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The Marketing Effect
(2010)
Background: The German-language recommendations for the management of postoperative nausea and vomiting(PONV) have been revised by an expert committee. Major aspects of this revision are presented here in the form of an evidence-based review article.
Methods: The literature was systematically reviewed with the goal of revising the existing recommendations. New evidence-based recommendations for the management of PONV were developed, approved by consensus, and graded according to the scheme of the Scottish Intercollegiate Guidelines Network (SIGN).
Results: The relevant risk factors for PONV include female sex, nonsmoker status, prior history of PONV, motion sickness, use of opioids during and after surgery, use of inhalational anesthetics and nitrous oxide, and the duration of anesthesia. PONV scoring systems provide a rough assessment of risk that can serve as the basis for a riskadapted approach. Risk-adapted prophylaxis, however, has not been shown to provide any greater benefit than fixed (combination) prophylaxis, and PONV risk scores have inherent limitations; thus, fixed prophylaxis may be advantageous. Whichever of these two approaches to manage PONV is chosen, high-risk patients must be given multimodal prophylaxis, involving both the avoidance of known risk factors and the application of multiple validated and effective antiemetic interventions. PONV should be treated as soon as it arises, to minimize patient discomfort, the risk of medical complications, and the costs involved.
Conclusion: PONV lowers patient satisfaction but is treatable. The effective, evidence-based measures of preventing and treating it should be implemented in routine practice.
Im Rahmen dieser Arbeit wurden mit Molekularstrahlepitaxie GaInNAs-Strukturen für mögliche Anwendungen in der Telekommunikation als GaAs-basierende Alternative für herkömmliche Laser auf InP-Substrat hergestellt und untersucht. Zunächst wurden durch Optimierung der Substrattemperaturmessung und RF-Plasmaquelle die Voraussetzungen für gutes GaInNAs-Wachstum geschaffen. Thermisches Ausheilen ist essentiell, um eine gute optische Qualität von GaInNAs-Strukturen zu erzielen. Man beobachtet einen signifikanten Einfluss von Ausheildauer und -temperatur. Exzessives Ausheilen bei zu hohen Temperaturen bzw. zu langen Zeiten führt, neben einer ebenso unerwünschten Blauverschiebung der Emission, wiederum zu einer Degradation der optischen Qualität, die sich in einer deutlichen Reduktion der Photolumineszenz(PL)-Intensität äußert. GaInNAs-Quantenfilm(QF)-Laser mit Emission um 1240 nm mit möglicher Anwendung als Pumplaser für Ramanverstärker wurden hergestellt und charakterisiert. Durch eine Optimierung des in-situ-Ausheilens dieser Laserstrukturen konnten Laser mit sehr niedrigen Schwellenstromdichten von deutlich unter 200 A/cm^2 hergestellt werden. Für eine möglichst hohe Ausgangsleistung wurde der Wirkungsgrad der Bauteile durch eine Optimierung der internen Verluste erhöht. Eine Reduktion der internen Verluste konnte durch eine Anpassung des Dotierprofils und die Verwendung von sogenannten Large-Optical-Cavities (LOCs) erreicht werden. Mit Hilfe des LOC-Designs konnten sehr niedrige interne Verluste von nur 0,5 1/cm bei einer internen Quanteneffizienz von nahezu 80 % erreicht werden. Mit optimierten Strukturen wurde stabiler Dauerstrichbetrieb bei Ausgangsleistungen von mehreren Watt über 1000~h ohne sichtbare Degradation demonstriert. Mit auf dem LOC-Design basierenden Lasern konnte schließlich eine sehr hohe Ausgangsleistung von ca. 9 W gezeigt werden. Anschließend wurden Untersuchungen zu Quantenpunkten (QPen) im Materialsystem GaInNAs vorgestellt. Mit steigendem Stickstoffgehalt beobachtet man eine Rotverschiebung der Emission bis auf 1,43 µm, allerdings gleichzeitig eine deutliche Degradation der optischen Qualität. Eine Untersuchung der QP-Morphologie ergibt eine Reduktion der Homogenität der QP-Größenverteilung, die sich im Auftreten zweier unterschiedlich großer QP-Ensembles äußert. Um diese Degradation der QPe zu vermeiden, wurde weiterhin auf den N-Einbau in den QPen verzichtet. Wider Erwarten führt der Verzicht auf N in den QPen nicht zu einer Blauverschiebung der Emission. Dieses Resultat konnte auf die veränderte QP-Morphologie zurückgeführt werden. Durch eine Erhöhung des N-Gehaltes im die QP überwachsenden QF wurde eine weitere deutliche Rotverschiebung der Emission erreicht. So konnte PL-Emission bei Raumtemperatur mit einem Emissionsmaximum bei 1600 nm demonstriert werden. Weiterhin wurden GaInNAs-QF-Strukturen für Laser im Wellenlängenbereich um 1550 nm untersucht. Da das Wachstum hier auf Grund des deutlich höheren, notwendigen N-Gehaltes wesentlich schwieriger wird, erfolgte zunächst eine detaillierte Untersuchung der wesentlichen Wachstumsparameter. Hierbei ist es essentiell, auch das Ausheilverhalten der jeweiligen Strukturen genau zu betrachten. Bei einer Untersuchung des Einflusses der Wachstumstemperatur auf GaInNAs-Teststrukturen wurden signifikante Unterschiede auch bei nur sehr geringen Änderungen in der Substrattemperatur von nur 10 °C festgestellt. Die beobachteten Effekte wurden vor dem Hintergrund des Modells der QP-ähnlichen Emitter diskutiert. Eine Variation des Arsen-Flusses zeigte einen deutlichen Einfluss auf die PL-Emission und vor allem auf das Ausheilverhalten. Das Ausheilverhalten lässt sich durch eine Anpassung des Arsen-Flusses maßgeschneidert anpassen. Während dem Überwachsen der aktiven Schicht mit Mantel- und Kontaktschicht kann es bereits zu einem Überausheilen der Strukturen kommen. Es wurden Laser mit niedrigen Schwellenstromdichten um 1 kA/cm^2 bis zu einer Wellenlänge von 1500 nm hergestellt. Für höhere Wellenlängen steigt die Schwellenstromdichte in den Bereich von 2 bis 3 kA/cm^2. Maximal wurde Laseremission bei über 1600 nm erreicht. Bei der Untersuchung der bei 1600 nm emittierenden Laserdioden wurde eine Verbreiterung der Laseremission zur hochenergetischen Seite auf bis zu 150 nm Bandbreite bei steigendem Betriebsstrom beobachtet. Dieser Effekt kann mit Hilfe des Modells der QP-ähnlichen Emitter verstanden werden. Unter Ausnutzung dieses Effekts wurden auf dem selben epitaktischen Material monomodige Distributed-Feedback(DFB)-Laser über einen Wellenlängenbereich von ca. 1500 nm bis 1600 nm gezeigt. Auf Basis der zuvor vorgestellten langwelligen Laserstrukturen mit niedrigen Schwellenstromdichten wurde erstmals Dauerstrichbetrieb von monomodigen DFB-Lasern im Bereich um 1500 nm und von multimodigen Stegwellenleiter-Lasern über 1500 nm im Materialsystems GaInNAs gezeigt.
In der Dissertationsschrift werden die wesentlichen Merkmale von direkten und indirekten Immobilieninvestitionen in Deutschland für vier Spezialthemen der Immobilienbesteuerung dargestellt und somit ein Einblick in die vielseitige und komplexe Besteuerung von direkten und indirekten Immobilieninvestitionen gewährt. Die Investitionsmöglichkeiten in direkte Immobilienanlageformen werden in Kapitel 2 und 3 besprochen. Die indirekte Immobilienanlage und ihre Auswirkungen auf die Preisbildung werden in den Kapiteln 4 und 5 betrachtet. In der Schlussbemerkung (Kapitel 6) werden wesentliche Erkenntnisse dieser Arbeit zusammengefasst. Im Detail werden in den vier Hauptkapiteln folgende Fragestellungen bearbeitet: • Die steuerlichen Regelungen bei selbstgenutzten und vermieteten Wohnimmobilien führen stets zu Klientel-Effekten. Im Vermietungsfall bewirkt der progressive Ein-kommensteuertarif eine Begünstigung von Steuerpflichtigen mit hohen Einkom¬men. Lediglich eine steuersatzunabhängige Förderung kann dazu führen, dass ein durchschnittlich verdienender Eigenheimkäufer Förderquoten und Investitions-renditen auf demselben Niveau wie ein vermietender Spitzenverdiener erreicht. • Die Modernisierung der Immobilienförderung innerhalb der Altersvorsorge („Wohn-Riester“) ermöglicht den Einsatz des Riester-Kapitals als echtes Eigen-kapital und dominiert die klassische Eigen- und Fremdfinanzierung. Zudem ist die Tilgung eines zum Immobilienerwerb aufgenommenen Darlehens in die staatliche Förderung integriert worden und begünstigt so die Rückführung des steuerlich benachteiligten Fremdkapitals im Fall der Selbstnutzung. • Die Wahl des steuerlichen Wertansatzes bei Vermögensübertragung auf eine steuerbegünstigte Immobilienverwaltung ist nicht trivial. Die Vorteilhaftigkeit der Wertansatzalternativen ist maßgebliche durch den Abschreibungsverlauf, die Länge des Investitionszeitraums sowie den rechtsformspezifische Steuersatzdifferenzen beeinflusst. Es zeigt sich, dass eine Aufdeckung der stillen Reserven regelmäßig nur in Verbindung mit zusätzlichen Begünstigungen sinnvoll ist. Eine allgemeine Vorteilhaftigkeit für die Umwandlung in einen REIT besteht nicht. • Steuerprivilegien können durch gesetzlich erzwungene Finanzierungsstrukturen deutlich reduziert bzw. vernichtet werden. Insbesondere der REIT wird an der Ausübung seiner steueroptimierten Finanzierungsstrategie gehindert, sodass die Erlangung des REIT-Status kein Garant für niedrige Kapitalkosten ist. Die ver-mögensverwaltende Immobilien-AG stellt aufgrund der flexiblen Ausschüttungs- und Finanzierungspolitik eine Alternative zu dem stark reglementierten REIT dar.
Diese Arbeit vergleicht verschiedene Methoden zur Berechung der Lebenserkrankungswahrscheinlichkeit bei familiärem Brustkrebs. Dabei handelt es sich um Tabellen von Chang-Claude und die Computerprogramme Cyrillic Version 2.1 sowie IBIS Breast Cancer Risk Evaluation Tool. Es stellte sich heraus, dass sich die Ergebnisse der Modelle nicht wesentlich voneinander unterscheiden.
Patients with end-stage renal disease (ESRD), whether on conservative, peritoneal or hemodialysis therapy, have elevated genomic damage in peripheral blood lymphocytes and an increased cancer incidence, especially of the kidney. The damage is possibly due to accumulation of uremic toxins like advanced glycation endproducts or homocysteine. However, other endogenous substances with genotoxic properties, which are increased in ESRD, could be involved, such as the blood pressure regulating hormones angiotensin II and aldosterone or the inflammatory cytokine TNF-. This review provides an overview of genomic damage observed in ESRD patients, focuses on possible underlying causes and shows modulations of the damage by modern dialysis strategies and vitamin upplementation.
We study classical scalar field theories on noncommutative curved spacetimes. Following the approach of Wess et al. [Classical Quantum Gravity 22 (2005), 3511 and Classical Quantum Gravity 23 (2006), 1883], we describe noncommutative spacetimes by using (Abelian) Drinfel’d twists and the associated ?-products and ?-differential geometry. In particular, we allow for position dependent noncommutativity and do not restrict ourselves to the Moyal–Weyl deformation. We construct action functionals for real scalar fields on noncommutative curved spacetimes, and derive the corresponding deformed wave equations. We provide explicit examples of deformed Klein–Gordon operators for noncommutative Minkowski, de Sitter, Schwarzschild and Randall–Sundrum spacetimes, which solve the noncommutative Einstein equations. We study the construction of deformed Green’s functions and provide a diagrammatic approach for their perturbative calculation. The leading noncommutative corrections to the Green’s functions for our examples are derived.
The overarching goal of this research was to explore accurate methods of mapping irrigated crops, where digital cadastre information is unavailable: (a) Boundary separation by object-oriented image segmentation using very high spatial resolution (2.5–5 m) data was followed by (b) identification of crops and crop rotations by means of phenology, tasselled cap, and rule-based classification using high resolution (15–30 m) bi-temporal data. The extensive irrigated cotton production system of the Khorezm province in Uzbekistan, Central Asia, was selected as a study region. Image segmentation was carried out on pan-sharpened SPOT data. Varying combinations of segmentation parameters (shape, compactness, and color) were tested for optimized boundary separation. The resulting geometry was validated against polygons digitized from the data and cadastre maps, analysing similarity (size, shape) and congruence. The parameters shape and compactness were decisive for segmentation accuracy. Differences between crop phenologies were analyzed at field level using bi-temporal ASTER data. A rule set based on the tasselled cap indices greenness and brightness allowed for classifying crop rotations of cotton, winter-wheat and rice, resulting in an overall accuracy of 80 %. The proposed field-based crop classification method can be an important tool for use in water demand estimations, crop yield simulations, or economic models in agricultural systems similar to Khorezm.
Wetlands in West Africa are among the most vulnerable ecosystems to climate change. West African wetlands are often freshwater transfer mechanisms from wetter climate regions to dryer areas, providing an array of ecosystem services and functions. Often wetland-specific data in Africa is only available on a per country basis or as point data. Since wetlands are challenging to map, their accuracies are not well considered in global land cover products. In this paper we describe a methodology to map wetlands using well-corrected 250-meter MODIS time-series data for the year 2002 and over a 360,000 km2 large study area in western Burkina Faso and southern Mali (West Africa). A MODIS-based spectral index table is used to map basic wetland morphology classes. The index uses the wet season near infrared (NIR) metrics as a surrogate for flooding, as a function of the dry season chlorophyll activity metrics (as NDVI). Topographic features such as sinks and streamline areas were used to mask areas where wetlands can potentially occur, and minimize spectral confusion. 30-m Landsat trajectories from the same year, over two reference sites, were used for accuracy assessment, which considered the area-proportion of each class mapped in Landsat for every MODIS cell. We were able to map a total of five wetland categories. Aerial extend of all mapped wetlands (class “Wetland”) is 9,350 km2, corresponding to 4.3% of the total study area size. The classes “No wetland”/“Wetland” could be separated with very high certainty; the overall agreement (KHAT) was 84.2% (0.67) and 97.9% (0.59) for the two reference sites, respectively. The methodology described herein can be employed to render wide area base line information on wetland distributions in semi-arid West Africa, as a data-scarce region. The results can provide (spatially) interoperable information feeds for inter-zonal as well as local scale water assessments.
The internal transcribed spacer 2 (ITS2) is a widely used phylogenetic marker. In the past, it has mainly been used for species level classifications. Nowadays, a wider applicability becomes apparent. Here, the conserved structure of the RNA molecule plays a vital role. We have developed the ITS2 Database (http://its2.bioapps .biozentrum.uni-wuerzburg.de) which holds information about sequence, structure and taxonomic classification of all ITS2 in GenBank. In the new version, we use Hidden Markov models (HMMs) for the identification and delineation of the ITS2 resulting in a major redesign of the annotation pipeline. This allowed the identification of more than 160 000 correct full ength and more than 50 000 partial structures. In the web interface, these can now be searched with a modified BLAST considering both sequence and structure, enabling rapid taxon sampling. Novel sequences can be annotated using the HMM based approach and modelled according to multiple template structures. Sequences can be searched for known and newly identified motifs. Together, the database and the web server build an exhaustive resource for ITS2 based phylogenetic analyses.
Chlamydia trachomatis is an obligate intracellular pathogenic bacterium that has been refractory to genetic manipulations. Although the genomes of several strains have been sequenced, very little information is available on the gene structure of these bacteria. We used deep sequencing to define the transcriptome of purified elementary bodies (EB) and reticulate bodies (RB) of C. trachomatis L2b, respectively. Using an RNAseq approach, we have mapped 363 transcriptional start sites (TSS) of annotated genes. Semiquantitative analysis of mapped cDNA reads revealed differences in the RNA levels of 84 genes isolated from EB and RB, respectively. We have identified and in part confirmed 42 genome- and 1 plasmid-derived novel non-coding RNAs. The genome encoded non-coding RNA, ctrR0332 was one of the most abundantly and differentially expressed RNA in EB and RB, implying an important role in the developmental cycle of C. trachomatis. The detailed map of TSS in a thus far unprecedented resolution as a complement to the genome sequence will help to understand the organization, control and function of genes of this important pathogen.
DNA methylation is an epigenetic modification that plays an important role in gene regulation. It can be influenced by stochastic events, environmental factors and developmental programs. However, little is known about the natural variation of genespecific methylation patterns. In this study, we performed quantitative methylation analyses of six differentially methylated imprinted genes (H19, MEG3, LIT1, NESP55, PEG3 and SNRPN), one hypermethylated pluripotency gene (OCT4) and one hypomethylated tumor suppressor gene (APC) in chorionic villus, fetal and adult cortex, and adult blood samples. Both average methylation level and range of methylation variation depended on the gene locus, tissue type and/or developmental stage. We found considerable variability of functionally important methylation patterns among unrelated healthy individuals and a trend toward more similar methylation levels in monozygotic twins than in dizygotic twins. Imprinted genes showed relatively little methylation changes associated with aging in individuals who are >25 years. The relative differences in methylation among neighboring CpGs in the generally hypomethylated APC promoter may not only reflect stochastic fluctuations but also depend on the tissue type. Our results are consistent with the view that most methylation variation may arise after fertilization, leading to epigenetic mosaicism.
Using k · p theory, we derive an effective four-band model describing the physics of the typical two-dimensional topological insulator (HgTe/CdTe quantum well (QW)) in the presence of an out-of-plane (in the z-direction) inversion breaking potential and an in-plane potential. We find that up to third order in perturbation theory, only the inversion breaking potential generates new elements to the four-band Hamiltonian that are off-diagonal in spin space. When this new effective Hamiltonian is folded into an effective twoband model for the conduction (electron) or valence (heavy hole) bands, two competing terms appear: (i) a Rashba spin–orbit interaction originating from inversion breaking potential in the z-direction and (ii) an in-plane Pauli term as a consequence of the in-plane potential. Spin transport in the conduction band is further analysed within the Landauer–Büttiker formalism. We find that for asymmetrically doped HgTe QWs, the behaviour of the spin-Hall conductance is dominated by the Rashba term.
The calpain inhibitor MDL-28710 blocks the early local pro-inflammatory cytokine gene expression in mice after chronic constriction nerve injury (CCI). Onehundred- thirteen wild type mice of C57Bl/6J background received CCI of the right sciatic nerve. Mechanical paw withdrawal thresholds and thermal withdrawal latencies were investigated at baseline and at 1, 3, and 7 days after CCI. Three application regimens were used for MDL-28170: a) single injection 40 min before CCI; b) serial injections of MDL- 28170 40 min before and up to day three after CCI; c) sustained application via intraperitoneal osmotic pumps. The control animals received the vehicle DMSO/PEG 400. The tolerable dose of MDL-28170 for mice was 30 mg/kg body weight, higher doses were lethal within the first hours after application. Mechanical withdrawal thresholds and thermal withdrawal latencies were reduced after CCI and did not normalize after single or serial injections, nor with application of MDL-28170 via osmotic pumps. Although the calpain inhibitor MDL-28170 inhibits the early local cytokine upregulation in the sciatic nerve after CCI, pain behavior is not altered. This finding implies that local cytokine upregulation after nerve injury alone is only one factor in the induction and maintenance of neuropathic pain.
Nitric oxide synthase modulates CFA-induced thermal hyperalgesia through cytokine regulation in mice
(2010)
Background: Although it has been largely demonstrated that nitric oxide synthase (NOS), a key enzyme for nitric oxide (NO) production, modulates inflammatory pain, the molecular mechanisms underlying these effects remain to be clarified. Here we asked whether cytokines, which have well-described roles in inflammatory pain, are downstream targets of NO in inflammatory pain and which of the isoforms of NOS are involved in this process. Results: Intraperitoneal (i.p.) pretreatment with 7-nitroindazole sodium salt (7-NINA, a selective neuronal NOS inhibitor), aminoguanidine hydrochloride (AG, a selective inducible NOS inhibitor), L-N(G)-nitroarginine methyl ester (L-NAME, a non-selective NOS inhibitor), but not L-N(5)-(1-iminoethyl)-ornithine (L-NIO, a selective endothelial NOS inhibitor), significantly attenuated thermal hyperalgesia induced by intraplantar (i.pl.) injection of complete Freund’s adjuvant (CFA). Real-time reverse transcription-polymerase chain reaction (RT-PCR) revealed a significant increase of nNOS, iNOS, and eNOS gene expression, as well as tumor necrosis factor-alpha (TNF), interleukin-1 beta (IL-1b), and interleukin-10 (IL-10) gene expression in plantar skin, following CFA. Pretreatment with the NOS inhibitors prevented the CFA-induced increase of the pro-inflammatory cytokines TNF and IL-1b. The increase of the antiinflammatory cytokine IL-10 was augmented in mice pretreated with 7-NINA or L-NAME, but reduced in mice receiving AG or L-NIO. NNOS-, iNOS- or eNOS-knockout (KO) mice had lower gene expression of TNF, IL-1b, and IL-10 following CFA, overall corroborating the inhibitor data. Conclusion: These findings lead us to propose that inhibition of NOS modulates inflammatory thermal hyperalgesia by regulating cytokine expression.
Background: Melanoma cells are usually characterized by a strong proliferative potential and efficient invasive migration. Among the multiple molecular changes that are recorded during progression of this disease, aberrant activation of receptor tyrosine kinases (RTK) is often observed. Activation of matrix metalloproteases goes along with RTK activation and usually enhances RTK-driven migration. The purpose of this study was to examine RTKdriven three-dimensional migration of melanocytes and the pro-tumorigenic role of matrix metalloproteases for melanocytes and melanoma cells. Results: Using experimental melanocyte dedifferentiation as a model for early melanomagenesis we show that an activated EGF receptor variant potentiates migration through three-dimensional fibrillar collagen. EGFR stimulation also resulted in a strong induction of matrix metalloproteases in a MAPK-dependent manner. However, neither MAPK nor MMP activity were required for migration, as the cells migrated in an entirely amoeboid mode. Instead, MMPs fulfilled a function in cell cycle regulation, as their inhibition resulted in strong growth inhibition of melanocytes. The same effect was observed in the human melanoma cell line A375 after stimulation with FCS. Using sh- and siRNA techniques, we could show that MMP13 is the protease responsible for this effect. Along with decreased proliferation, knockdown of MMP13 strongly enhanced pigmentation of melanocytes. Conclusions: Our data show for the first time that growth stimuli are mediated via MMP13 in melanocytes and melanoma, suggesting an autocrine MMP13-driven loop. Given that MMP13-specific inhibitors are already developed, these results support the evaluation of these inhibitors in the treatment of melanoma.
Malignant transformation in a defined genetic background: proteome changes displayed by 2D-PAGE
(2010)
Background: Cancer arises from normal cells through the stepwise accumulation of genetic alterations. Cancer development can be studied by direct genetic manipulation within experimental models of tumorigenesis. Thereby, confusion by the genetic heterogeneity of patients can be circumvented. Moreover, identification of the critical changes that convert a pre-malignant cell into a metastatic, therapy resistant tumor cell, however, is one necessary step to develop effective and selective anti-cancer drugs. Thus, for the current study a cell culture model for malignant transformation was used: Primary human fibroblasts of the BJ strain were sequentially transduced with retroviral vectors encoding the genes for hTERT (cell line BJ-T), simian virus 40 early region (SV40 ER, cell line BJ-TE) and H-Ras V12 (cell line BJ-TER). Results: The stepwise malignant transformation of human fibroblasts was analyzed on the protein level by differential proteome analysis. We observed 39 regulated protein spots and therein identified 67 different proteins. The strongest change of spot patterns was detected due to integration of SV40 ER. Among the proteins being significantly regulated during the malignant transformation process well known proliferating cell nuclear antigen (PCNA) as well as the chaperones mitochondrial heat shock protein 75 kDa (TRAP-1) and heat shock protein HSP90 were identified. Moreover, we find out, that TRAP-1 is already up-regulated by means of SV40 ER expression instead of H-Ras V12. Furthermore Peroxiredoxin-6 (PRDX6), Annexin A2 (p36), Plasminogen activator inhibitor 2 (PAI-2) and Keratin type II cytoskeletal 7 (CK-7) were identified to be regulated. For some protein candidates we confirmed our 2D-PAGE results by Western Blot. Conclusion: These findings give further hints for intriguing interactions between the p16-RB pathway, the mitochondrial chaperone network and the cytoskeleton. In summary, using a cell culture model for malignant transformation analyzed with 2D-PAGE, proteome and cellular changes can be related to defined steps of tumorigenesis.
Actinomycetes are prolific producers of pharmacologically important compounds accounting for about 70% of the naturally derived antibiotics that are currently in clinical use. In this study, we report on the isolation of Streptomyces sp. strains from Mediterranean sponges, on their secondary metabolite production and on their screening for anti-infective activities. Bioassay-guided isolation and purification yielded three previously known compounds namely, cyclic depsipeptide valinomycin, indolocarbazole alkaloid staurosporine and butenolide. This is the first report of the isolation of valinomycin from a marine source. These compounds exhibited novel anti-parasitic activities specifically against Leishmania major (valinomycin IC50 < 0.11 μM; staurosporine IC50 5.30 μM) and Trypanosoma brucei brucei (valinomycin IC50 0.0032 μM; staurosporine IC50 0.022 μM; butenolide IC50 31.77 μM). These results underscore the potential of marine actinomycetes to produce bioactive compounds as well as the re-evaluation of previously known compounds for novel anti-infective activities.
Terrestrial actinomycetes are noteworthy producers of a multitude of antibiotics, however the marine representatives are much less studied in this regard. In this study, 90 actinomycetes were isolated from 11 different species of marine sponges that had been collected from offshore Ras Mohamed (Egypt) and from Rovinj (Croatia). Phylogenetic characterization of the isolates based on 16S rRNA gene sequencing supported their assignment to 18 different actinomycete genera representing seven different suborders. Fourteen putatively novel species were identified based on sequence similarity values below 98.2% to other strains in the NCBI database. A putative new genus related to Rubrobacter was isolated on M1 agar that had been amended with sponge extract, thus highlighting the need for innovative cultivation protocols. Testing for anti-infective activities was performed against clinically relevant, Gram-positive (Enterococcus faecalis, Staphylococcus aureus) and Gram-negative (Escherichia coli, Pseudomonas aeruginosa) bacteria, fungi (Candida albicans) and human parasites (Leishmania major, Trypanosoma brucei). Bioactivities against these pathogens were documented for 10 actinomycete isolates. These results show a high diversity of actinomycetes associated with marine sponges as well as highlight their potential to produce anti-infective agents.