Yael Asher
Hebrew University of Jerusalem
34 Papers
381 Citations
Yael Asher is an academic researcher from Hebrew University of Jerusalem. The author has contributed to research in topics: Virus & Herpes simplex virus. The author has an hindex of 14, co-authored 34 publications.
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Papers
Low level laser irradiation stimulates mitochondrial membrane potential and disperses subnuclear promyelocytic leukemia protein
TL;DR: This study was designed to determine the influence of LLLI on the kinetics of MMP stimulation and decay, specific cytokine gene expression, and subcellular localization of promyelocytic leukemia (PML) protein on HaCaT human keratinocytes.
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Polymerase chain reaction for differentiation between pathogenic and non-pathogenic serotype 1 Marek's disease viruses (MDV) and vaccine viruses of MDV-serotypes 2 and 3.
TL;DR: The results of the present study show that the PCR tests can be used for the early identification of vvMDV-1 DNA in pathological samples from diseased commercial chickens and to distinguish between the vv MDV- 1 and the three types of virus vaccines used to immunize chickens.
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Effect of herpes simplex virus type-1 UL41 gene on the stability of mRNA from the cellular genes: β-actin, fibronectin, glucose transporter-1, and docking protein, and on virus intraperitoneal pathogenicity to newborn mice
TL;DR: The pathogenicity of the HSV-1 vhs-1 mutant to newborn mice was studied and it was found that the mutant is less pathogenic to newborn animals than its parental strain HSV -1 KOS.
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Defective herpes simplex virus DNA: circular and circular-linear molecules resembling rolling circles.
Yechiel Becker,Yael Asher,Eynat Weinberg-Zahlering,Samuel D. Rabkin,Adam Friedmann,Esther Kessler +5 more
TL;DR: It is proposed that the S component of w.t. virus DNA is fragmented into small circular molecules that serve as templates for DNA synthesis, possibly by the rolling circle mechanism.
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Irreversible Inhibition of Herpes Simplex Virus Replication in BSC-1 Cells by Zinc Ions
TL;DR: The inhibition of herpes simplex virus replication in BSC-1 cells was found to be irreversible and zinc sulfate added to the medium inhibited the synthesis of infectious virus progeny.
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