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Biomedical subjects

G Berger

Publications and source records attributed to G Berger.

At least 73 records · Page 4Linked to original sources

Role of P-selectin cytoplasmic domain in granular targeting in vivo and in early inflammatory responses.

P-selectin is an adhesion receptor for leukocytes expressed on activated platelets and endothelial cells. The cytoplasmic domain of P-selectin was shown in vitro to contain signals required for both the sorting of this protein into storage granules and its internalization from the plasma membrane. To evaluate in vivo the role of the regulated secretion of P-selectin, we have generated a mouse that expresses P-selectin lacking the cytoplasmic domain (DeltaCT mice). The deletion did not affect the sorting of P-selectin into alpha-granules of platelets but severely compromised the storage of P-selectin in endothelial cells. Unstored P-selectin was proteolytically shed from the plasma membrane, resulting in increased levels of soluble P-selectin in the plasma. The DeltaCT-P-selectin appeared capable of mediating cell adhesion as it supported leukocyte rolling in the mutant mice. However, a secretagogue failed to upregulate leukocyte rolling in the DeltaCT mice, indicating an absence of a releasable storage pool of P-selectin in the endothelium. Furthermore, the neutrophil influx into the inflamed peritoneum was only 30% of the wild-type level 2 h after stimulation. Our results suggest that different sorting mechanisms for P-selectin are used in platelets and endothelial cells and that the storage pool of P-selectin in endothelial cells is functionally important during early stages of inflammation.

Animals↗

[Bone remodeling: evaluation methods].

Bone tissue undergoes continual renewal in order to keep the mechanical competence of the bone matrix. This is performed by two cells: osteoclasts which resorb the calcified matrix and osteoblast which synthetize a new bone matrix. Biochemical markers of bone remodelling allow the evaluation of the activity of each type of bone cells. An unbalance in this process induces modifications of the amount of calcified tissue and of the bone microarchitecture. Several technics based on X-ray and ultrasound allow a non invasive evaluation of these modifications.

Biomarkers↗

The transmembrane domain enhances granular targeting of P-selectin.

P-selectin is an integral membrane glycoprotein that is stored in granules of endothelial cells and platelets. The cytoplasmic domain of P-selectin is known to contain at least part of the signal that directs the protein to storage granules. In order to more fully understand how P-selectin is targeted to the regulated secretory pathway, we have expressed chimeric constructs between P- and E-selectin, a protein which is expressed on the cell surface, in a rat insulinoma cell line. Immunofluorescence studies indicated that replacing the cytoplasmic domain of E-selectin with that of P-selectin resulted in low-level granular expression. In contrast, when both the transmembrane and cytoplasmic domains of E-selectin were replaced with the analogous domains of P-selectin, the granular localization appeared greatly increased. This was confirmed by immunoelectron microscopy which demonstrated a three- to fourfold improvement in granular targeting, i.e. similar to wild-type P-selectin. The transmembrane domain had to be in the context of the P-selectin cytoplasmic domain as this membrane-spanning region could not induce granular targeting on its own. These results describe a novel function for the transmembrane domain of P-selectin in enhancing the efficiency of granular targeting and further implicate protein transmembrane domains in intracellular trafficking.

Animals↗

Evaluation of acoustical parameter sensitivity to age-related and osteoarthritic changes in articular cartilage using 50-MHz ultrasound.

The current study reports the sensitivity of acoustical parameters estimated at high frequency to the osteoarthritic morphological and structural changes in patellar cartilage in rat knees. Osteoarthritis (OA) was induced by a single intra-articular injection of mono-iodo-acetic acid in right knees. OA patellas and their contralateral controls were excised at regular intervals after injection and were examined in vitro with a scanning acoustical microscope operating with a poly(vinylidene di-fluoride) (PVDF) 80-MHz focused transducer. Cartilage thickness was estimated using B-scan images. The quantitative analysis of the radiofrequency signal backscattered by the cartilage was performed using integrated reflection coefficient (IRC) and apparent integrated backscatter (AIB), which were estimated in the 20-60-MHz frequency range. One week after injection, a cartilage thickness decrease was detected (-6%, on average) that preceded the significant hypertrophy (20.1%) that occurred 2 weeks after injection and could be due to tissue repair. From 1 week to 3 weeks after injection, the IRC of OA patellas was significantly lower than that of control patellas. The IRC difference increased with time from -3.3 +/- 2.4 dB at 1 week to -8.4 +/- 1.7 dB at 3 weeks. An AIB decrease was observed with time for both OA and control patellas (-2.9 to -4.2 dB per week). An AIB difference between OA and control patellas was detected from 1 week to 3 weeks after injection. This difference decreased with time. IRC variation reflects a change in acoustical impedance of the superficial layer of the cartilage and could be linked to a change in constituent content and/or to a disruption of fibers of the collagen network that led to the fibrillation of the cartilage surface. AIB variation reflects a change in shape, size and/or density of the scatterers and could be related to changes in the constituent content and in the organization of the matrix in the internal layer of the cartilage. IRC and AIB could provide information about the structural modifications of the cartilage due to osteoarthritis or to cartilage maturation.

Aging↗

Automatic three-dimensional reconstruction and characterization of articular cartilage from high-resolution ultrasound acquisitions.

Three-dimensional (3D) high-resolution ultrasonography has proved to be useful for in vitro assessment of cartilage remodeling due to osteoarthritis. The diagnosis is performed by computation of the mean thickness of the cartilage, which reveals hypertrophy or thinning, and by 3D reconstruction of the data, which provides essential information about the size, extent, and localization of the lesion. In both cases, preliminary segmention of the cartilage is necessary. This article proposes an algorithm for automatic segmentation of the cartilage from 3D ultrasonic acquisitions of the rat patella, which includes the detection of the cartilage surface and the cartilage/bone interface. The method was designed on the assumption of regularity and smoothness of the interfaces. The use of a global threshold was sufficient to separate the patella area from the background. The cartilage/bone interface was detected by selection of regions of interest (ROIs) encompassing the interface, followed by the detection of the interface within these ROIs using the graph theory. The method was applied to 162 samples. The detection accuracy was judged to be very good or good in 99% of the cases for the cartilage surface and in 86% of the cases for the cartilage/bone interface. The mean cartilage thickness value in the central part of the patella obtained from the automatic detection method was compared to that obtained manually. The coefficient of correlation between the two measurements was 0.92. These results show that our method is reliable. Thus, fast processing of a large number of acquisitions and a more complete analysis of the cartilage surface become possible.

Aging↗

In vitro investigation of novel calcium phosphates using osteogenic cultures.

A rat bone marrow stromal cell (RBM) culture was used to evaluate novel bioactive calcium phosphate ceramics. Three rapidly resorbable, glassy crystalline materials with the main crystalline phase Ca2KNa(PO4)2 were investigated (sample code GB 1a, GB 14, GB 9). These materials were designed to exhibit a higher degree of biodegradability than tricalcium phosphate. Additionally, a bioactive glass ceramic of low biodegradability was examined (sample code AP 40). RBM cells were cultured on the disc-shaped test substrata for 14 d. The culture medium was changed and calcium and phosphate concentrations of the medium were determined daily. Specimens were evaluated using light microscopy and morphometry of the cell-covered substrate surface, scanning electron microscopy and energy dispersive X-ray analysis. Except for GB 1a, the rat bone marrow cells attached and grew on all substrate surfaces. Of the different calcium phosphate ceramics tested, AP 40 facilitated osteoblast growth and the elaboration of the extracellular matrix to the highest degree followed by GB 9 and GB 14. The inhibition of cell growth encountered with GB 1a seemed to be related to its high phosphate ion release.

Journal Article↗

Cooperativity between the enzymatic sites of F1-ATPase revisited by the use of HPLC methods.

The fundamental question of the cooperativity between the enzymatic sites of F1-ATPase is examined in the light of new measurements of the enzymatic rate of ATP hydrolysis by CF1, the enzyme isolated from spinach chloroplasts. The experimental data, obtained with a chromatographic method, fit a model that involves two kinds of independent enzymatic sites working with metal-free ATP, with no need of cooperativity between the sites. Binding measurements between ADP or ATP and CF1 by the chromatographic method of Hummel and Dreyer (1962) also support this conclusion. The present data and interpretation are in agreement with those reported recently (Reynafarje and Pedersen, 1996) which show that the first order rate constant of ATP hydrolysis by MF1, the analogous enzyme from mitochondria, is virtually constant under experimental conditions involving either unisite or multisite hydrolysis of ATP. The present data and interpretation are discussed together with those reported previously, in particular with regard to the methods that were used to support the commonly accepted opposite viewpoint.

Adenosine Triphosphate↗

Bone mineral density in women with cytotoxic-induced ovarian failure.

OBJECTIVE: Premature ovarian failure is associated with a reduction in bone mineral density. As survival rates following treatment for haematological malignancies improve, chemotherapy-induced ovarian failure is becoming more common. However, there are few data concerning the impact of this on bone mineral density (BMD). We have therefore measured the BMD in 33 women with ovarian failure following treatment with cytotoxic chemotherapy. PATIENTS AND DESIGN: We studied 33 women who received combination chemotherapy for Hodgkin's disease (n = 27), non-Hodgkin's lymphoma (n = 4), sarcoma (n = 1) and acute myeloid leukaemia (n = 1). The mean (range) age of the subjects at the time of BMD measurement was 37.5 (24-50) years and the mean (median: range) duration of amenorrhoea was 49 (24: 5-277) months. Eleven women had received hormone replacement therapy (HRT) for a mean (range) duration of 25 (1-62) months. BMD was measured by single photon absorptiometry or single X-ray absorptiometry, and dual energy X-ray absorptiometry at the distal and proximal radius, the femoral neck and the lumbar spine, respectively. BMD was expressed as Z-scores and statistical analysis was performed using the Wilcoxon matched-pairs signed-rank test. RESULTS: There was no significant reduction in BMD at the hip, spine or a forearm in the cohort as a whole, although there was a trend to reduce bone density at all sites. When patients who had received HRT were excluded from the analysis there were small reductions in mean BMD at all sites, but this was only statistically significant at the proximal forearm (Z-score = -0.65; P = 0.03). Mean BMD of the HRT-treated patients was normal at all sites. Only seven patients (21%) had a BMD Z-score < -2 at any site. CONCLUSION: It is inappropriate to assume that ovarian failure from different aetiologies has a similar deleterious impact on the skeleton. Untreated premature ovarian failure following cytotoxic chemotherapy results in some reduction in bone mineral density, but this is of a minor degree and is less than that observed in other hypo-oestrogenic states. The reason for this is unclear but studies of residual hormone production in the cytotoxic-damaged ovary may provide an answer.

Adult↗

In vivo results with a new device for ultrasonic monitoring of pig skin cryosurgery: the echographic cryoprobe.

One of the main difficulties encountered in cryosurgery is the uncertainty in the extent and depth of the tissue effectively treated during the freezing process. The objective of this study was to evaluate in vivo ultrasonic control of skin cryosurgery using a new echographic cryoprobe. An echographic cryoprobe, developed specifically for dermatology applications, combines a high-frequency (20 MHz) miniature ultrasonic transducer and a N2O-driven closed cryoprobe. Knowledge of the ultrasound velocity of frozen skin is a prerequisite for monitoring the iceball formation kinetics. Therefore, in a first study, we estimated the ultrasound velocity of frozen skin specimens. In a second step, the operation of the echographic cryoprobe was assessed, under in vivo conditions similar to those used in human therapeutics, on normal skin of three female "Large-White" pigs under anesthesia. The mean value of ultrasound velocity of frozen skin obtained by pooling the data from all the skin specimens included in this study was 2865 +/- 170 m per s. The average rates of growth (10(-2) mm per s) of the iceballs were found to be 12.2 +/- 1.0 (pig 1), 9.0 +/- 1.0 (pig 2), and 8.4 +/- 0.9 (pig 3). The echographic cryoprobe had a built-in high-frequency ultrasonic transducer that served two functions. It enabled in vivo real-time monitoring of depth penetration of the iceball and it gave important feedback to the operator or to the console relating to the rate of growth of the iceball. Automatic (i.e., operator-independent) detection of the echo signal from the freezing front and calculation of the depth penetration of the iceball was possible.

Animals↗

Automatic detection of the boundary of the calcaneus from ultrasound parametric images using an active contour model; clinical assessment.

This paper presents a computerized method for automated detection of the boundary of the os calcis on in vivo ultrasound parametric images, using an active dynamic contour model. The initial contour, defined without user interaction, is an iso-contour extracted from the textural feature space. The contour is deformed through the action of internal and external forces, until stability is reached. The external forces, which characterize image features, are a combination of gray-level information and second-order textural features arising from local cooccurrence matrices. The broadband ultrasound attenuation (BUA) value is then averaged within the contour obtained. The method was applied to 381 clinical images. The contour was correctly detected in the great majority of the cases. For the short-term reproducibility study, the mean coefficient of variation was equal to 1.81% for BUA values and 4.95% for areas in the detected region. Women with osteoporosis had a lower BUA than age-matched controls (p = 0.0005). In healthy women, the age-related decline was -0.45 dB/MHz/yr. In the group of healthy post-menopausal women, years since menopause, weight and age were significant predictors of BUA. These results are comparable to those obtained when averaging BUA values in a small region of interest.

Adult↗

[Tumor regression in long-term follow-up by administration of liposome encapsulated 5-FU. An animal experiment in WAF rats with CC-531 liver tumor].

Locoregional chemotherapy for inoperable colorectal liver metastases is not yet standard therapy. Only two studies thus far have reported prolonged survival. Better tolerance and an increased response rate speak in favor of regional chemotherapy. Liposome-encapsulated 5-FU is a new approach in regional chemotherapy. In this study i.v. and i.a. application of 5-FU-PEG liposomes were compared to a monosubstance with respect to tumor growth. Starch microspheres were added for flow decrease to examine the synergistic effect. The experiments were done in CC-531 liver tumor-bearing WAG rats. The results show a clear tumor reduction after 3 weeks of i.a. administration of 5-FU-PEG liposomes combined with a flow decrease by starch microspheres. There was a significant tumor reduction compared to all other i.a. groups. Strong tumor growth was observed in groups receiving i.v. application of 5-FU with liposomes or as a monosubstance. The results demonstrate tumor reduction after 3 weeks with locoregional chemotherapy by 5-FU-PEG liposomes combined with starch microspheres.

Animals↗

[Liposome encapsulation of cystostatic drugs and starch microspheres improve tumor targeting in locoregional therapy. An animal experiment study of CC 531 liver tumor].

Systemic adjuvant chemotherapy achieves unsatisfactory results for inoperable liver tumors and metastases. Various clinical studies have shown that locoregional chemotherapy increased the survival rate by a few months. The aim of this study was to investigate tumor targeting of the most frequently used cytostatic 5-fluouracil by modifying systemic and locoregional therapy by liposome encapsulation. The tumor concentration of 5-FU encapsulated in SUV-PEG liposomes increases by a factor of 27 in systemic therapy and a factor of 90 in locoregional therapy. The tumor concentration of 5-FU increases by a factor of 8000, if the blood flow is additionally slowed by starch microspheres (Spherex) during locoregional therapy with liposome-encapsulated 5-FU.

Adenocarcinoma↗

Simultaneous determination of 5-fluorouracil and its active metabolites in serum and tissue by high-performance liquid chromatography.

In order to observe the biodistribution of 5-fluorouracil (5-FU) and its main metabolites in different kinds of tissue (tumor, liver, kidney, spleen, mucosa, lungs, heart, peritoneum, pancreas) and serum according to various novel application forms, a simple and rapid method for the simultaneous determination of 5-FU and its active metabolites 5-fluorouridine (5-FUrd) and 5-fluoro-2'-deoxyuridine (5-FdUrd) has been established. Proteins in serum and tissue samples were precipitated by perchloric acid after addition of the internal standard 5-bromouracil. The compounds were separated using an ODS Hypersil (5 microm) column and detected by UV absorbance (254 nm). Specificity, linearity, reproducibility, intermediate precision and accuracy of the method were established. The lower limit of quantitation (LOQ) for the compounds in serum and various tissue samples was determined. Data on the recovery of the compounds and the internal standard are provided.

Animals↗

Assessment of the relationship between broadband ultrasound attenuation and bone mineral density at the calcaneus using BUA imaging and DXA.

The purposes of this study was to determine the relationship between broadband ultrasound attenuation (BUA) and bone mineral density (BMD) measured at different regions of the calcaneus with identical site-matched regions of interest (ROIs). Dual-energy X-ray absorptiometry (DXA) measurements of the calcaneus and BUA imaging were performed in 30 women (15 premenopausal and 15 postmenopausal). Four square ROIs were located in the great tuberosity and one square ROI in the foramen calcaneus. A ROI adapted to the shape and size of the whole calcaneus was also considered. All ROIs were analyzed three times with both techniques to minimize intra-observer variability. The correlation coefficient between attenuation and frequency was used as an index of BUA measurement error. Before accepting a measurement of BUA in inhomogeneous material, it could be useful to map the spatial variations of the measurement error. In all ROIs we found the BUA and BMD were strongly related (r = 0.78-0.91, p < 0.001). The correlation between BUA and BMD was slightly higher in the inferior part of the posterior tuberosity than in the superior part and in the foramen calcaneus. The very high correlation between attenuation and frequency found in all ROIs (r = 0.99) suggests that measurement errors of propagation were probably not significant. Ultrasound imaging yields the opportunity for studying the spatial acoustic properties in the calcaneus and their relation to bone mass or structural parameters provided by independent imaging techniques. BUA measured with current transmission techniques reflects mainly bone mass, and microarchitecture to a smaller extent.

Absorptiometry, Photon↗

Quantitative ultrasound imaging at the calcaneus using an automatic region of interest.

A new approach to measuring bone properties at the calcaneus using ultrasound parametric imaging has recently emerged. However, an additional source of observer-related error is the substantial regional variations in the pattern of ultrasound parameters. The contribution of intra-observer and inter-observer variability to the coefficient of variation can be eliminated using an algorithm which selects the region of interest (ROI) completely automatically. The objective of the present study was the clinical assessment of an automatic ROI for both broadband ultrasonic attenuation (BUA) and speed of sound (SOS) measurement using ultrasound parametric imaging. The automatic ROI was defined as the circular region of lowest attenuation in the posterior tuberosity of the calcaneus. We have tested this algorithm using clinical images of the calcaneus from 265 women. Mean coefficients of variation were 1.6% (95% confidence interval 1.4%-1.9%) and 0.26% (95% confidence interval 0.23%-0.32%) for BUA and SOS respectively (standardized CV was 2.1% for BUA and 2.6% for SOS). Z-scores in an osteoporotic group were -0.61 and -0.52 for BUA and SOS respectively. In healthy women, the age-related decline was -0.50 dB/ MHz per year (0.7%/year) for BUA and -1.2 m/s per year (0.08%/year) for SOS. In the subgroup of healthy postmenopausal women, using stepwise multiple regression, we found that BUA was predicted best by years since menopause (YSM) and weight, with overall model r2 = 0.28; SOS was predicted best by YSM only (r2 = 0.21). Neither the range of biological variation of ultrasound parameters nor the clinical value were affected by the choice of the region of lowest attenuation for measurement. The automatic procedure was totally independent of operator interaction, therefore excluding loss of precision due to intra- or inter-observer variability. The results showed the high precision and robustness of the procedure. These factors make this approach viable for routine clinical use.

Aged↗

[Hip dislocation without bone injuries].

Dislocation of the hip is rare and so we regard every hip dislocation as an emergency until it has been reduced. From 1977 to 1996 a total of 82 patients with hip dislocation were treated at the Traumatic Surgery Clinic, University of Vienna, Austria. The average age at injury was 29 years. Some 77 patients had unilateral dislocation of the hip, but only in 5 cases was bilateral dislocation found. Iliac dislocation was most common (54 patients). Our treatment consisted in reduction within 6 h of the injury under general anaesthesia (Böhler) and 14 days bedrest. Then the patients were mobilized with full weight bearing, depending on the pain. Of the patients 29 had no clinical infirmities, 8 patients reported temporarily occurring pain and in 6 patients we found a limited range of movement in the hip joint with occasional pain. In all, 43 patients were followed up after 1/2 to 19 years. Radiological signs were seen in 17 patients and avascular necrosis of the femoral head in 1. So after careful evaluation of the patients and the kind of treatment, we recommend the following: 1. Immediate, gentle reduction of the hip joint; 2. Bedrest for 14 days; 3. Early mobilization with full weight bearing.

Adolescent↗

Morphological evaluation of osteoblasts cultured on different calcium phosphate ceramics.

The objective of these investigations was to develop an in vitro test system for evaluating novel rapidly resorbable calcium phosphate ceramics of varying composition. Rat bone marrow cells were cultured on the disc-shaped test substrates for 14 days. Five calcium phosphates were examined: R1 CaNaPO4; R1/M2, composed of CaNaPO4 and MgNaPO4; R1/2, composed of CaNaPO4 and Mg2SiO4; R1 + 9% SiO2 consisting of CaNaPO4 and 9% SiO2 (wt%) and R17, Ca2KNa(PO4)2. Two studies were performed. In study I cultures were re-fed every two to three days. In study II the medium was changed daily, and calcium and phosphate concentrations of the medium were determined daily. Specimens were prepared for light microscopy and morphometric evaluation of the cell-covered substrate area, scanning electron microscopy and energy-dispersive X-ray analysis. With all materials tested except for R1/2, an increase of cellular growth was observed after changing the medium daily. Of the different calcium phosphate ceramics tested, R17 and R1/M2 facilitated osteoblast growth and elaboration of extracellular matrix to the highest degree. The inhibition of cell growth encountered with R1 in study I and R1/2 in both studies seemed to be related to a high phosphate-ion release from these materials.

Absorption↗