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Environmental stability and infectivity of hepatitis C virus (HCV) in different human body fluids
(2018)
Background: Hepatitis C virus (HCV) is a hepatotropic, blood-borne virus, but in up to one-third of infections of the transmission route remained unidentified. Viral genome copies of HCV have been identified in several body fluids, however, non-parental transmission upon exposure to contaminated body fluids seems to be rare. Several body fluids, e.g., tears and saliva, are renowned for their antimicrobial and antiviral properties, nevertheless, HCV stability has never been systematically analyzed in those fluids.
Methods: We used state of the art infectious HCV cell culture techniques to investigate the stability of HCV in different body fluids to estimate the potential risk of transmission via patient body fluid material. In addition, we mimicked a potential contamination of HCV in tear fluid and analyzed which impact commercially available contact lens solutions might have in such a scenario.
Results: We could demonstrate that HCV remains infectious over several days in body fluids like tears, saliva, semen, and cerebrospinal fluid. Only hydrogen-peroxide contact lens solutions were able to efficiently inactivate HCV in a suspension test.
Conclusion: These results indicate that HCV, once it is present in various body fluids of infected patients, remains infective and could potentially contribute to transmission upon direct contact.
Purpose: To evaluate the impact of testing asymptomatic cancer patients, we analyzed all tests for severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) before and during radiotherapy at a tertiary cancer center throughout the second wave of the pandemic in Germany. Methods: Results of all real-time polymerase chain reaction (RT-PCR) tests for SARS-CoV 2 performed at our radio-oncology department between 13 October 2020 and 11 March 2021 were included. Clinical data and anamnestic information at the time of testing were documented and examined for (i) the presence of COVID-19-related symptoms and (ii) virus-related anamnesis (high-risk [prior positive test or contact to a positive tested person within the last 14 days] or low-risk [inconspicuous anamnesis within the last 14 days]). Results: A total of 1056 SARS-CoV 2 tests in 543 patients were analyzed. Of those, 1015 tests were performed in asymptomatic patients and 41 tests in patients with COVID-19-associated symptoms. Two of 940 (0.2%) tests in asymptomatic patients with low-risk anamnesis and three of 75 (4.0%) tests in asymptomatic patients with high-risk anamnesis showed a positive result. For symptomatic patients, SARS-CoV 2 was detected in three of 36 (8.3%) low-risk and three of five (60.0%) high-risk tests. Conclusion: To the best of our knowledge, this is the first study evaluating the correlation between individual risk factors and positivity rates of SARS-CoV 2 tests in cancer patients. The data demonstrate that clinical and anamnestic assessment is a simple and effective measure to distinctly increase SARS-CoV 2 test efficiency. This might enable cancer centers to adjust test strategies in asymptomatic patients, especially when test resources are scarce.
We present first data on sub-threshold production of Ks0 mesons and Λ hyperons in Au+Au collisions at sNN=2.4 GeV. We observe an universal 〈Apart〉 scaling of hadrons containing strangeness, independent of their corresponding production thresholds. Comparing the yields, their 〈Apart〉 scaling, and the shapes of the rapidity and the pt spectra to state-of-the-art transport model (UrQMD, HSD, IQMD) predictions, we find that none of them can simultaneously describe these observables with reasonable χ2 values.
The Transition Radiation Detector (TRD) was designed and built to enhance the capabilities of the ALICE detector at the Large Hadron Collider (LHC). While aimed at providing electron identification and triggering, the TRD also contributes significantly to the track reconstruction and calibration in the central barrel of ALICE. In this paper the design, construction, operation, and performance of this detector are discussed. A pion rejection factor of up to 410 is achieved at a momentum of 1 GeV/c in p–Pb collisions and the resolution at high transverse momentum improves by about 40% when including the TRD information in track reconstruction. The triggering capability is demonstrated both for jet, light nuclei, and electron selection.
The Transition Radiation Detector (TRD) was designed and built to enhance the capabilities of the ALICE detector at the Large Hadron Collider (LHC). While aimed at providing electron identification and triggering, the TRD also contributes significantly to the track reconstruction and calibration in the central barrel of ALICE. In this paper the design, construction, operation, and performance of this detector are discussed. A pion rejection factor of up to 410 is achieved at a momentum of 1 GeV/c in p-Pb collisions and the resolution at high transverse momentum improves by about 40% when including the TRD information in track reconstruction. The triggering capability is demonstrated both for jet, light nuclei, and electron selection.
The Transition Radiation Detector (TRD) was designed and built to enhance the capabilities of the ALICE detector at the Large Hadron Collider (LHC). While aimed at providing electron identification and triggering, the TRD also contributes significantly to the track reconstruction and calibration in the central barrel of ALICE. In this paper the design, construction, operation, and performance of this detector are discussed. A pion rejection factor of up to 410 is achieved at a momentum of 1 GeV/c in p-Pb collisions and the resolution at high transverse momentum improves by about 40% when including the TRD information in track reconstruction. The triggering capability is demonstrated both for jet, light nuclei, and electron selection.
18-OH-Corticosteron (18 ) wird als die unmittelbare Vorstufe der Aldosteron-Synthese angesehen. In-vitro-Untersuchungen sowie vereinzelten klinischen Beobachtungen zufolge sollen Nebennierenrinden-Adenome, im Gegensatz zu Nebennierenrinden-Hyperplasie, vermehrt 8- bilden. In der vorliegenden Studie wurde an 1.272 Patienten einer Hochdruckambulanz, wobei bei 84 Patienten mit primärem Aldosteronismus infolge eines Adenoms sowie bei 110 Patienten infolge einer Nebennierenrinden-Hyperplasie die Diagnose gesichert werden konnte, der diagnostische Stellenwert von 8- im Vergleich zu den Aldosteron-Metaboliten Aldosteron-18-Glucuronid (ALD-18-G) und Tetrahydroaldosteron (TH-ALD) untersucht. Dies im Hin blick auf: 1. die Erkennung eines primären Aldosteronismus, und 2. der differentialdiagnostischen Unterscheidung zwischen einem Adenom und einer Hyperpläsie.
Bezüglich der ersten Fragestellung wurde für 18-OHB - hinsichtlich der Unterscheidung zwischen dem primären Aldosteronismus infolge eines Adenoms und einer essentiellen Hypertonie-eine diagnostische Sensitivität von 99,2% bei einer diagnostischen Spezifität von 95,2% berechnet. Deutlich geringer war mit einer diagnostischen Sensitivität von 79,7% bei einer diagnostischen Spezifität von 60,9% die Abgrenzung zwischen dem primären Aldosteronismus infolge einer Hyperpläsie und einer essentiellen Hypertonie.
18-OHB war bei 11 der 84 Adenom- und 5 der 110 Hyperplasie-Patienten zunächst das einzig erhöhte Steroid im 24 h-Urin. Bei ihnen konnte erst innerhalb einer bis zu 2jährigen Beobachtungszeit ein langsamer Anstieg der Aldosteron-Metabolite beobachtet werden. Somit stellt das 18-OHB einen „Frühmarker" der Erkrankung dar.
In der Unterscheidung zwischen einem Nebennierenrinden-Adenom und einer -Hyperplasie besitzt 18-OHB mit einer diagnostischen Sensitivität von 84,5% bei einer diagnostischen Spezifität von 96,4% ein höheres Abgrenzungsvermögen als Tetrahydro-Aldosteron und Aldosteron-18-Glucuronid dar.
Für die Unterscheidung des Adenoms von der Hyperpläsie ließ sich für 18-OH-Corticosteron im 24 h-Urin ein Wert von 7,9 [ig/die als eine optimale Diskriminanzschwelle berechnen. Bei einer höheren Ausscheidung ist in 84,5% der Fälle mit einem Nebennierenrinden-Adenom zu rechnen. Hinsichtlich der diagnostischen Wertung von 18-OHB sind weder geschlechts- noch altersspezifische Abhängigkeiten zu berücksichtigen.
Die Bestimmung von Tetrahydro-Aldosteron (oder Aldosteron-18-Glucuronid) in Kombination mit 18-OH-Corticosteron stellt die optimale Methode zur Diagnostik des primären Hyperaldosteronismus, insbesondere infolge eines Adenoms, dar.