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Biomedical subjects

G Schulze

Publications and source records attributed to G Schulze.

At least 19 recordsLinked to original sources

Spontaneous formation of triptycene supramolecules on surfaces.

In the limit of weak molecular interaction with an inorganic surface, noncovalent interactions between molecules dominate the nucleation and thin-film growth. Here, we report on the formation of three-dimensional triptycene clusters with a particularly stable structure. Once formed at the early stage of molecular adsorption, the clusters are stable for all temperatures until desorption. Furthermore, the clusters diffuse and nucleate as individual entities, therefore constituting building blocks for the later thin-film formation. High resolution scanning tunneling microscopy images indicate that the cluster is stabilized by C-H-pi interactions. The formation of such molecular structures at a surface is possible because the three-dimensional structure of the triptycene molecule leads to a very weak and mobile adsorption state. These results show that it is possible to investigate complex pathways in the formation of three-dimensional supramolecules at surfaces using a scanning tunneling microscope.

Letter↗

Degeneration of dopaminergic mesocortical neurons and activation of compensatory processes induced by a long-term paraquat administration in rats: implications for Parkinson's disease.

A deficiency of the dopaminergic transmission in the mesocortical system has been suggested to contribute to cognitive disturbances in Parkinson's disease. Therefore, the aim of the present study was to examine whether the long-term administration of a commonly used herbicide, paraquat, which has already been found to induce a slowly progressing degeneration of the nigrostriatal neurons, influences mesocortical dopaminergic neurons in rats. Paraquat at a dose of 10 mg/kg i.p. was injected either acutely or once a week for 4, 8, 12 and 24 weeks. Acute treatment with this pesticide increased the level of homovanillic acid (HVA) and HVA/dopamine ratio in the prefrontal cortex. After 8 weeks of administration paraquat increased the number of stereologically counted tyrosine hydroxylase-immunoreactive (TH-ir) neurons and their staining intensity in the ventral tegmental area (VTA), which is a source of the mesocortical dopaminergic projection. At the same time, few TH-ir neurons appeared in different regions of the cerebral cortex: in the frontal, cingulate, retrosplenial and parietal cortices. Chronic paraquat administration did not influence the level of dopamine in the prefrontal cortex but increased the levels of its metabolites: 3,4-dihydroxyphenylacetic acid (after 8-12 weeks), HVA (after 4 and 12 weeks) and HVA/dopamine ratio (4 weeks). After 24 weeks this pesticide reduced the number of TH-ir neurons in the VTA by 42% and of the Nissl-stained neurons by 26%, and induced shrinkage of this structure by ca. 25%. Moreover, TH-ir neurons in the cortex were no more visible after such a long period of administration and levels of dopamine metabolites returned to control values. The present results suggest that the long-term paraquat administration destroys dopaminergic neurons of the VTA. However, compensatory activation of the VTA neurons and cortex overcomes progressing degeneration and maintains cortical dopaminergic transmission.

3,4-Dihydroxyphenylacetic Acid↗

Investigation of a 2D two-point maximum entropy regularization method for signal-to-noise ratio enhancement: application to CT polymer gel dosimetry.

This study presents a new method of image signal-to-noise ratio (SNR) enhancement by utilizing a newly developed 2D two-point maximum entropy regularization method (TPMEM). When utilized as an image filter, it is shown that 2D TPMEM offers unsurpassed flexibility in its ability to balance the complementary requirements of image smoothness and fidelity. The technique is evaluated for use in the enhancement of x-ray computed tomography (CT) images of irradiated polymer gels used in radiation dosimetry. We utilize a range of statistical parameters (e.g. root-mean square error, correlation coefficient, error histograms, Fourier data) to characterize the performance of TPMEM applied to a series of synthetic images of varying initial SNR. These images are designed to mimic a range of dose intensity patterns that would occur in x-ray CT polymer gel radiation dosimetry. Analysis is extended to a CT image of a polymer gel dosimeter irradiated with a stereotactic radiation therapy dose distribution. Results indicate that TPMEM performs strikingly well on radiation dosimetry data, significantly enhancing the SNR of noise-corrupted images (SNR enhancement factors >15 are possible) while minimally distorting the original image detail (as shown by the error histograms and Fourier data). It is also noted that application of this new TPMEM filter is not restricted exclusively to x-ray CT polymer gel dosimetry image data but can in future be extended to a wide range of radiation dosimetry data.

Algorithms↗

2,9-Dimethyl-beta-carbolinium, a neurotoxin occurring in human brain, is a potent inducer of apoptosis as 1-methyl-4-phenylpyridinium.

The causes of neurodegeneration are not well understood. However, the role of environmental and endogenous toxins is receiving much attention. In this study, we compared the synthetic neurotoxin 1-methyl-4-phenyl-pyridinium with beta-carbolines occurring in human brain. Methylation of both nitrogens is necessary to convert a beta-carboline into a potent inhibitor of mitochondrial complex I. The respective beta-carboline, 2,9-dimethyl-beta-carbolinium ion is neurotoxic in rats. To investigate the underlying mechanisms, we incubated mouse neuroblastoma 2A cells with 2,9-dimethyl-beta-carbolinium ion, and compared the findings with effects of norharman, the precursor beta-carboline of methylated derivatives, and with 1-methyl-4-phenyl-pyridinium. 2,9-Dimethyl-beta-carbolinium ion caused a significant increase of reactive oxygen species (higher efficiency than 1-methyl-4-phenyl-pyridinium) and of mitochondrial membrane potential within the first minutes. After 60 min, the membrane potential dissipated. Concomitantly, the levels of glutathione increased in 2,9-dimethyl-beta-carbolinium ion but not in 1-methyl-4-phenyl-pyridinium treated cells. After 24 h effector caspases 3 and 7 were activated and the number of apoptotic cells increased as revealed by fluorescence-activated cell sorting cytometry. When incubated longer (48 h), cells underwent late apoptosis/secondary necrosis as shown by fluorescence-activated cell sorting analysis and confirmed qualitatively by an electron microscopy study. The effects of 2,9-dimethyl-beta-carbolinium ion on apoptotic changes were similar to those induced by 1-methyl-4-phenyl-pyridinium(,) while norharman showed only a weak potency at the very high doses. To investigate whether 2,9-dimethyl-beta-carbolinium ion is neurotoxic under in vivo conditions and whether only dopaminergic neurones are affected we conducted a dose-response study. Three weeks after injection of 2,9-dimethyl-beta-carbolinium ion in the substantia nigra we found a dose-dependent decrease of dopamine and its metabolites in the striatum of rats. The levels of 5-hydroxytryptamine were diminished although the decrease was less. The levels of noradrenaline increased after some doses. The findings strongly suggest an important role of endogenous beta-carbolines in neurodegeneration with apoptosis as the predominant mechanism.

1-Methyl-4-phenylpyridinium↗

Center flux correlation in SU(2) Yang-Mills theory.

By using the method of center projection, the center vortex part of the gauge field is isolated and its propagator is evaluated in the center Landau gauge, which minimizes the open 3-dimensional Dirac volumes of nontrivial center links bounded by the closed 2-dimensional center vortex surfaces. The center field propagator is found to dominate the gluon propagator (in the Landau gauge) in the low momentum regime and to give rise to a power-law correction proportional to p(-2.9(1)) at high momentum. The screening mass of the center vortex field vanishes above the critical temperature of the deconfinement phase transition, which naturally explains the second order nature of this transition consistent with the vortex picture. Finally, the ghost propagator of the maximal center gauge is found to be infrared finite and, thus, shows that the coset fields play no role for confinement.

Journal Article↗

Accuracy and precision of manual baseline determination.

Vibrational spectra often require baseline removal before further data analysis can be performed. Manual (i.e., user) baseline determination and removal is a common technique used to perform this operation. Currently, little data exists that details the accuracy and precision that can be expected with manual baseline removal techniques. This study addresses this current lack of data. One hundred spectra of varying signal-to-noise ratio (SNR), signal-to-baseline ratio (SBR), baseline slope, and spectral congestion were constructed and baselines were subtracted by 16 volunteers who were categorized as being either experienced or inexperienced in baseline determination. In total, 285 baseline determinations were performed. The general level of accuracy and precision that can be expected for manually determined baselines from spectra of varying SNR, SBR, baseline slope, and spectral congestion is established. Furthermore, the effects of user experience on the accuracy and precision of baseline determination is estimated. The interactions between the above factors in affecting the accuracy and precision of baseline determination is highlighted. Where possible, the functional relationships between accuracy, precision, and the given spectral characteristic are detailed. The results provide users of manual baseline determination useful guidelines in establishing limits of accuracy and precision when performing manual baseline determination, as well as highlighting conditions that confound the accuracy and precision of manual baseline determination.

Algorithms↗

Nerve growth factor response to excitotoxic lesion of the cholinergic basal forebrain is slightly impaired in aged rats.

Nerve growth factor (NGF) promotes survival and function of basal forebrain cholinergic neurons. We studied NGF and choline acetyltransferase (ChAT) activity after partial quisqualic acid induced lesions of the basal forebrain in 3 and 27 months-old rats, in order to investigate whether NGF-related regeneration is disturbed in old age. 2 weeks post lesion, ChAT activity decreased by 25 to 32% in adult and old rats. 3 months post lesion, the ChAT deficit receded in adult rats, but remained unchanged in old rats. 2 weeks post lesion, NGF levels were reduced by 36 to 44%, but there was no significant difference between adult and old rats. 3 months post lesion, we found increased NGF levels by 44% in the posterior cortex of adult rats. These results indicate that the compensatory NGF increase in the posterior cortex after partial cholinergic lesion of the basal forebrain is slightly impaired in old age.

Acetylcholine↗

Revealing system dynamics through decomposition of the perturbation domain in two-dimensional correlation spectroscopy.

A technique is presented to simply and effectively decompose the perturbation domain in two-dimensional (2D) correlation maps calculated on a given set of vibrational spectra. Decomposition of the perturbation domain exposes a wealth of kinetic information complementary to the information extracted from conventional 2D correlation spectroscopy. It is shown that the technique produces "perturbation profile maps" that can be utilized in both the interpretation of the conventional 2D correlation maps and the independent kinetic analysis of the given system. Discrimination between spectral features exhibiting similar, but not identical, dynamics is facilitated by the decomposition, and spectral features exhibiting identical dynamics over the perturbation interval are quickly identified. Spectral features exhibiting similar dynamics over only a sub-range of the full perturbation are also identifiable. Interpretation of phase information illuminated in synchronous and asynchronous maps is simplified. Comparison between similar spectral features present in different samples is facilitated with the technique. The simplicity and ease of implementation of the technique make decomposition of the perturbation domain a valuable addition to the tools available in 2D correlation analysis.

Journal Article↗

Identification and interpretation of generalized two-dimensional correlation spectroscopy features through decomposition of the perturbation domain.

Generalized two-dimensional correlation spectroscopy offers great scope for revealing the behavior of relationships between components of a system under empirical study. We have developed methods that aid in the interpretation of two-dimensional correlation spectroscopy. These methods include reference patterns for two-dimensional correlation and correlation coefficient maps, their superposition and joint interpretation, and the use of delta functions to decompose them in the perturbation domain. We show how their joint use permits discrimination between similar two-dimensional correlation map features on the basis of different correlation coefficients. We also show how the decomposition of maps into the perturbation domain reflects the dynamic behavior of spectral features over the course of the perturbation and permits discrimination between otherwise highly similar two-dimensional correlation cross-peaks. These approaches simplify the interpretation of two-dimensional correlation spectroscopy maps and facilitate access to their rich information content.

Journal Article↗

Decline in motor functions in aging is related to the loss of NMDA receptors.

The aim of the study was to assess the contribution of central dopaminergic and glutamatergic systems to the age-dependent loss of motor functions in rats. Rats of three age groups were compared: young (3-5-month-old), middle-aged (20-21-month-old) and old (29-31-month-old). The obtained results showed an age-dependent decline in the electromyographic (EMG) resting and reflex activities in the gastrocnemius and tibialis anterior muscles, as well as in the T-maze performance. Although these disturbances were accompanied with significant age-dependent decreases in the binding to NMDA, AMPA and dopamine D2 receptors, and a decline in the number of nigral dopamine neurons, they were significantly correlated with the loss of the binding to NMDA receptors only. The reduction in T-maze performance with aging was additionally correlated with a decrease in motor functions (EMG activity). The study suggests a crucial role of the loss of NMDA receptors in age-dependent motor disabilities, as well as in disturbances measured in the T-maze.

Aging↗

[Tumor M2 pyruvate kinase in renal cell carcinoma. Studies of plasma in patients].

Tumor cell metabolism is characterized by a high rate of aerobic glycolysis. The metabolic differences require changes in glycolytic enzyme activities and isoenzyme patterns. The inactive form of the M2 pyruvate kinase (Tu M2-PK) is specifically expressed in tumor cells and has been detected immunohistochemically in tumor tissue but also in peripheral blood of patients with different malignant tumors. In this study, Tu M2-PK in the plasma of patients with renal cell carcinoma (RCC) was compared with healthy volunteers. Tu M2-PK was quantified with a commercially available enzyme linked immunosorbent assay (ELISA) kit. Using the ELISA kit, plasma probes of 57 healthy individuals were compared to 63 patients with RCC (51 patients with non-metastatic RCC, 12 patients with metastatic RCC). Statistical analysis was performed with the non-parametric ANOVA test according to Kruskal-Wallis. In patients with renal cell carcinoma, Tu M2-PK was significantly higher than in healthy volunteers. For organ-defined, non-metastatic tumors, sensitivity was only 27.5%, if the 95% reference values of the control group were used for discrimination. The differences were more pronounced in patients with metastatic disease. Tu M2-PK was significantly enhanced compared to healthy controls, but also to the group with non-metastatic disease, the sensitivity was 66.7%. Our data show that Tu M2-PK has no impact as an unspecific marker for the diagnosis of renal cell carcinoma. This is especially relevant to organ-defined, non-metastatic RCC. In advanced metastatic disease, a potential importance as a parameter for treatment control in palliative therapeutic approaches can be assumed, and warrants further investigations.

Biomarkers, Tumor↗

Induction of systemic serum procalcitonin and cardiocirculatory reactions after isolated limb perfusion with recombinant human tumor necrosis factor-alpha and melphalan.

OBJECTIVES: Isolated, hyperthermic limb perfusion (ILP) with recombinant human tumor necrosis factor-alpha (rhTNF-alpha) and melphalan is a highly effective treatment for locoregional metastases of malignant melanoma and for advanced soft tissue sarcoma of the limb. The major systemic side effects are characterized by the induction of a systemic inflammatory response syndrome (SIRS). Procalcitonin (PCT), a serum marker of bacterial sepsis, was investigated with respect to its role in SIRS after ILP. SETTING: University surgical oncology division with an integrated eight-bed intensive care unit. PATIENTS: Thirty-seven patients were treated by ILP with rhTNF-alpha and melphalan (n = 26) or with cytostatics alone (n = 11) for soft tissue sarcoma or malignant melanoma. INTERVENTIONS: The course of serum PCT, interleukin (IL)-6, and IL-8 was analyzed intra- and postoperatively. Hemodynamic variables including heart rate, mean arterial pressure, cardiac index, pulmonary arterial pressure, pulmonary capillary occlusion pressure, and pulmonary and systemic vascular resistance were recorded in parallel. MEASUREMENTS AND MAIN RESULTS: PCT was significantly elevated over baseline after ILP with a maximum between 8 hrs (peak level 16.0+/-18.8 (SD) ng/mL) and 36 hrs (13.8+/-15.7 ng/mL) (p < .001). The increase in serum PCT was significantly more pronounced after ILP with rhTNF-alpha/melphalan than after ILP with cytostatics alone (p < .001). IL-6 and IL-8 were also significantly increased after ILP (p = .001), reaching peak concentrations at 1 hr and 4 hrs postoperatively. Significant changes in heart rate, mean arterial pressure, cardiac index, and systemic vascular resistance were observed during and after ILP; however, PCT levels could not be correlated to these variables. Pulmonary arterial pressure, pulmonary capillary occlusion pressure, and pulmonary vascular resistance showed no significant changes. CONCLUSIONS: Serum procalcitonin is induced as part of the SIRS after ILP with rhTNF-alpha/melphalan. It may be induced directly by rhTNF-alpha or other cytokines, because serum peaks of IL-6 and IL-8 precede the peak of PCT. Because there is no correlation between serum levels of PCT and hemodynamic variables, this marker cannot be applied to assess the severity of SIRS reaction after ILP.

Adult↗

L-701,324, a selective antagonist at the glycine site of the NMDA receptor, counteracts haloperidol-induced muscle rigidity in rats.

RATIONALE: It has recently been suggested that the overactivity of glutamatergic neurotransmission may contribute to the pathophysiology of Parkinson's disease. Therefore, a search for new compounds which block glutamatergic receptors and show antiparkinsonian properties in animal models of this disease seems to be justified. OBJECTIVE: The aim of this study was to determine whether L-701,324 [7-chloro-4-hydroxy-3(3-phenoxy) phenylquinoline-2-(H)-one], a selective and full antagonist at the glycine site of the NMDA receptor, counteracts parkinsonian-like muscle rigidity and catalepsy induced by haloperidol in rats. METHODS: The muscle tone was measured as the resistance developed to passive flexion and extension of the hind limb. Electromyographic (EMG) activity was additionally recorded in the gastrocnemius and tibialis anterior muscles. RESULTS: L-701,324 (2.5-40 mg/kg IP) dose-dependently decreased the muscle tone enhanced by haloperidol (1-5 mg/kg IP). Likewise, the haloperidol-enhanced resting EMG activity and the EMG reflex response to passive movements were diminished by lower and almost abolished by higher doses of L-701,324. However, up to a dose of 20 mg/kg IP, L-701,324 did not influence haloperidol (0.5 mg/kg IP)-induced catalepsy. Moreover, L-701,324 (1.25-5 mg/kg IP) given alone or together with haloperidol (0.5-1 mg/kg IP) disturbed rotarod performance. Gross observation of behaviour indicated that rats injected with L-701,324 in doses equal to or higher than 5 mg/kg, alone or in combination with haloperidol, were markedly ataxic, i.e. rats showed signs of disturbed balance and loss of control over their hind limbs. CONCLUSIONS: The present study suggests that L-701,324 exhibits a beneficial action in the animal model of parkinsonian rigidity, but not that of parkinsonian akinesia. Nonetheless, this compound is not devoid of motor side-effects.

Animals↗

[Multiple phlebothrombosis following cesarean section due to heterozygous factor V Leiden mutation detected post partum].

Activated protein C resistance in factor V Leiden mutation is currently the most frequent hereditary defect accompanied by high risk of thromboembolism. Thromboembolism often develops in the presence of additional risk factors such as pregnancy, birth, taking oral contraceptives, immobilization and surgical operations. A case of multiple phlebothrombosis following caesarean section in heterozygous factor V Leiden mutation evidenced post partum is reported. The patient developed extensive phlebothrombosis in both legs on postoperative day three despite preventive thrombosis treatment with low-molecular heparin. She also suffered from short-term incomplete paresis of her left arm and epileptic seizure with typical grand mal symptoms. MRI showed partial thrombosis of the superior sagittal sinus and the transverse sinus.

Activated Protein C Resistance↗

[Procalcitonin as marker of systemic inflammatory reaction after isolated extremity perfusion].

The systemic side effects of isolated limb perfusion (ILP) with rhTNF alpha and melphalan are characterised by the induction of a systemic inflammatory response syndrome (SIRS). Procalcitonin (PCT), a serum marker of bacterial sepsis, was investigated with respect to its role in SIRS after TNF-ILP. Serum-PCT was analysed in 24 patients (12 male, 12 female), who treated by ILP for regionally metastasized melanoma (n = 8) or locally advanced soft tissue sarcoma (n = 16). Serum samples were analysed pre- and intraoperatively, and at defined intervals after reperfusion of the limb. In addition to PCT, serum IL-6 and IL-8 were analysed in 11 patients. PCT was significantly elevated over baseline after ILP with a maximum between 8 and 36 hours (p < 0.001). Even 96 hours after reperfusion, PCT was still significantly elevated as compared to baseline levels (p = 0.005). There was no correlation to the systemic leakage rate during the perfusion. IL-6 and IL-8 were also significantly increased after ILP (p = 0.001), but the maximum peaks of both cytokines were reached much earlier than for PCT (IL-8 max. at 1 hour and IL-6 max. at 4 hours after reperfusion). Serum procalcitonin is induced as part of the specific SIRS after ILP with rhTNF alpha and melphalan. It may be induced directly by rhTNF alpha or by different cytokines, as serum peaks of IL-6 and IL-8 are reached well before the peak of PCT. Determination of PCT prior to and after ILP with TNF might be useful to assess patients at risk of developing hyperdynamic shock.

Antineoplastic Combined Chemotherapy Protocols↗

Muscle rigidity induced by fluphenazine in rats is antagonized by L-DOPA, an antiparkinsonian drug.

The aim of the present study was to find out whether the classic neuroleptic fluphenazine is a good model compound for inducing parkinsonian-like muscle rigidity in rats. The muscle tone was measured as resistance developed by the rat's hind foot to passive flexion and extension. Fluphenazine in doses of 0.4-3.0 mg/kg i.p. induced a dose-dependent increase in the hind foot resistance to passive movements. The muscle rigidity induced by fluphenazine 1.5 mg/kg i.p.) was counteracted in a dose-dependent manner by the main antiparkinsonian drug L-DOPA (25-75 mg/kg i.p.). The present results suggest that the fluphenazine-induced muscle rigidity may be a useful model of parkinsonian rigidity.

Animals↗

[Assessment of regional and systemic toxicity of isolated hyperthermic extremity perfusion with tumor necrosis factor-alpha and melphalan].

Following isolated limb perfusion (ILP) with TNF alpha and melphalan the damage to muscle tissue and its systemic consequences in terms of myoglobinemia and myoglobinuria as well as the activation of the cytokine cascade were investigated. We measured the compartmental pressure of the limb during and after perfusion and determined the serum changes of myoglobin, creatine kinase (CK), interleukin (IL)-6, IL-1, s-IL-2-receptor, TNF-receptor, and ICAM-1 levels. The compartmental pressure rose significantly during ILP and decreased after reperfusion. Following its course, the decision whether to perform a fasciotomy or not can be more reliably made. Serum myoglobin levels exceeded 200 times normal values and the increase occurred significantly earlier than that of CK, thus enabling judgement of the risk of renal failure (crush kidney syndrome). The elevation of serum IL-1 and IL-6 values correlated with the frequency of cardiopulmonary problems (hyperdynamic shock) and facilitated counter-maneuvers. Our data, although obtained from ILP with TNF alpha, could be used to monitor toxicity also when other drug regimens are administered.

Adolescent↗