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Although the oncolytic parvovirus H-1PV has entered clinical trials, predicting therapeutic success remains challenging. We investigated whether the antiviral state in tumor cells determines the parvoviral oncolytic efficacy. The interferon/interferon-stimulated genes (IFN/ISG)-circuit and its major configurator, human endogenous retroviruses (HERVs), were evaluated using qRT-PCR, ELISA, Western blot, and RNA-Seq techniques. In pancreatic cancer cell lines, H-1PV caused a late global shutdown of innate immunity, whereby the concomitant inhibition of HERVs and IFN/ISGs was co-regulatory rather than causative. The growth-inhibitory IC50 doses correlated with the power of suppression but not with absolute ISG levels. Moreover, H-1PV was not sensitive to exogenous IFN despite upregulated antiviral ISGs. Such resistance questioned the biological necessity of the oncotropic ISG-shutdown, which instead might represent a surrogate marker for personalized oncolytic efficacy. The disabled antiviral homeostasis may modify the activity of other viruses, as demonstrated by the reemergence of endogenous AluY-retrotransposons. This way of suppression may compromise the interferogenicity of drugs having gemcitabine-like mechanisms of action. This shortcoming in immunogenic cell death induction is however amendable by immune cells which release IFN in response to H-1PV.
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http://dx.doi.org/10.3390/v13061019 | DOI Listing |
Genome Res
August 2025
Institut Curie, Université PSL, Sorbonne University, CNRS
Quiescent cells (Q) are seemingly inactive, developmentally arrested cells, whose universal characteristic is the ability to promptly reenter the cell cycle upon sensing of external cues. Q cells are responsive to the environment and flexible enough to adapt to available resources. In budding yeast, quiescent nuclear features are drastically distinct from those observed in nutrient replete conditions: the nuclear volume is reduced, the telomeres relocate from the nuclear periphery to the center of the nucleus into a hypercluster, chromatin is found in a compacted, hypoacetylated state, and transcription is globally shutdown.
View Article and Find Full Text PDFJ Immigr Minor Health
October 2025
Sol Price School of Public Policy, University of Southern California, Los Angeles, CA, USA.
The COVID-19 pandemic heightened levels of depression and anxiety globally. While foreign-born Hispanics faced additional stressors compared to their native-born counterparts, they may have displayed better mental health outcomes as suggested by the Healthy Immigrant Paradox. However, it remains unclear whether this paradox extends to indicators of psychological distress, particularly in the face of unprecedented stressors like the pandemic.
View Article and Find Full Text PDFAnn Biol Clin (Paris)
August 2025
School of Medicine and Medical Sciences, Holy Spirit University of Kaslik, P.O. Box 446, Jounieh, Lebanon.
Cyberattacks on healthcare organizations have escalated globally, resulting in serious risks to patient care and safety. Clinical laboratories, relying heavily on data-intensive systems, are particularly vulnerable to disruptions when hospital information systems are compromised. We conducted a single-center retrospective case study of a major cyberattack affecting the laboratory services at Notre Dame des Secours-UH in Lebanon.
View Article and Find Full Text PDFMicrobiol Spectr
September 2025
Environmental Engineering Institute IIE-ENAC, Laboratory MICROBE, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Hydrogenotrophic methanogens play a key role in anaerobic ecosystems by catalyzing the bioconversion of hydrogen (H) and carbon dioxide (CO) into methane (CH) and water. This metabolic process is the basis of biological power-to-methane (PtM) technology, a promising solution for the long-term storage of surplus renewable energy as CH. Its successful application can be improved through a deeper understanding of methanogen physiology, particularly the metabolic response to intermittent substrate supply of H or CO.
View Article and Find Full Text PDFSci Rep
July 2025
Sichuan Energy Internet Research Institute, Chengdu, 610500, China.
As global awareness of environmental protection increases, hydrogen is seen as a promising solution due to its high energy density and zero-emission combustion. The PEM electrolyze combined with renewable energy power generation is an effective method to solve the problem of hydrogen production. The market competitiveness of PEM electrolyte will be enhanced in the future, and the equipment cost can be reduced by 35.
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