Negative inotropic and cardiovascular effects of a low molecular plasma fraction in prolonged canine hypovolemic traumatic shock--papillary muscle and isolated heart preparation.
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Biomedical subjects
Publications and source records attributed to C Vogl.
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Small doses of endotoxin have been shown to induce pulmonary microvascular injury in sheep, possibly by the action of granulocytes. Eglin, a potent inhibitor of neutrophil elastase, was tested in an ovine model of endotoxemia. The experiment was performed in 12 unanesthetized chronically instrumented sheep with a lung lymph preparation. Endotoxin (S. abort. equii) was infused at 24 ng/(kg x h) with application of 20 mg/kg eglin 1 h before endotoxin in the treatment group and followed by 5 mg/(kg x h). No significant improvement due to the treatment was seen for either cardiovascular status (pulmonary and systemic vascular resistance) or permeability changes in the lung (lymph flow and lymph/plasma protein ratio), although sufficient eglin concentrations were achieved in plasma and lymph. The lack of an effect of eglin might be because higher concentrations are needed to block elastase-like activity of ovine granulocytes or because of a minor role for neutrophil elastase in this shock model.
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We used a papillary muscle assay to study the inotropic effect of albumin solution. Unlike specially prepared citrate-free solutions, commercial preparations produced a negative inotropic effect. This is because their high citrate concentrations bound much of the calcium, so that little ionized calcium was available for physiologic processes. Citrate-free albumin did not show any inotropic effect on isolated papillary muscle. The amount of albumin normally used for resuscitation should not have enough citrate to depress ionized plasma calcium. Our experiments showed no evidence for primary myocardial depressant action of a commercial albumin preparation.
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We have analyzed the postnatal ontogeny of the mandible of two inbred strains of mice (C3HeB and C57/BL) with conventional statistical analysis of area traits and with Euclidian Distance Matrix Analysis (EDMA). The relative contribution of the distal tooth-bearing part of the mandible to the area of the whole mandible decreases over time. The most prominent differences in shape between mice of 10 days and 25 days postnatal age are found in the lower posterior part of the mandible. Between angular and condylar process intramembranous ossification proceeds at a high rate and gradually fills the space between these two processes. The position of the proximal end of the molar tooth-row is relocated ventrally during this period. Morphological differences between C3H and C57 are most pronounced at 15 days postnatal age. Regions that discriminate best between the two strains change during development. While differences in the coronoid process separate the two groups clearly at 10 and 25 days postnatal age, no significant differences in the coronoid process are found at 20 days postnatal age. Similarly, masseter area shows significant differences at 15 and 25 days postnatal age, while C57 and C3H mice are equivalent for this trait at the other times. The same qualitative results are obtained by Euclidian Distance Matrix Analysis (EDMA): regions of major differences between strains are not consistent among ages. These results suggest that the ontogeny of morphological differences between closely related taxa is quite an erratic process; development of morphometric differences does not proceed smoothly and continuously. This unpredictable pattern of development of morphometric differences is expected if development of the mandible is tightly integrated by epigenetic and regulatory processes.