid resuscitation on cardiac dysfunction following thermal injury.

To test the hypothesis that low cardiac output in burns is secondary to hypovolemia, the effects of resuscitation on isovolumic contracting rat heart following a full-thickness burn were studied. Sprague-Dawley rats were randomly assigned into three groups: (1) Sham burn, (2) 30% body surface area burn nonresuscitated, (3) 30% body surface area burn with 15 cc Ringer's lactate/180 g body wt ip at the time of burn resuscitated. Twenty hours postburn, the hearts were mounted on a Lagendorff perfusion apparatus. A balloon-tipped catheter placed in the left ventricle measured pressure and dp/dt. Coronary flow was determined. Myocardial samples for ATP and water were obtained. Left ventricular function was evaluated by recording peak systolic pressure, end diastolic pressure, and maximum +/- dp/dt while balloon volume was increased to 0.3 cc. Results are with end diastolic volume constant at 0.15 cc. Compared to sham burn, burn nonresuscitated generated lower peak systolic pressure +/- dp/dt and higher end diastolic pressure while hearts from burn resuscitated generated the same as sham burn. Coronary flow and tissue water content was similar in all. ATP content was lower in burn nonresuscitated. Our data support that impaired systolic and diastolic function in burn nonresuscitated hearts is associated with lower ATP levels not seen in burn resuscitated and reperfusion of burn nonresuscitated hearts does not reverse the myocardial depressant effect.

Adenosine Triphosphate↗

Interleukin-3 (IL-3) stimulates the clonal growth of pulmonary alveolar macrophage of the mouse: role of IL-3 in the regulation of macrophage production outside the bone marrow.

Interleukin-3 (IL-3) is one of the hematopoietic growth factors that regulates the growth and differentiation of pluripotent stem cells, thereby leading to the production of all the major blood cell types. The role of IL-3 in the regulation of pulmonary alveolar macrophage (PAM) production was investigated. IL-3 stimulated the proliferation and clonal growth of murine PAM with a dose-response curve similar to that of bone marrow granulocyte-macrophage colony-forming cells. The IL-3-induced colony formation by cells outside the bone marrow appeared to be unique to PAM; IL-3 failed to cause colony formation by both peritoneal exudate macrophages (PEM) and blood monocytes. Unlike bone marrow stem cells, PAM are unipotential and in vitro gave rise to only mononuclear phagocytes under the influence of IL-3. Nevertheless, cells derived from PAM cultures in media containing IL-3 displayed a high degree of heterogeneity in terms of their Fc receptor-mediated phagocytic activity. At low concentrations, IL-3 induced a synergistic response with colony-stimulating factor 1 (CSF-1), which resulted in an enhanced proliferative capacity of PAM. A synergistic effect was also observed by short-term exposure of PAM to IL-3 followed by incubating with CSF-1 alone. This study shows that IL-3 exhibited a macrophage growth factor activity unique to PAM.

Animals↗

Parathyroid ultrastructure after aldehyde fixation, high-pressure freezing, or microwave irradiation.

Parathyroid cell variants, commonly observed in parathyroid glands fixed by immersion in glutaraldehyde, are believed to be the result of cyclic changes in the course of parathyroid hormone secretion. Immersion of bovine parathyroid glands in a mixture consisting of 1% glutaraldehyde, 1.5% formaldehyde, and 2.5% acrolein, followed by post-fixation in 1% osmium tetroxide, resulted in high uniformity with only one cell variant, whereas the same fixation procedure led to disruption of cell membranes and formation of cell variants in rat parathyroids. Parathyroid glands of both cattle and rats prepared by high-pressure quick-freezing and subsequent freeze-substitution contained only one cell variant. Excellent preservation of the ultrastructure of bovine and rat parathyroids, also exhibiting only one cell variant, was achieved by microwave irradiation in the presence of 2.5% glutaraldehyde in Na-cacodylate followed by post-fixation with OsO4 in Na-cacodylate or s-collidine, both containing Ca2+ and Mg2+. Use of the appropriate buffer, as well as osmication, is essential for successful fixation utilizing microwave energy. The main effects are considered to be heating specimens within sufficient short periods and enhancement of subsequent osmium fixation. The results support the idea, arising after examination of perfusion-fixed parathyroid tissue, that parathyroid cell variants occur during improper aldehyde fixation rather than that they express functional diversity.

Air Pressure↗

Damage of erythrocytes by activated oxygen generated in hypoxic rat liver.

The implication of activated oxygen in the interaction between hypoxic rat liver and circulating erythrocytes was investigated. Reduced species of oxygen generated in hypoxic liver owing to accelerated purine nucleotide degradation via xanthine oxidase initiate alterations of plasma membrane and glutathione system of erythrocytes. Osmotic fragility, hemolysis rate and erythrocytic GSSG:GSH ratio may be considered as appropriate indicators of oxidative load in liver and other tissues. Addition of erythrocytes to the perfusion medium attenuates the GSSG efflux of hypoxic liver from 2.7 +/- 0.5 nmol x g w.w.-1 x min-1 to 1.4 +/- 0.2 nmol x g w.w.-1 x min-1 Thus, circulating erythrocytes protect the liver against oxidative attack.

Animals↗

Influence of repeated washings with soap and synthetic detergents on pH and resident flora of the skin of forehead and forearm. Results of a cross-over trial in health probationers.

Ten healthy individuals washed their forehead and forearm twice a day over consecutive periods of four weeks with soap and synthetic detergents or vice versa (cross-over design). In general the pH values were higher during the period when soap was applied (the mean pH differed by 0.3 units, p less than 0.01). As a rule the counts of coagulase-negative staphylococci were not much altered. The number of propionibacteria, however, was markedly higher when soap was used (p = 0.02 and 0.01 resp.). At the forehead there was a clear correlation between bacterial counts and skin pH both with propionibacteria (0.56, p less than 0.001) and staphylococci (0.51, p less than 0.001). At the forearm only the former proved true (0.24, p less than 0.05). Thus the skin pH seems to be open to long-standing changes according to the preferred washing habits which may also be of major influence on the composition of the cutaneous bacterial flora.

Adult↗

The role of cytochrome a in the proton pump of cytochrome-c oxidase.

Cytochrome-c oxidase of bovine heart mitochondria was depleted of copper A by dialysis against 1 M KCN in the presence of dodecylmaltoside. There was no difference of the pH-dependence of the midpoint potential between the intact and the copper-depleted enzyme. Oxidation of reduced cytochrome a2+a3(3+).CN complex released about 1 proton/electron in the medium at pH 7.6. This release was inhibited by N,N'-dicyclohexylcarbodiimide. Again there was no difference between the intact and Cu-depleted enzyme. This limits the role of copper A in the mechanism of the proton pump. On the other hand, these experiments showed that cytochrome a could be a component of the proton pump.

Animals↗

In-home versus clinic-based services for the developmentally disabled child: who is the primary client--parent or child?

This paper analyzes two different approaches to service delivery, in-home and clinic-based, in order to assist planners and clinicians in utilizing the merits of both systems most effectively. The two systems are compared and contrasted along the following variables: team process, identified client, pace of treatment, and degree of coverage. Using these variables as a guideline, this paper proposes that the degree to which the family's priorities are similar or dissimilar to the priorities of the organization determines the degree of effectiveness of home-based or clinic-based services. This proposal is discussed and case histories illustrating this premise are presented.

Ambulatory Care Facilities↗

Traumatogenic factors affecting the knees of carpet installers.

An ergonomics analysis of carpet installation tasks was performed. The purpose was to identify and quality potential sources of biomechanical trauma that may be responsible for the high rates of knee morbidity found by previous researchers among carpet layers. Nine carpet layers were studied either at an apartment building worksite or at a training school. Results from a job analysis indicated that workers spent approximately 75% of their time in the kneeling position using a tool called a knee-kicker to stretch and install carpet. Awkward body postures were identified from films of workers installing carpets. At the moment of impact the knee is severely flexed, subtended angles were less than 60 degrees. To obtain measures of impact force on the knee, the kicker-tool was instrumented with a load cell. Workers who executed the hardest kicks with the tool produced impact peak forces that averaged 3019 newtons (N), which is equivalent to about four times body weight. Measures from an accelerometer attached to the worker's knee showed values in excess of 120 m/s(2), which are comparable to those found during vigorous running and jumping exercises. The results imply that repetitive impact of the knee joint from the use of the knee-kicker combined with knee flexion, kneeling and squatting may be responsible for the high level of occupational knee-morbidity found among carpet layers.

Journal Article↗

Structure of the cell surface of the yeast Candida tropicalis and its relation to hydrocarbon transport.

The surface structure of the hydrocarbon-utilizing yeast Candida tropicalis was investigated by scanning and transmission electron microscopy (SEM and TEM respectively). The sample preparation technique was based on a rapid cryofixation without any addition of cryoprotectants. In subsequently freeze-dried samples the surface structure was analysed by scanning electron microscopy. Thin sections were prepared from freeze substituted samples. Both techniques revealed hair-like structures at the surface of hydrocarbon-grown cells. The hairy surface structure of the cells was less expressed in glucose-grown cells and it was absent completely after proteolytic digestion of the cells. When cells were incubated with hexadecane prior to cryofixation a contrast-rich region occurred in the hair fringe of thin sections as revealed by TEM. Since these structures were characteristic for hexadecane-grown cells and could not be detected in glucose-grown or protease-treated cells it was concluded that they originate from hexadecane adhering to the cell surface and are functionally related to hexadecane transport. The structure of the surface and its relation to hydrocarbon transport are discussed in view of earlier results on the chemical composition of the surface layer of the cell wall.

Candida↗

Cartilage ultrastructure after high pressure freezing, freeze substitution, and low temperature embedding. I. Chondrocyte ultrastructure--implications for the theories of mineralization and vascular invasion.

Electron microscopic examination of epiphyseal cartilage tissue processed by high pressure freezing, freeze substitution, and low temperature embedding revealed a substantial improvement in the preservation quality of intracellular organelles by comparison with the results obtained under conventional chemical fixation conditions. Furthermore, all cells throughout the epiphyseal plate, including the terminal chondrocyte adjacent to the region of vascular invasion, were found to be structurally integral. A zone of degenerating cells consistently observed in cartilage tissue processed under conventional chemical fixation conditions was not apparent. Hence, it would appear that cell destruction in this region occurs during chemical processing and is not a feature of cartilage tissue in the native state. Since these cells are situated in a region where tissue calcification is taking place, the implication is that the onset and progression of cartilage calcification are, at least partially, controlled by the chondrocytes themselves. The observation that the terminal cell adjacent to the zone of vascular invasion is viable has important implications in relation to the theory of vascular invasion. This may now require reconceptualization to accommodate the possibility that active cell destruction may be a precondition for vascular invasion.

Animals↗