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Biomedical subjects

J Jarosz

Publications and source records attributed to J Jarosz.

At least 19 recordsLinked to original sources

Chronic encephalitis and temporal lobe epilepsy: a variant of Rasmussen's syndrome?

The authors report two adult patients with chronic temporal lobe epilepsy and pathologic features consistent with Rasmussen's encephalitis. Although seizures persisted after temporal lobe surgery no progressive cognitive or neurologic deficit has emerged. Prominent auditory auras in each suggested a persisting epileptogenic focus in the superior temporal gyrus. The current findings expand the clinical spectrum of Rasmussen's encephalitis and suggest that chronic nonprogressive encephalitis may serve as the pathologic substrate of medically intractable temporal lobe epilepsy.

Adult↗

Ultrastructural examination is essential for diagnosis of papillary meningioma.

AIMS: Papillary meningioma is a rare meningeal tumour. To date only a few cases have been reported and their immunohistochemical features have not been fully documented. METHODS AND RESULTS: A 49-year-old woman presented with a 2-month history of headaches and memory disturbance. CT and MRI imaging showed an enhancing pineal mass with extension into the occipital lobes and invasion of the splenium. At surgery, the tumour was found to be tough and vascular with a well-defined capsule. No recurrence was noted 19 months after the operation. In another case a 44-year-old woman was admitted with 1-month history of headaches, poor memory, imbalance and diplopia. CT scan showed a large hyperdense, uniformly, enhancing mass within the middle cranial fossa at the petrous ridge. The tumour recurred 19 and 25 months after first resection. The histology of both tumours was similar. The neoplasms contained polygonal cells with a moderate amount of cytoplasm, rounded regular nuclei and distinct cell borders. The cells were arranged radially around the blood vessels (perivascular pattern) and a papillary pattern was seen only focally. Mitotic figures were moderately frequent. Immunohistochemistry showed that both tumours were immunoreactive to vimentin and NSE, whereas GFAP, CAM5.2, EMA, S100 protein and synaptophysin were negative. Electron microscopy revealed interdigitating cell processes, desmosomes and intermediate filaments. CONCLUSIONS: The histological and immunohistochemical features of these two tumours are complex and difficult to interpret. Although papillary meningiomas were considered in our initial differential diagnosis, the final conclusion was possible only when the ultrastructural features were revealed.

Biopsy↗

Significance of interictal bilateral temporal hypometabolism in temporal lobe epilepsy.

OBJECTIVE: To assess the clinical implications and the pathophysiologic determinants of interictal bitemporal hypometabolism (BTH) in temporal lobe epilepsy (TLE) not associated with bilateral MRI abnormalities or intracranial space-occupying lesions. METHODS: The authors compared the clinical, interictal, and ictal EEG, Wada test, and neuropsychology data of 15 patients with intractable complex partial seizures of temporal lobe origin and BTH with those of 13 consecutive patients with unilateral TLE associated with unilateral temporal hypometabolism (UTH) who remained seizure free for more than 3 years after anterior temporal lobectomy. 18F-fluorodeoxyglucose PET scans were analyzed visually and semiquantitatively, and ratios of counts in individual temporal areas to the rest of the cerebrum were compared with the corresponding values from 11 normal control subjects and with the nonepileptogenic hemisphere of the 13 patients with UTH. BTH was defined as more than 2.5 SDs below control values for two or more temporal areas on each side irrespective of any asymmetry. RESULTS: BTH reflected bilateral independent seizure onset in eight patients (53%). The topography of the metabolic depression was not a reliable predictor of epileptogenicity, but involvement of the inferior temporal gyrus was related specifically to ipsilateral seizure onset (70% sensitivity, 100% specificity). In patients with unilateral TLE, contralateral hypometabolism was associated with longer disease duration and worst memory performance during the Wada test, which amounted to global amnesia after ipsilateral injection in three patients, precluding surgical treatment. Contralateral seizure spread in the ictal EEG was significantly faster in patients with BTH. CONCLUSIONS: In TLE, symmetric or asymmetric BTH may signal bilateral independent seizure onset in approximately half the patients, especially when involving the inferior temporal gyrus. Alternatively, it may reflect an advanced stage of the disease process, characterized by a breakdown of the inhibitory mechanisms in the contralateral hemisphere, and secondary memory deficit associated with higher risk of postoperative memory decline. Patients with TLE and BTH but without bilateral MRI changes may still be operated on successfully, but surgical suitability should be proved by comprehensive intracranial EEG studies and Wada test.

Adolescent↗

Cluster analysis of diffusion tensor magnetic resonance images in human head injury.

OBJECTIVE: Issues surrounding the nature of the edema associated with traumatic brain injury in humans, and its evolution in the acute phase, remain unresolved. This study aimed to characterize the topographical nature of the pathophysiological changes in human traumatic brain injury with diffusion tensor magnetic resonance imaging. METHODS: Multislice diffusion-weighted magnetic resonance imaging data were acquired from five patients undergoing elective ventilation for management of traumatic focal contusion or hematomas. The diffusion tensor and the T2-weighted intensity were then computed for every voxel in the image data set for each patient. The topographical distribution of abnormalities in the trace of the diffusion tensor and T2-weighted images were characterized by cluster analysis. RESULTS: In four patients with technically satisfactory data, a narrow band of tissue was observed in the periphery of focal lesions, which was characterized by selective reduction in the trace of the diffusion tensor, without any associated increase in the T2-weighted signal intensity. CONCLUSION: This change is interpreted as indicating either a partial redistribution of water from the extra- to intracellular compartment, or a reduction in the diffusivity of water in the intracellular or cytosolic environment. These diffusion and T2-weighted characteristics are also found in early ischemic change, hence, such regions may represent potentially salvageable tissue at risk of permanent damage. The study illustrates the advantage of using information contained within the diffusion tensor in addition to more conventional imaging sequences.

Adolescent↗

Immune phenomena in echinoderms.

Advances in biochemistry and molecular biology have made it possible to identify a number of mechanisms active in the immune phenomena of echinoderms. It is obvious that echinoderms have the ability to distinguish between different foreign objects (pathologically changed tissues, microorganisms, parasites, grafts) and to express variable effector mechanisms which are elicited specifically and repeatably after a variety of non-self challenges. The molecular and biochemical basis for the expression of these variable defense mechanisms and the specific signals which elicit one type of effector mechanism are not, however, yet well known. The high capacity of coelomocytes to phagocytose, entrap and encapsulate invading microorganisms is a valid immune cell-mediated mechanism of echinoderms. The entrapped bacteria, discharged cellular materials and disintegrating granular cells are compacted and provoke the cellular encapsulation reaction. Moreover, humoral-based reactions form an integral part of the echinoderm defense system against microbial invaders. Factors such as lysozyme, perforins (hemolysins) vitellogenin and lectins are normal constituents of hemolymph, while cytokines are synthesized by echinoderms in response to infection.

Animals↗

Active resistance of entomophagous rhabditid Heterorhabditis bacteriophora to insect immunity.

A specific extracellular proteinase, degrading selectively the cecropin-based defence system of insects, is secreted into the larval body during parasitism of the greater wax moth by the Heterorhabditis bacteriophora/Photorhabdus luminescens complex and by phase 1 of P. luminescens. The proteolytic digestion of insect inducible cecropin-like immune molecules was demonstrated by the disappearance of the Galleria mellonella cecropins and purified Hyalophora cecropin B peptide PAGE bands upon exposure to infected extracts, and a similar abrogation of antibacterial activity using an agar diffusion assay. Proteolytic activity of infected extracts produced by nematode/bacterial complex and phase 1 variant of P. luminescens was shown to be correlated with cecropin-inhibitory activity, suggesting that this anti-cecropin agent may be responsible for the ability of bacteria to establish infection and the insecticidal nature of H. bacteriophora. Antibacterial activity of Galleria lysozyme and that of chicken egg-white lysozyme to which P. luminescens is insensitive, was unaffected by H. bacteriophora proteinase.

Animals↗

Transcatheter uterine artery embolisation to treat large uterine fibroids.

Bilateral uterine artery embolisation was performed to treat eight women with symptomatic large fibroids requiring treatment. Uterine volume was quantitatively assessed by magnetic resonance imaging. Both uterine arteries were occluded effectively in all women, and the procedure was well tolerated, with a 24-36 hour admission for pain relief. The level of pain experienced was variable, but well controlled. Some women experienced intermittent vaginal discharge and pain following the procedure. Improvement of symptoms occurred in six of the seven women and the eighth woman conceived. There were no significant complications. At three months four women had a uterine volume of < 350 cm3. Embolisation appears to be a good alternative to surgery, but longer follow up is required to evaluate the long term effects and to determine those patients for whom the procedure is suitable.

Adult↗

Identification of immune inhibitor from Pseudomonas aeruginosa of inducible cell-free antibacterial activity in insects.

Insect-pathogenic strains of Pseudomonas aeruginosa produce specific proteinase which selectively degrades the cecropin-based defence system of insects. This was demonstrated by the disappearance of the Galleria cecropin and purified Hyalophora cecropin B peptide PAGE bands, but not the lysozyme band, upon exposure to infected extracts and a similar abrogation of antibacterial activity using an agar diffusion assay. In addition, the proteolytic activity of infected extracts produced by high and low virulence Pseudomonas strains was shown to be correlated with cecropin-inhibitory activity. This indicated that the bacterial proteinase was responsible for the ability of bacteria to establish infections and strain virulence.

Animals↗

Earthworm immune responses.

The knowledge of the immunity in annelids started with the use of earthworms as biomarkers indicating changes caused by environmental pollution. Defence strategies effectively protect earthworms against bacterial infections and parasitic invasion. A natural immunity formed by anatomical and chemical protective barriers prevents damage of the underlying tissues, body fluid losses, and microbial infections of the body cavity. The internal defence mechanisms of annelids involve phagocytosis, nodule formation and encapsulation, blood coagulation and wound repair, and antibacterial immune proteins. The antibacterial activity of coelomic fluid associated with lysozyme-like substances and inducible humoral molecules support haemocytic reactions in the annelid defence system.

Animals↗

Molluscan immune defenses.

The interest of marine invertebrates as food resources provides a major interest to study molluscan immunity for better understanding of the host response to pathogens. Molluscs possess a natural immunity formed by anatomical and chemical protective barriers that prevent damage of the underlying tissues, body fluid losses and the infections of pathogenic microorganisms and parasites. The main physical barrier is shell and mucus which cover the soft body of molluscs. The integrity of body coverings is supported by blood clotting and wound healing. The internal defense mechanisms of molluscs involve such cellular reactions as: phagocytosis, nodule formation, encapsulation, pearl formation, atrophy, necrosis and tissue liquefaction. Granular hemocytes are the most numerous cell type of molluscan blood active in cellular defenses. Invaders small in size are eliminated by phagocytosis in which participate lectins and products of prophenyloxidase system activation. Numerous and large intruders are eliminated by nodule formation or encapsulation, either cellular or humoral. Humoral components of molluscan immunity are formed by lysozyme activity, lectins and the phenyloxidase system. Up to now the role of mercenenes, paolins, acute phase reactants, alpha 2-macroglobulins and multifunctional binding proteins with anti-protease activity is not well clarified yet. Research prospects on the field of molluscan immunology should essentially be devoted to study cellular defense functions and humoral effectors to select pathogen-resistant molluscs. This aim could also be achieved by the identification and characterization of immune genes which are candidates for molluscs genetic transformation.

Animals↗

Ecology of anti-microbials produced by bacterial associates of Steinernema carpocapsae and Heterorhabditis bacteriophora.

Based on the ability of bacterial associates of entomopathogenic nematodes to produce antibiotic compounds on artificial media, it has been commonly accepted that Xenorhabdus sp. and Photorhabdus sp. inhibit a wide range of invading microorganisms in insects infected with Steinernema spp. or Heterorhabditis spp. Therefore, the question of whether antibiotic compounds produced by the primary form of bacterial symbionts associated mutualistically with S. carpocapsae and H. bacteriophora explain why insect carcasses do not putrefy but provide nutritional requirements for insect parasitic rhabditoid nematodes to complete their life-cycle was examined. Laboratory bioassays of anti-bacterial activity on nutrient agar and during parasitism in larvae of Galleria mellonella have confirmed earlier observations that in virto colonies of the primary form of X. nematophilus and P. luminescens produced agar-diffusible antibiotic compounds of a broad spectrum of anti-bacterial activity; their role in parasitism seems doubtful, however. This hypothesis is supported by a low antibiotic potency of a limited spectrum of anti-bacterial activity throughout the life-cycle of the parasites, principally in Galleria infected with S. carpocapsae. Since the lack of putrefaction cannot be explained simply by antibiotic inhibition of contaminating bacterial microflora, other competition mechanisms must be operating in parasitized insects. I postulated that a rapid and massive colonization of the insect body by nematophilic bacteria creates unfavorable conditions for the growth and multiplication of bacterial (proteolytic) contaminators making the insect carcass decay-resistant. In the case of H. bacteriophora, low antibiotic activity at an early stage of parasitism could support the colonization by P. luminescens of the host.

Animals↗

[Anti-infective defence strategies and methods of escape from entomologic pathogens under immunologic control of insects].

Insect immunity comprises a complex of several distinct systems, both haemocytic and humoral in nature, that cooperate together in a more or less coordinated way to provide protection of the body cavity from invading microorganisms. Insects can respond to infections by a selective synthesis of haemolymph immune proteins that are responsible for antibacterial immunity. Antibacterial activity of insect blood is attributable to innate compounds such as lysozome, and to induced polypeptides or small basic proteins absent in non-immunized insects. The cecropins and attacins in Lepidoptera, and diptericins in Diptera are the inducible antibacterial immune proteins well defined biochemically. Bacterial pathogens and some parasites of insects, preferably entomogenous rhabditid nematodes, have developed the mechanism by which they may counteract insect immunity. This phenomenon is realized either by escaping immune reactions or by degrading antimicrobial factors of haemolymph in an active process. Passive resistance of parasites to insect immunity is a result of a strong evolutionary pressure on parasites to develop mechanisms to escape insect immune reactions or to minimize their effectiveness through changes in the parasite itself. Active resistance to the insect non-self response system involves a partial or total destruction of immune proteins by extracellular proteinases released during parasitism.

Animals↗

Polydnaviruses of hymenopteran endoparasitoids knock out the host insect immune response.

The insect immune system reacts against invading microorganisms and parasites with the recruitment of haemocytes and with humoral response. Cellular immune reactions involve phagocytosis, nodule formation and encapsulation by different types of haemocytes whereas insect cell-free antibacterial immunity depends on the production of a number of peptides and proteins, among which lysozyme, cecropins and attacins represent the major group of immune proteins. Polydnaviruses from certain hymenopterous parasitoids interfere with both host immunity and host development. These immunosuppressive viruses exhibit an intimate genetic relationship with the parasitoid since viral sequences are integrated within the parasitoid chromosomal DNA. The viral genes expression in parasitized host induces immunosuppression and alters development of the host insect. The parasitoids developing in the host body cavity knock out the insect immune system, inducing a decline in cellular and humoral components of the immune system so that parasitoid eggs are not recognized as foreign and thereby are not encapsulated. Polydnaviruses carrying parasitoids escape the host immune response and may develop within the insect host whereas other invaders are normally destroyed by defense factors of insect haemolymph.

Animals↗

Induction kinetics of immune antibacterial proteins in pupae of Galleria mellonella and Pieris brassicae.

1. Pupae of Galleria mellonella and Pieris brassicae given an injection with live, non-pathogenic Enterobacter cloacae or abiotic foreign molecules induce an acquired immunity that corresponds with the synthesis of haemolymph proteins of antibacterial activity. 2. This humoral defensive response which persists for several days, differs quantitatively between insect species and between the inducers used, although very different foreign bodies induced the same immune proteins in both lepidopteran insects. 3. A stronger and longer lasting response was consistently noticed in pupae immunized with non-pathogenic bacterium than after sterile nutrient broth injections. 4. A demonstrably elevated activity of haemolymph lysozyme and trace activity of cecropins found in pupae of Galleria treated with saline W, a salt solution physiological to moths, disappear soon after 36 hr from injection. 5. In P. brassicae, however, sterile insect Ringer can give a varying, if present at all, immune response. 6. A mechanical injury (sterile wounding of insect body) can occasionally induce a similar but much weaker response. 7. The antibacterial activity was drastically reduced in Pieris or completely depressed in most pupae of Galleria when actinomycin D or cycloheximide was given at an early time post-immunization with E. cloacae. 8. It is concluded that the de novo synthesis of ribonucleic acid and immune proteins is required for expression of antibacterial activity in pupal haemolymphs. 9. The synthesis of an immune mRNA was completed about 7 hr after the injection of the immunizing bacteria.

Animals↗

The effects of tumor necrosis factor (TNF) derivatives on TNF receptors.

The pleiotropic cytokine TNF has been implicated in the regulation of many immune and inflammatory responses in vivo, and in addition exerts a wide range of effects on target cells in vitro. However, although two cell surface receptors for TNF have been identified, and their cDNAs cloned, the amino acid residues necessary for the biological activity of TNF have not been characterized. We have therefore constructed derivatives of TNF termed 'muteins', in which the first 3 to 7 amino acids of native TNF-alpha have been replaced, using synthetic cDNA expressed in E. coli. In the present study we compare the effects of native TNF-alpha and muteins III, IV, V and VI in several different in vitro systems and in one in vivo model. We observed binding to the p75 TNF receptor on Jijoye Burkitt lymphoma cells with native TNF-alpha and mutein III alone, whereas the p55 TNF receptor on the human epithelioid carcinoma cell line HeLa bound TNF-alpha, mutein III and mutein V. Muteins IV and VI failed to recognize either TNF receptor. WEHI 164 fibrosarcoma cells were killed by muteins III, V and VI. Human umbilical vein endothelial cells responded to native TNF-alpha and to muteins III, IV and V, but not to mutein VI, by increasing the surface expression of ICAM-1 antigen and secretion of the cytokines GM-CSF and IL-6. All four compounds were pro-inflammatory in a mouse in vivo model. The results presented in this report confirm that N-terminal amino acids are critical for both receptor binding and biological activity of TNF-alpha.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

The application of continuous thoracic epidural anaesthesia in outpatient oncological and reconstructive surgery of the breast.

The use of continuous thoracic epidural anaesthesia allows several oncological and reconstructive operations of the breast to be performed on an outpatient basis. The method is easy and safe in the hands of an experienced anaesthetist, and the recovery is immediate. The potential side effects (transient haemodynamic changes) may result from the sympathetic blockade and can be easily controlled during the operation. The method is not advocated in cases in which substantial blood loss is anticipated.

Ambulatory Surgical Procedures↗

Selective inhibition of cecropin-like activity of insect immune blood by protease from American foulbrood scales.

Bioassays of American foulbrood larval scale filtrates have shown the presence of an immune inhibitor with a specific activity of proteases that selectively destroy cecropin-like activity in insect immune hemolymphs. It was an unexpected phenomenon to find that Bacillus larvae protease(s), even at trace concentrations, totally inhibits bactericidal activity of immune blood against Escherichia coli D 31. Thermal inactivation of a proteolytic enzyme coincides strictly with a disappearance of the ability to inhibit a cecropin-type activity in an assay system used, although the immune inhibitor was unaffected by trypsin digestion. Since neither bee larval hemolymph nor larval body homogenates possess demonstrable inhibitory action against cecropins present in hemolymph of Celerio euphorbiae and other insects, one can suggest that B. larvae proteases selectively destroy some molecules of the insect humoral immune system. The absence of cecropins in blood of immunized honeybee, Apis mellifera, larvae and a simultaneous high inhibitory activity of B. larvae protease(s) need further study on their role in pathogenesis of American foulbrood of the honeybee.

Animals↗

The use of saline W, a physiological salt solution for experimentation on insect immunity.

In a series of induction experiments using various Ringer solutions attempts were made to determine whether saline W, a physiological salt solution for Lepidoptera, when injected into the larval haemocoel of the greater wax moth could be recognized by the insect as a non-self molecule. Laboratory bioassays indicated the loss of insect body integrity following intracoelomic injection of saline W and three other salines, increased levels of haemolymph lysozyme activity (EC 3. 2. 1. 17), and elevated resistance to the bacterial parasite, Pseudomonas aeruginosa. The inducing effect of saline W was stronger than dipterous Ringer's solution or other physiological salines. The stimulating effects indicate that the moth distinguishes between self and non-self, and this provides a new insight into the induction of the immune response.

Animals↗