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T1 and T2 measurements of meningiomas and neuromas before and after Gd-DTPA.

Seven patients with meningiomas and five patients with neuromas were examined with spin-echo sequences on a 0.35-T imaging system. Signal enhancement and relaxation rate increments with gadolinium-diethylenetriamine pentaacetic acid (Gd-DTPA) were evaluated, as well as relaxation rate contributions, indicators of Gd-DTPA accessibility to the tissue water. The average signal enhancement rate with Gd-DTPA was higher in neuromas than in meningiomas, 148% and 84%, respectively, but this difference was poorly appreciated on enhanced images because of similar average postcontrast T1 values in both tumors. However, the average T1 relaxation increment was almost twofold higher in neuromas than in meningiomas, 318% and 162%, respectively, mainly deriving from longer intrinsic T1 values in neuromas. Also, there was a 25% increase in the average T2 relaxation rate in neuromas after Gd-DTPA together with a higher T2 contribution by Gd-DTPA, while such effects were hardly discernible in meningiomas, suggestive of greater accessibility of Gd-DTPA to the tissue water in neuromas. By electron microscopy, endothelial fenestration and open gap junctions are commonly found in capillaries of both tumors, functioning as the routes into the extracellular space where the major contrast effect of Gd-DTPA can be expected. However, the open gap junctions are short and straight in neuromas, while they are tortuous and sinusoid in meningiomas. This may provide greater access for contrast material into relatively larger extracellular spaces in neuromas and may cause a greater T1 relaxation rate increment with Gd-DTPA.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Brain edema: a classification based on blood-brain barrier integrity.

Brain edema is a frequent complication of a variety of brain injuries and disorders. Two primary types of brain edema can be distinguished depending upon the integrity of the blood-brain barrier. With intact-barrier edema, the permeability of the blood-brain barrier is normal and brain edema results from a disturbance in ionic homeostasis. This type of edema is typically associated with swelling of the brain cells and a contraction of the extracellular space. In open-barrier edema, the permeability of the blood-brain barrier is increased and brain edema results from the oncotic forces generated by an influx of serum proteins into brain. In this case, the edema fluid accumulates primarily in the extracellular space. To a greater or lesser extent, both types of edema occur simultaneously in the majority of clinical conditions; however, one form usually predominates and demands the attention of both the scientist and clinician. Furthermore, classification of brain edema based upon blood-brain barrier integrity is useful to focus research on common mechanisms for brain edema formation and to direct therapy. This review considers intact-barrier and open-barrier edema with regard to their (a) histological features, (b) biophysical forces, (c) possible biochemical mediators, (d) mechanisms of resolution, and (e) implications for therapy.

Blood-Brain Barrier↗

Growth of prostatic cancer cells, DU 145, as multicellular spheroids and effects of estramustine.

The human prostatic carcinoma cell line DU 145 was grown as multicellular spheroids in vitro. The volume doubling time during the early exponential growth phase was about 5 days. The saturation volume, in the plateau phase of the growth curve, was in the order of 1.4 mm3. The spheroids developed a central degenerative region surrounded by a 0.1-0.3 mm layer of viable cells. The DU 145 spheroid system is planned to be used as a model in studies on chemotherapy and targeted radiotherapy of micrometastases of prostatic cancer. Some effects of the drug estramustine, EM, a conjugate of estradiol and nornitrogen mustard, were analysed in this introductory study. Tritium-labelled estramustine, 3H-EM, bound both in the viable cell layers and in the degenerative region of the spheroid already after 1 hour of incubation which indicated good penetration. The viable cells bound only low levels of 3H-EM while the degenerative region bound 3H-EM to a higher extent. The amount of bound 3H-EM increased after incubation for 24 hours. The binding was nonspecific since it could not be inhibited by pretreatment with an excess of non-radioactive EM. Furthermore, 3H-EM bound to a similar extent in glioma and colon carcinoma spheroids used for comparison. Incubation of DU 145 spheroids for 24 hours with EM (20 mg/ml) induced a growth delay of 6-7 days and a transient increase in the volume of the extracellular spaces for a few days following the treatment. The results showed that the binding of EM to prostate DU 145 cells growing as spheroids was not specific and that the toxic action was limited. An interesting result was that EM works as an extracellular space expander. This might be exploited in combination treatments with other agents.

Autoradiography↗

A combined approach to data mining of textual and structured data to identify cancer-related targets.

BACKGROUND: We present an effective, rapid, systematic data mining approach for identifying genes or proteins related to a particular interest. A selected combination of programs exploring PubMed abstracts, universal gene/protein databases (UniProt, InterPro, NCBI Entrez), and state-of-the-art pathway knowledge bases (LSGraph and Ingenuity Pathway Analysis) was assembled to distinguish enzymes with hydrolytic activities that are expressed in the extracellular space of cancer cells. Proteins were identified with respect to six types of cancer occurring in the prostate, breast, lung, colon, ovary, and pancreas. RESULTS: The data mining method identified previously undetected targets. Our combined strategy applied to each cancer type identified a minimum of 375 proteins expressed within the extracellular space and/or attached to the plasma membrane. The method led to the recognition of human cancer-related hydrolases (on average, approximately 35 per cancer type), among which were prostatic acid phosphatase, prostate-specific antigen, and sulfatase 1. CONCLUSION: The combined data mining of several databases overcame many of the limitations of querying a single database and enabled the facile identification of gene products. In the case of cancer-related targets, it produced a list of putative extracellular, hydrolytic enzymes that merit additional study as candidates for cancer radioimaging and radiotherapy. The proposed data mining strategy is of a general nature and can be applied to other biological databases for understanding biological functions and diseases.

Biomarkers, Tumor↗

Tenascin-C expression and axonal sprouting following injury to the spinal dorsal columns in the adult rat.

We have examined the expression and distribution of the extracellular matrix molecule tenascin-C in and around lesions of the thoracic dorsal columns in adult rats 3 days to 8 weeks after injury, using in situ hybridization, immunofluorescence, electron microscopy and immunoelectron microscopy. Numerous tenascin-C mRNA+ cells were present in and around the lesion at 3 days; fewer were present at 14 days and almost none 30 days after injury. Most tenascin-C mRNA+ cells in the spinal cord around the lesion were GFAP+, but most of those within the lesion were not, suggesting that tenascin-C is produced in the injured spinal cord by a subpopulation of astrocytes and by other cells that invade the lesion; these cells may include meningeal cells, macrophages, and Schwann cells. From 3 to 30 days after injury, heavy tenascin-C immunoreactivity was present at the lesion site (especially transections), and there was lighter immunoreactivity around the lesion and in the degenerating dorsal column. The heaviest immunoreactivity was associated with collagen fibrils in areas of expanded extracellular space and with basal laminae (covering Schwann cells and some astrocytes) but tenascin-C was also found close to the surfaces of some OX-42 + macrophages/microglia, leptomeningeal cells, and capillaries. Neurofilament (NF)+ axons grew into the highly tenascin-C-immunoreactive lesion sites, indicating that tenascin-C does not prevent axonal growth into these areas. However, such axons were not coated with tenascin-C except where directly exposed to the extracellular space.

Age Factors↗

Herpes simplex virus envelopment and maturation studied by fracture label.

Herpes simplex virus envelopment and maturation were investigated by thin-section fracture label. The distribution of glycoproteins B and D was analyzed by labeling with antibodies; the precursor and mature forms of the glycoproteins were differentiated by labeling with the lectins concanavalin A (ConA) and wheat germ agglutinin (WGA), respectively. We report that the two glycoproteins were readily detected in the intracellular virion, whether located between the inner and outer nuclear membranes or within cytoplasmic membrane-bound vesicles and in the inner and outer nuclear membranes themselves. The enveloped virion between the inner and outer nuclear membranes labeled with ConA but not with WGA. During the transit to the extracellular space the reactivity of the virion membranes with ConA decreased and that with WGA ensued. The results document that herpes simplex viruses acquire at the inner nuclear membrane an envelope carrying the immature forms of the glycoproteins and that during the transit to the extracellular space the envelope glycoproteins become of the fully processed type.

Animals↗

Entry of the new quinolone antibacterial agents of ofloxacin and NY-198 into the central nervous system in rats.

The present study describes quantitatively the pharmacokinetics of the antibacterial agents, ofloxacin and NY-198 (quinolonecarboxylic acid derivatives), in the central nervous system in rats by physiological modeling of the penetration, distribution and sequestration processes. The stimulation curves corresponded well with the observed concentrations in the cerebrospinal fluid (CSF) and various brain regions after intravenous bolus administration. The estimated cerebrovascular diffusion clearances were considerably small compared with reported serum flow rates and similar among the brain parenchymal tissues examined. The distribution volume of each drug in each brain region was almost the same as the brain extracellular space (15 to 25% of the wet weight). It was also found that the Kp values of these drugs were similar among the various brain regions. These lines of evidence suggest that the antibacterial agents, ofloxacin and NY-198, localized only in the brain extracellular space and exhibited little region-specificity in distribution into the brain. Moreover, it was suggested from unexpectedly low CSF: serum concentration ratios after intravenous administration that these quinolones, which once diffused into CSF, could be sequestrated from CSF to blood via some transport system.

Animals↗

[Ultrastructural study of a chordoma].

An ultrastructural study of a case of sacral chordoma is reported. The cell type was monomorphic. The epithelial nature and the secretory function of the tumour cells was obvious in view of their content of desmosomes and the presence of mucopolysaccharide in the ergastoplasm and in the extracellular space. Because of the lack of intracytoplasmic vacuoles in the case reported, the authors doubt the individuality of the so-called "giant physaliphorous cell". The authors consider that the vacuolar appearance of the tumour cells is due to cytoplasmic invaginations caused by the enlarged extracellular space containing acid mucopolysaccharides or by processes of histiocytes containing the same material.

Aged↗

ATP suppression of interleukin-12 and tumour necrosis factor-alpha release from macrophages.

Immune cell activation releases ATP into the extracellular space. ATP-sensitive P2 purinergic receptors are expressed on immune cells and activation of these receptors alters immune cell function. Furthermore, ATP is metabolized by ectonucleotidases to adenosine, which has also been shown to alter cytokine production. In the present study, we investigated how extracellular ATP affects interleukin (IL)-12 and tumour necrosis factor (TNF)-alpha production in bacterial lipopolysaccharide (LPS)-treated murine peritoneal macrophages and we also examined whether extracellular ATP alters the production of the T helper 1 cytokine interferon (IFN)-gamma. Pretreatment of the peritoneal macrophages with ATP or various ATP analogues decreased both IL-12 and TNF-alpha production induced by LPS (10 microgram ml(-1)). The effect of ATP was partially reversed by cotreatment with adenosine deaminase (0.1 - 1 u ml(-1)), suggesting that the suppressive effect of ATP on cytokine production is, in part, due to its degradation products. Immunoneutralization with an anti-IL-10 antibody demonstrated that although ATP increases IL-10 production, the inhibition of IL-12 and TNF-alpha production is independent of the increased IL-10. The effect of ATP was pretranslational, as it suppressed steady state levels of mRNAs for IL-12 (both p35 and p40). In spleen cells stimulated with either LPS (10 microgram ml(-1)) or anti-CD3 (2 microgram ml(-1)) antibody, ATP suppressed, in a concentration-dependent manner, the production of IFN-gamma. These results suggest that extracellular ATP has multiple anti-inflammatory effects and that release of ATP into the extracellular space may play a role in blunting the overactive immune response in autoimmune diseases.

Adenosine Triphosphate↗

[Immunohistochemical localization of fibronectin, laminin and fibronectin-receptor in human malignant gliomas--in relation to tumor invasion].

In order to examine a role of extracellular matrix (ECM) components in the process of glioma cell invasion, we investigated the immunohistochemical localization of fibronectin (FN), laminin(LN) and FN-receptor (FN-R) in human malignant gliomas. The surgical specimens were obtained from 15 patients with malignant gliomas. Tumor tissue and adjacent brain tissue including tumor infiltration were frozen at -80 degree C immediately after the resection. Ten microns thick frozen tissue was cut out on a cryostat and divided into three different parts on the histology stained with HE, ie, the tumor region(T), brain tissues with tumor infiltration(I), and the border region between these two parts(B). These sections were air-dried, and fixed with cold acetone (-4 degrees C) for 5min. Adjacent sections were immunohistochemically stained by ABC method, using monoclonal antibody for FN-R and polyclonal antibodies for FN and LN. FN, LN and FN-R were all stained at the vascular and pial-glial basement membranes intensely in all gliomas. In immunostain for FN, fine networks of FN were observed in the extracellular space in all three parts. Some tumor cells were clustered around such networks of FN in brain tissues with tumor infiltration. Immunostain for LN demonstrated that the vascularity in the border between the tumor and the brain with tumor infiltration was much higher than that in other parts. LN was not stained in the extracellular space in all these gliomas. FN-R was expressed in some tumor cells, especially in the clustered tumor cells in the brain with tumor infiltration.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Accumulation of glutamate is regulated by calcium and protein kinase C in rat hippocampal slices exposed to ischemic states.

There is now convincing evidence that excessive accumulation of the excitatory amino acid glutamate (Glu) in the extracellular space is toxic to neurons. However, the regulation of the release and uptake of Glu in producing this toxic concentration has not been adequately ascertained. The authors report that in hippocampal slices, the output of Glu significantly increased under in vitro ischemic states. Glu in the extracellular space increased fivefold. Since daurisoline, a drug that blocks N-type Ca2+ channels, or Ca(2+)-free solution potently and effectively lowered this stimulated output, it was hypothesized that the Glu output is mediated by Ca2+ influx in nerve terminals. When the slices were incubated for 30 minutes under ischemic state, daurisoline caused only small alterations in the postischemic accumulation of Glu. However, Glu accumulation was markedly attenuated by H-7, but not by calmidazolium, facilitated by PDB whereas 8-bromo-cAMP was without effect. It appears therefore that during a 30-minute ischemic insult, protein kinase C (PKC) was involved in the Glu accumulation of supernatant. A direct demonstration of this concept was obtained by showing significant increases in PKC activation in presynaptic nerve terminals (from 1.34 +/- 0.1 to 9.34 +/- 0.89 U) following 30 minutes of ischemia. DNQX, a non-NMDA receptor antagonist, potently reduced PKC activities and decreased extra Glu accumulation. Also observed was the inhibition of 1-[3H]-Glu uptake into synaptosomes by PDB. These results provide direct evidence that Ca2+ influx enhances Glu release, which in turn leads to inhibition of its reuptake, and is coupled with PKC activities in presynaptic nerve terminals.

Alkaloids↗

Sol-gel processing of actin to obtain homogeneous glasses at low temperatures.

The lethal effects of freezing on cells are currently attributed to the crystallization of extracellular water which leaves concentrated solutions of salts, macromolecules and so forth in the extracellular space. This concentrated fluid establishes a strong osmotic gradient which draws water from the cells. Thus, a cell surrounded by ice can survive only if means can be found for reducing the osmotically driven outflow of cellular water. This is usually attempted through vitrification of the extracellular space, but may also be attained through suitable modifications of cellular plasms. Starting from microscopic observations on early rabbit embryos and related cryotolerance, we investigated purified actin solutions under similar conditions, and found that sol-gel processing could result in the formation of homogeneous glass, and through drying, give rise to monolithic solids, glasses and composites. The first process may be at least partially responsible for the induced cryotolerance of cells, while the second may be representative of new and useful biomaterials.

Actinin↗

Supporting-cell and extracellular responses to acoustic clicks in the free-standing region of the alligator lizard cochlea.

1. Acoustic clocks were delivered to the tympanic membrane of anesthetized alligator lizards, and electric responses were measured within the free-standing region of the cochlea using glass micropipettes. Responses were recorded intracellularly in supporting cells and extracellularly in the receptor organ and in the scalae. Gross responses were also recorded with wire electrodes in scala tympani. 2. Intra- and extracellular responses contain two components: (1) an early (with latent period less than 0.15 ms after the onset of the click), rate-independent component presumed to originate in the receptor cells, which we call the 'receptor component'; and (2) a later (with latent period from 2 to 5 ms after the onset of the click), rate-dependent component presumed to originate in the primary neurons, which we call the 'neural component'. 3. The receptor component consists of a positive, slow, polarity-independent potential which is superimposed on a small, oscillatory, polarity-dependent potential. The average magnitude of the receptor component in supporting cells (0.72 mV for -20 dB clicks) is about 10 times that in the extracellular spaces and about 1/5 of that recorded in receptor cells. This component depends nonlinearly on the sound stimulus in the -20 to -55 dB range of click levels. 4. The average magnitude of the neural component in supporting cells (0.3 mV for clicks at -20 dB and 10 clicks/s) is about 5-10 times larger than that in the extracellular spaces. 5. The receptor and neural components have different distributions within the cochlea. The slow potential of the receptor component has positive polarity within the receptor organ and in scala tympani, and negative polarity in scala media. In contrast, the neural component has approximately the same biphasic (negative then positive) waveform in all extracellular compartments where it was detected. However, the neural component has a larger magnitude and an inverted (positive then negative) waveform in supporting cells. The neural component has not been detected in receptor cells.

Acoustic Stimulation↗

The ultrastructure of the sheath around chronically implanted electrodes in brain.

Insulated, bipolar stainless steel electrodes were chronically implanted in various regions of the cat brain and the long-term structural changes in the tissue surrounding the electrodes were studied by light and electron microscopy. A sheath surrounded and separated the electrode from normal grey or white matter. A layer of foreign body giant cells of variable thickness was formed adjacent to the electrode. This layer was attenuated in some places so that it was unrecognizable by light microscopy. The bulk of the sheath structure consisted of collagen fibrils, leptomeningeal cells and hypertrophied astrocytes. Areas consisting of modified leptomeningeal cells with long thin processes we designated as spongy areas. These have not been previously reported using the electron microscope. Glycogen bodies were seen in leptomeningeal cells. Astrocytes became greatly enlarged and were more numerous in and around the sheath. Oligodendrocytes contained lamellar bodies, and direct continuity was shown between a lamellar body and an adjacent myelin sheath. Myelin was seen in abnormal sites (around oligodendrocytes and neurons) and in unusual configurations. Neuronal changes near the sheath included whorls and stacks of modified endoplasmic reticulum and the presence of cytoplasmic nucleolus-like bodies. Reactive, regenerative and degenerative axons were observed. Blood vessels were more numerous in the sheath and surrounding tissue than normal. Perivascular spaces were prominent even around capillaries and often plasma cells and monocytes were in these spaces. As compared to normal tissue the extracellular space is noticeably increased. Electrodes passing through ventricles were surrounded with a sheath covered with ependymal cells. This sheath was comparable in structure to the sheath present around the electrode in other locations.

Animals↗

Uptake of plasma triacylglycerol by a muscular artery in the rat: an ultrastructural study.

The uptake of plasma triacylglycerol by the dorsalis pedis artery in the rat was studied using intravenous infusion of an emulsion of triacylglycerol at a rate of 2.3 mumol per min for 1.5 or 5 h. Electron microscopy revealed lipid droplets in the arterial lumen near the endothelium and in the medial smooth muscle cells (SMC), but not in the endothelial cells or in the extracellular space. Lamellar structures with a periodicity of 40 A developed in the arterial tissue when glutaraldehyde-fixed specimens were incubated at +25 degrees C before postfixation in osmium. Lamellae were present at the luminal and basal surfaces and within endothelial cells, and also in the medial extracellular space associated with the plasma membrane of SMC, in the intracellular channels and near and inside the mitochondria of the medial SMC. No lipid droplets or lamellae were found in the arterial tissue of the control rats. The findings indicate that plasma triacylglycerol is not taken up by the arterial tissue as intact lipid particles, but that these are hydrolyzed at the luminal surface of the endothelium, the lipolytic products then being transferred to the medial SMC for re-esterification and storage in the form of triacylglycerol. The lamellar structures found in the fixed and incubated arterial tissue are thought to represent fatty acids produced by the lipolysis of triacylglycerol during incubation, and we suggest that the transport of fatty acids from the arterial lumen to the medial SMC occurs by lateral movement in a continuum of cell membranes.

Animals↗

Secretion of the mammalian Sec14p-like phosphoinositide-binding p45 protein.

Protein-lipid interactions are important for protein targeting, signal transduction, lipid transport, and the maintenance of cellular compartments and membranes. Specific lipid-binding protein domains, such as PH, FYVE, PX, PHD, C2 and SEC14 homology domains, mediate interactions between proteins and specific phospholipids. We recently cloned a 45-kDa protein from rat olfactory epithelium, which is homologous to the yeast Sec14p phosphatidylinositol (PtdIns) transfer protein and we report here that this protein binds to PtdIns(3,4,5)P3 and far weaker to less phosphorylated derivatives of PtdIns. Expression of the p45 protein in COS-1 cells resulted in accumulation of the protein in secretory vesicles and in the extracellular space. The secreted material contained PtdIns(3,4,5)P3. Our findings are the first report of a Sec14p-like protein involved in transport out of a cell and, to the best of our knowledge, inositol-containing phospholipids have not previously been detected in the extracellular space. Our findings suggest that p45 and phosphoinositides may participate in the formation of the protective mucus on nasal epithelium.

Animals↗

Electron microscope histochemistry of acetylcholinesterase distribution in the optic tectum of teleosts.

An ultrastructural analysis was made on acetylcholinesterase (AChE) localization in the optic tectum of two teleosts, the goldfish and the catfish. Electron microscope histochemistry reveals several details on synthesis, distribution and possible sites of utilization of the enzyme in the different tectal layers. The results show that AChE is synthesized by all the neuronal types present in the optic tectum. The final localization of the enzyme is the result of its synthesis in cell bodies, its storage and transport along dendrites and its release in extracellular spaces. The differences in AChE localization between the two teleosts examined mainly derive from differential enzyme release in the corresponding layers of the optic tectum. Cholinergic synapses cannot be precisely identified by means of AChE histochemistry, but the layers in which maximum release of enzyme in the extracellular spaces occurs most likely correspond to areas where cholinergic mechanisms are operating. In this connection some interesting differences of AChE localization in the superficial tectal layers (stratum marginale, stratum opticum and stratum fibrosum et griseum superficiale) are discussed. Electron microscopic histochemistry of AChE confirms its usefulness in better understanding some links between the anatomical and functional organization of complex neural structures.

Acetylcholinesterase↗

Ultrastructure of differentiating preameloblasts from tooth germs of the permanent dentition of Macaca mulatta and Macaca arctoides.

Cytodifferentiation of inner enamel epithelium and the adjacent connective tissue from the tip of the cervical loop to the initiation of enamel elaboration in two Macaca species was examined. Ten- to twelve-month-old specimens were fixed by perfusion and the permanent tooth buds were prepared for transmission electron microscopy. At the cervical loop proper, inner enamel epithelium cells have lobed nuclei, a paucity of cytoplasm, and wide extracellular spaces; the basal lamina facing the dental papilla is straight. With increasing distance from the tip of the cervical loop, the following changes occur gradually: (a) preameloblasts elongate from 15 to 45 micrometers, and their organelles, particularly mitochondria and profiles of rough endoplasmic reticulum, become more numerous; (b) extracellular spaces decrease between preameloblasts starting at the basal (infranuclear) end; (c) the basement membrane becomes convoluted and associated with aperiodic fibers; (d) preodontoblast projections penetrate the aperiodic fibers; (e) collagen fibers subjacent to the basement membrane increase in density, with particularly thick fibers paralleling the aperiodic fibers. These modifications occur within three-fourths of the distance from the tip of the cervical loop to the mineralization front. The condensation of preodontoblasts is followed immediately by predentin synthesis. Concomitantly, the basement membrane breaks down and the aperiodic fibers are engulfed by preameloblasts. Preameloblast projections penetrate junctional predentin, contact mineralized dentin, and enamel synthesis ensues. At this stage the ameloblast is 45 micrometers long, the nucleus is central or basal, the Golgi apparatus has migrated apically, but the Tomes' process has not yet formed. The results indicate that odontogenesis in Macaca monkeys more closely resembles human odontogenesis than does that in the murine rodents.

Ameloblasts↗