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Biomedical subjects

M Ruge

Publications and source records attributed to M Ruge.

7 recordsLinked to original sources

Epidermal-growth-factor receptor correlates negatively with cell density in cervical squamous epithelium and is down-regulated in cancers of the human uterus.

The role of the epidermal-growth-factor receptor (EGFR) in cervical cancer is controversial, due to technical difficulties in localizing or in quantifying EGFR by homogenate assays or immunohistochemistry. Our autoradiographic approach, in combination with morphometry, allowed cell-type-specific quantification of EGFR, leading to the following observations: (i) In normal cervical epithelium, EGFR levels per cell were high in non-dividing squamous cells of the upper layers of normal epithelium, where a mitogenic function of these EGFRs can be excluded. (ii) In contrast to earlier findings in tissue homogenates, but consistent with our observation in normal cervical epithelium that cells of the proliferating strata (basal and parabasal cells) express intermediate and comparatively reduced levels of EGFR per cell, cervical cancers displayed a significant reduction both of specific EGF binding and of EGFR levels per cell as compared with normal epithelium. (iii) A significant negative correlation of cell density and EGFR number per cell was obtained. In normal cervical epithelium, cervical intra-epithelial neoplasia and invasive cervical cancer (p = 0.002). This negative correlation was most evident in normal epithelium, where large changes of cell density occur within one slide (p < 0.001). (iv) Specific EGF-binding was also significantly reduced in endometrial cancers when compared with normal endometrium. It is proposed that in uterine tissues low or intermediate levels of EGFR do not exclude their function as mediators of cell proliferation.

Autoradiography↗

Blood-brain barrier breakdown occurs early after traumatic brain injury and is not related to white blood cell adherence.

The time course of blood-brain barrier (BBB) breakdown after traumatic brain injury (TBI) has important implications for therapy. This study was conducted in order to test post-traumatic BBB dysfunction in a model of fluid-percussion induced TBI in rabbits at 1 and 6 hours after TBI and relate it to white blood cell (WBC) activation. Ten anesthetized rabbits had chronic cranial windows implanted three weeks prior to experimentation. Fluid-percussion injury (3.5 atm.) was induced and animals were followed for 1 or 6 h. Intravital fluorescence videomicroscopy was used to assess BBB permeability and WBC adhesion to pial venules. Na(+)-fluorescein was infused continuously over 30 min at either 30 min (Group I, n = 5) or 5.5 h (Group II, n = 5) after TBI. Microvascular permeability in individual postcapillary venules was assessed qualitatively at 1 and 30 min after start of infusion. TBI led to a transient mean arterial blood pressure (MAP) surge after trauma and a progressive increase in the number of sticking WBCs per mm2 vessel wall. Na(+)-fluorescein extravasation was observed in 4 out of 5 Group I animals and in none of Group II. BBB breakdown was not associated with WBC sticking. We conclude that after fluid-percussion injury the BBB is damaged at 1 h post-trauma and that its function is restored 6 h later. Increased WBC sticking at 6 h is not associated with BBB breakdown. Whether WBCs may cause vascular permeability changes at a later point needs further investigation.

Animals↗

Early white blood cell dynamics after traumatic brain injury: effects on the cerebral microcirculation.

Increasing clinical and experimental evidence suggests that traumatic brain injury (TBI) elicits an acute inflammatory response. In the present study we investigated whether white blood cells (WBC) are activated in the cerebral microcirculation early after TBI and whether WBC accumulation affects the posttraumatic cerebrovascular response. Twenty-four anesthetized rabbits had chronic cranial windows implanted 3 weeks before experimentation. Animals were divided into four experimental groups and were studied for 7 hours (groups I, IIa, and III) or 2 hours (group IIb). Intravital fluorescence videomicroscopy was used to visualize WBC (rhodamine 6G, intravenously), pial vessel diameters, and blood-brain barrier (BBB) integrity (Na+-fluorescein) at 6 hours (groups I, IIa, and III) or 1 hour (group IIb) after TBI. Group I (n = 5) consisted of sham-operated animals. Groups IIa (n = 7) and IIb (n = 5) received fluid-percussion injury at 1 hour. Group III (n = 7) received fluid-percussion injury and 1 mg/kg anti-adhesion monoclonal antibody (MoAb) "IB4" 5 minutes before injury. Venular WBC sticking, intracranial pressure (ICP), and arterial vessel diameters increased significantly for 6 hours after trauma. IB4 reduced WBC margination and prevented vasodilation. Intracranial pressure was not reduced by treatment with IB4. Blood-brain barrier damage occurred at 1 hour but not at 6 hours after TBI and was independent of WBC activation. This first report using intravital videomicroscopy to study the inflammatory response after TBI reveals upregulated interaction between WBC and cerebral endothelium that can be manipulated pharmacologically. White blood cell activation is associated with pial arteriolar vasodilation. White blood cells do not induce BBB breakdown less than 6 hours after TBI and do not contribute to posttraumatic ICP elevation. The role of WBC more than 6 hours after TBI should be investigated further.

Animals↗

Hypertonic/hyperoncotic saline attenuates microcirculatory disturbances after traumatic brain injury.

BACKGROUND: Traumatic brain injury (TBI) induces an acute inflammatory response characterized by early recruitment of inflammatory cells (white blood cells). Rapid resuscitation of TBI with hypertonic saline/dextran (HS/DEX) yields promising results in clinical and experimental studies. The purpose of this paper was to test the hypothesis that HS/DEX exerts its effects in part through a modulation of the acute inflammatory response to TBI. METHODS: Rabbits equipped with chronic cranial windows underwent fluid-percussion injury and were followed up for 6 hours. Intravital fluorescence videomicroscopy technique was used to visualize white blood cell trafficking and to measure pia vessel diameters and venular shear rates. Three groups were studied: sham (group I, n = 5), trauma (group II, n = 7), and trauma and 4 mL/kg 7.2% NaCl/10% dextran 60 IV over 5 minutes at 10 minutes after TBI (group III, n = 7). RESULTS: TBI in groups II and III led to significant increases of intracranial pressure. Arteriolar diameters after trauma increased by 17 +/- 8% at 6 hours in group II. Infusion of HS/DEX completely prevented this secondary diameters increase. At 6 hours, the increase of "sticking" white blood cells in group III was reduced by approximately 90% compared with group II. CONCLUSIONS: Whether the anti-inflammatory effect of HS/DEX plays a role in reducing delayed brain damage (> 6 hours after TBI) or other systemic complications of TBI arises as an important question and should be investigated further.

Acute Disease↗

The superinfection exclusion gene (sieA) of bacteriophage P22: identification and overexpression of the gene and localization of the gene product.

Previous work has shown that the sieA gene of Salmonella bacteriophage P22 is located between the genes mnt and 16. We cloned DNA fragments of the region into multicopy vectors and tested the transformants for mediating superinfection exclusion. Subcloning, phenotypical tests, and DNA sequencing resulted in the identification of the sieA gene. There are two possible initiation codons within one open reading frame of 492 or 480 bp. The deduced amino acid sequence leads to a hypothetical polypeptide with a calculated molecular mass of 18.8 or 18.3 kDa, respectively. According to three hydrophobic regions, all of which are long enough to span the membrane, the product of sieA should be a protein of the inner membrane of a P22-lysogenic cell of Salmonella typhimurium. The SieA protein was moderately overproduced from an expression vector in cultures of Escherichia coli and could be recovered from the membrane fraction.

Amino Acid Sequence↗

Muscarinic receptors in gastric mucosa are increased in peptic ulcer disease.

Muscarinic receptors stimulate the secretion of acid pepsinogen and mucous in gastric mucosa. Whether muscarinic receptors are involved in the pathogenesis of benign gastric disease is unknown. Receptor changes in these conditions were therefore sought. An autoradiographic technique was developed to determine quantitatively muscarinic receptors in microtome sections of biopsy specimens obtained during gastroscopy. Muscarinic receptor density was mean (SEM) 18.4 (1.2) fmol/mg protein in the corpus and 8.9 (0.7) fmol/mg protein in the antrum (n = 53). Neither chronic nor active gastritis was associated with receptor changes in the antrum but chronic gastritis was associated with a receptor loss in the corpus. Patients with acute or recent duodenal or antral ulcers (n = 23) had significantly higher levels of muscarinic receptors in the corpus than controls (n = 25) (22.2 (1.5) v 16.9 (1.7) fmol/mg protein respectively (p < 0.025). These results suggest that muscarinic M3 receptor is overexpressed in duodenal ulcer disease and may play a part in its pathogenesis.

Acute Disease↗

Impact of epidermal growth factor (EGF) radioreceptor analysis on long-term survival of gastric cancer patients.

BACKGROUND: The EGF receptor/ligand system seems to be involved in the regulation of gastric mucosa proliferation and progression of gastric carcinomas. PATIENTS AND METHODS: EGF receptor levels were quantitatively determined in 47 gastric carcinomas by 125J [EGF] radioreceptor assays in membrane preparations of tumor samples or corresponding adjacent mucosa. Specific receptor binding was determined by the analysis of displacement curves by non-linear least-square regression analysis using an estimated model of 'goodness of fit'. RESULTS: Increased EGF receptor binding was observed in gastric carcinomas (mean +/- SEM: 11.87 +/- 1.9 fmol/mg protein) in comparison to adjacent normal gastric mucosa ( 5.28 +/- 1.0 fmol/mg protein, p = 0.003). Elevated EGF receptor levels were especially found in more invasive T3/4 carcinomas, tumors with positive lymph nodes, advanced UICC III carcinomas, undifferentiated tumors, carcinomas of the diffuse-type according to Lauren's classification and gastric carcinomas localized distal from the cardia. In histopathologically normal appearing gastric mucosa, EGF-receptor levels were significantly decreased relative to corresponding tumor samples from advanced UICC stages (UICC I vs UICC I/II: p = 0.008) or tumors with low levels of differentiation (G2 vs G3: p = 0.028). Overall survival was significantly reduced in patients with advanced gastric carcinomas according to UICC classification (UICC III vs UICC I/II: 18.8 vs 45.5 months, p = 0.016). A subgroup analysis of gastric carcinomas localized distal from the cardia indicated, that increased EGF-receptor levels were an independent indicator of poor prognosis as determined by univariate (p = 0.020) and multivariate analysis (p = 0.042). CONCLUSION: Gastric carcinomas with increased EGF receptors might be a possible target for anticancer strategies blocking the EGF receptor/ligand pathway.

Epidermal Growth Factor↗