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Biomedical subjects

C Heinemann

Publications and source records attributed to C Heinemann.

At least 37 records · Page 2Linked to original sources

Modulation of in vivo migratory function of alpha 2 beta 1 integrin in mouse liver.

We report herein that expression of alpha 2 beta 1 integrin increased human erythroleukemia K562 transfectant (KX2C2) cell movement after extravasation into liver parenchyma. In contrast, a previous study demonstrated that alpha 2 beta 1 expression conferred a stationary phenotype to human rhabdomyosarcoma RD transfectant (RDX2C2) cells after extravasation into the liver. We therefore assessed the adhesive and migratory function of alpha 2 beta 1 on KX2C2 and RDX2C2 cells using a alpha 2 beta 1-specific stimulatory monoclonal antibody (mAb), JBS2, and a blocking mAb, BHA2.1. In comparison with RDX2C2 cells, KX2C2 were only weakly adherent to collagen and laminin. JBS2 stimulated alpha 2 beta 1-mediated interaction of KX2C2 cells with both collagen and laminin resulting in increases in cell movement on both matrix proteins. In the presence of Mn2+, JBS2-stimulated adhesion on collagen beyond an optimal level for cell movement. In comparison, an increase in RDX2C2 cell movement on collagen required a reduction in its adhesive strength provided by the blocking mAb BHA2.1. Consistent with these in vitro findings, in vivo videomicroscopy revealed that alpha 2 beta 1-mediated postextravasation cell movement of KX2C2 cells in the liver tissue could also be stimulated by JBS2. Thus, results demonstrate that alpha 2 beta 1 expression can modulate postextravasation cell movement by conferring either a stationary or motile phenotype to different cell types. These findings may be related to the differing metastatic activities of different tumor cell types.

Animals↗

RISC (Repolarization-induced stop of caffeine-contracture) is not due to store depletion in cultured murine skeletal muscle.

We have combined the patch-clamp technique with Fura-2 measurements to investigate whether RISC (repolarization-induced stop of caffeine-contracture) is a consequence of store depletion in cultured skeletal muscles of rats and mice. Weak depolarizations (-45 to -40 mV) of long duration induced a barely detectable Ca2+ transient. Even under these conditions, caffeine-activated Ca2+transients (CafTs) were terminated upon membrane repolarization (-70 mV) at all stages of CafT. Following the peak of the CafT, massive Ca2+ release was elicited by either flash-photolysis of caged Ca2+ or further depolarization to 0 mV, demonstrating the lack of store depletion. Thus, RISC is not due primarily to store depletion but to closure of the Ca2+ release channels possibly through a mechanical interaction with voltage sensors. RISC was not present in rat heart muscle, further supporting a role of direct interaction in skeletal muscle.

Action Potentials↗

Mechanisms determining the time course of secretion in neuroendocrine cells.

Transmitter release from chromaffin cells differs from that in synapses in that it persists for a longer time after Ca2+ entry has stopped. This prolonged secretion is not due to a delay between vesicle fusion and transmitter release, nor to slow detection of released substance: step increases in capacitance due to single vesicle fusion precede the release detected by amperometry by only a few milliseconds. The persistence of secretion after a depolarization is reduced by addition of mobile calcium buffer. This suggests that most of the delay is due to diffusion of Ca2+ between channels and release sites, implying that Ca2+ channels and secretory vesicles are not colocalized in chromaffin cells, in contrast to presynaptic active zones.

Adrenal Glands↗

Calcium dependence of the rate of exocytosis in a synaptic terminal.

Rapid calcium-dependent exocytosis underlies neurotransmitter release from nerve terminals. Despite the fundamental importance of this process, neither the relationship between presynaptic intracellular calcium ion concentration ([Ca2+]i) and rate of exocytosis, nor the maximal rate of secretion is known quantitatively. To provide this information, we have used flash photolysis of caged Ca2+ to elevate [Ca2+]i rapidly and uniformly in synaptic terminals, while measuring membrane capacitance as an index of exocytosis and monitoring [Ca2+]i with a Ca(2+)-indicator dye. When [Ca2+]i was abruptly increased to > 10 microM, capacitance rose at a rate that increased steeply with [Ca2+]i. The steepness suggested that at least four calcium ions must bind to activate synaptic vesicle fusion. Half-saturation was at 194 microM, and the maximal rate constant was 2,000-3,000 s-1. A given synaptic vesicle can exocytose with high probability within a few hundred microseconds, if [Ca2+]i rises above 100 microM. These properties provide for the extremely rapid signalling required for neuronal communication.

Acetates↗

Kinetics of the secretory response in bovine chromaffin cells following flash photolysis of caged Ca2+.

The kinetics of the secretory response in bovine chromaffin cells following flash photolysis of caged Ca2+ were studied by capacitance (Cm) measurements with millisecond time resolution. After elevation of the internal Ca2+ concentration ([Ca2+]i), Cm rises rapidly with one or more exponentials. The time constant of the fastest component decreases for higher [Ca2+]i (range 3-600 microM) over three orders of magnitude before it saturates at approximately 1 ms. The corresponding maximal rates of secretion can be as fast as 100,000 fF/s or 40,000 vesicles/s. There is a Ca(2+)-dependent delay before Cm rises, which may reflect the kinetics of multiple Ca2+ ions binding to the secretory apparatus. The initial rise in Cm is described by models containing a sequence of two to four single Ca(2+)-binding steps followed by a rate-limiting exocytosis step. The predicted Ca2+ dissociation constant (Kd) of a single Ca(2+)-binding site is between 7 and 21 microM. At [Ca2+]i > 30 microM clear indications of a fast endocytotic process complicate the analysis of the secretory response.

Acetates↗

[New decision making therapy in foster, adoptive and institutionalized children with failed outcome].

A specific group of children, adolescents and young adults with failure syndromes and courses of failure is described and a report is made on the new decision-making therapy, which has been modified for young patients. This is described from its transaction-analytical background as well as in its practical implementation in the in-patient department of a clinic for child and adolescent psychiatry. Here it is not a matter of a single method of therapy but of a therapy direction. The objective of this is to help the young person to review its earlier decisions that were made in connection with relationships in the sense of one's own prohibition of admission, these being the main cause for failure, and to code to a new decision of wanting to have successful relationships in the future. In its implementation different psychotherapeutical processes are applied according to the individual process situation. The new decision-making therapy can be considered to be completed when the typical failure syndrome symptoms have disappeared and the young person begins to open itself towards development-promoting help and to enter into relationships.

Adaptation, Psychological↗

A two-step model of secretion control in neuroendocrine cells.

Recent experiments on a variety of neuroendocrine cells indicate that intense stimuli readily depress the secretory response. The most likely explanation for this depression is that a pool of release-ready granules is depleted. We present a two-step model of secretion that allows one to simulate the dynamics of such a pool for different time courses of free intracellular Ca concentration [Ca2+]i. We derive rate constants of the model from two types of experiment and find that, for the simplest type of model, not only the rate of consumption (exocytosis) but also the rate of vesicle supply to the pool of release-ready granules must be made Ca-dependent. Given these functional dependences a variety of results from the literature can be simulated. In particular, the model predicts the occurrence of secretory depression and augmentation under appropriate conditions.

Animals↗

[Mortality in childhood--a study of pediatric fatalities in the Magdeburg district].

In the present study the causes of the cases of infant mortality (1 to 16 years of age) in the Magdeburg district in the period from 1982-1989 are analysed. The causes of death are shown according to age, sex and diagnosis groups, using autopsy-documents and data from the district of Magdeburg. The order of diagnosis starts with accidents with 40%, followed by malignant neoplasm and congenital anomalies with 13% and 13.1%, respectively, and diseases of the nervous system and of the sense organs with 9.9%. Conclusion are drawn for the reduction of the infant mortality rate.

Adolescent↗

[Calculation of 3-D deformity in scoliosis by MRI of the total spine in two perpendicular reconstructed planes].

AIM: Scoliosis is a spinal deformity that is more complex and does not exist in one plane only. There have been many attempts to analyse three-dimensional spinal deformity, however, these procedures necessitate higher radiation doses. METHOD: In this study we define angles according to the Cobb Definition. By means of trigonometrical evaluation, 3D calculation of spinal deformity is demonstrated using MRI of the total spine in two reconstructed perpendicular planes. 3D spinal analysis was performed on 41 female and 7 male patients with scoliosis. RESULTS: 79 angles were measured by using the Cobb angle in reconstructed coronal plane of MRI of the total spine and, in addition, by using our method. The scoliosis Cobb angles ranged from 11 - 59 degrees (mean: 23 degrees +/- 9 degrees ), the real angles ranged from 12 - 70 degrees (mean: 32 +/- 14 degrees ). There was a poor correlation between Cobb angles and the 3D calculated angles (r = 0.37; p < 0.0001). CONCLUSION: Our method enables us to determine the real angle of scoliosis and to avoid techniques with any radiation risk for the patient.

Adolescent↗

Tandem application of sodium lauryl sulfate and n-propanol does not lead to enhancement of cumulative skin irritation.

Irritant contact dermatitis has a broad spectrum of clinical features and is a leading cause of occupational disease worldwide. It has been shown previously that a combination of chemically different irritants may cause an additive effect compared to single application of these substances. In this study, tandem application of sodium lauryl sulfate and n-propanol was investigated in 20 human volunteers using non-invasive bioengineering methods, such as measurement of transepidermal water loss and chromametry. N-propanol did not enhance cumulative skin irritation when used with sodium lauryl sulfate, as has been reported for toluene. As n-propanol is the active ingredient in many disinfectants, this is of particular interest regarding occupational skin irritation in health care workers.

1-Propanol↗