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Die Entzündung ist eine Folge von Reaktionen mit der Zielsetzung, die Ausbreitung einer Gewebeschädigung, oder eines Infektionserregers einzudämmen. Zelluläre und humorale Mechanismen interagieren dabei in einem komplexen Netzwerk. In diesem Übersichtsbeitrag zeigen wir die wichtigsten Wege des inflammatorischen Reaktionsgeschehens auf und diskutieren die Bedeutung von Laboratoriumsuntersuchungen für die Diagnostik und das Monitoring von Entzündungen.
Wesentliche Schritte im Ablauf der Entzündungsreaktion sind
- die Synthese von Prostaglandinen aus Arachidonsäure, die durch Phospholipasen A2 (PLA2)-katalysierte Hydrolyse aus Membranphospholipiden gebildet wird;
- Interaktionen zwischen Gefäßendothel und Leukozyten, die Leukozytenextravasation und die Freisetzung freier Sauerstoffradikale und von Elastase im Gewebe;
- die Bildung inflammatorischer Cytokine, ihr Effekt auf Entzündungszellen und ihre systemische Wirkung auf Organe;
- die Synthese von Akute-Phase-Proteinen, deren Plasmakonzentration bei Entzündung als Antwort auf eine Vielfalt von Schädigungen ansteigt.
Zur Diagnostik und Verlaufsbeurteilung entzündlicher Krankheiten hat die Bestimmung des C-reaktiven Proteins den höchsten Stellenwert. Die Elastase hat nur eine begrenzte Bedeutung. Die Bestimmung von PLA2, der 'inflammatorischen Cytokine TNFa, IL-1, IL-6 und des s!L-2R als generelle Entzündungsmarker kann in der Routinediagnostik noch nicht empfohlen werden. Eingehende klinische Untersuchungen zur diagnostischen Bedeutung müssen noch abgewartet werden.
[Abstract] Serumspiegel der Immunglobuline bei gesunden Rauchern und Nichtrauchern mittleren Alters
(1993)
Bei 70 Patienten mit einem metastasierenden Seminom wurde die neuronspezifische Enolase (NSE) im Serum bestimmt und mit den anerkannten Tumormarkern Alpha-Fetoprotein (AFP) und humanem Choriongonadotropin (HCG) verglichen. Erhöhte NSE-Konzentrationen wurden bei 40 Patienten (58%) gemessen. Nach der durchgeführten Chemotherapie beobachteten wir einen Abfall der NSE-Aktivität in den Normbereich. Die Bestimmungen von NSE wurden mit radioimmunologischen und fluorometrischen DELFIA*-Verfahren durchgeführt.
By a comparative thin layer chromatographic screening of the methanol-soluble leaf exudates from more than 400 Aloe plants (183 species), 5-hydroxyaloin A was identified in 20 species. Whilst 13 of the 20 species revealed interindividual variations concerning to the occurrence of 5-hydroxyaloin A, this anthrone-C-glucosyl was unambiguously detected in each individual of 6 Aloe species. In the leaf exudates from A. marlothii Berger 5-hydroxyaloin A was only traceable in the aloin-containing chemivars. The complete anthrone-C-glucosyl pattern of these 7 clearly characterized species has been determined additionally by qualitative and quantitative high performance liquid chromatography: The results obtained demonstrate that 5-hydroxyaloin only occurs in the more stable A-configuration (10 R, 1′S), thus being till now the only anthrone-C-glycosyl which has not been found as diastereomeric pair genuinely in plants. As well, 5-hydroxyaloin A characterizes a quantitatively significant hydroxylating pathway in biosynthesis of anthranoids. It is discussed as a chemotaxonomic marker of the genus Aloe, especially of the sections Pachydendron and Eualoe.
Formation of major prenylquinones and carotenoids was investigated by comparing the incorporation of [14C]mevalonate into segments of different age from green and etiolated leaves of 22 C-grown rye seedlings (Secale cereale L.) and from 32 C-grown rye leaves which contained bleached and proplastid-like ribosome-deficient plastids, due to a heat-sensitivity of 70S ribosome formation. The contents of plastidic isoprenoids were much lower (between 2 - 30%) in the achlorophyllous than in green leaves. In green leaves [14C]mevalonate incorporation into non-polar lipids and into plastoquinone was partially inhibited in the presence of gabaculin, an inhibitor of chlorophyll synthesis. However, except for β-carotene, [14C]mevalonate incorporation into isoprenoids continuously increased with age also in achlorophyllous etiolated or 32 °C-grown, as in green, leaves and was, except for P-carotene and plastoquinone, higher in etiolated than in green leaves. In bleached °32 C-grown leaves [14C]mevalonate incorporation into all plastidic isoprenoids was strikingly (up to 45-fold) higher than in green control leaves. While degradation of P-carotene was greatly enhanced in bleached 32 °C-grown leaves, relative to green control leaves, and could thus compensate for a higher apparent synthesis, chase experiments did not reveal any marked differences of the turnover of other isoprenoids. The half times of plastoquinone. phylloquinone and lutein were in the order of 2-3 days. Within a 24 h chase period a-tocopherol degradation did not become apparent. Uptake of [14C]mevalonate and [14C]isopentenyl pyrophosphate by isolated bleached plastids from 32 °C-grown leaves was much more rapid than by chloroplasts and resulted in higher precursor accumulation within the organelle. While mevalonate incorporation into isoprenoid lipids was not detected, isopentenyl pyrophosphate was incorporated into isoprenoid lipids, including plastoquinone. Rates of incorporation by isolated chloroplasts or bleached plastids were of similar order. The results illustrate that divergent types of plastid differentiation are associated with fundamental developmental changes of the metabolic flow of isoprenoid precursors between different products and compartments and, in particular, with changes of import into the plastid compartment.
The isobaric melting and boiling diagrams for the systems: pyridine/methyltrichlorosilane and pyridine/1,1,1-trichloroethane are reproduced. The existence of the congruently melting addition compound CH3SiCl3· (Pyridin)2 could be confirmed. Some measurements of the molar volume of mixtures between pyridine and methyltrichlorosilane and pyridine and 1,1,1-trichloroethane, respectively, are reported. For both systems the molar excess volume and for the system pyridine/methyltrichlorosilane the molar excess enthalpie have been calculated as a function of the mole fractions.
Trimethylbromosilane and 3,4-lutidine form a 1:1 compound which is stable at room temperature. Single crystals of this compound can be isolated by sublimation. It crystallizes in the orthorhombic space group P 2121,21, with lattice constants a = 737,08(9) pm, b = 1295,7(1) pm, c = 1318,8(3) pm. The crystal structure was refined to Rw = 0,042 and proves an ionic structure.
The radiative lifetimes of the C3Il-X3II transition of the CSi radical have been calculated from highly correlated electronic wavefunctions and compared with available experimental data. For this transition, the Franck-Condon approximation fails due to the strong R-dependency of the transition moment function.