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About:
The Antiviral and Antitumor Effects of Defective Interfering Particles/Genomes and Their Mechanisms
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An Entity of Type :
schema:ScholarlyArticle
, within Data Space :
covidontheweb.inria.fr
associated with source
document(s)
Type:
Academic Article
research paper
schema:ScholarlyArticle
New Facet based on Instances of this Class
Attributes
Values
type
Academic Article
research paper
schema:ScholarlyArticle
isDefinedBy
Covid-on-the-Web dataset
has title
The Antiviral and Antitumor Effects of Defective Interfering Particles/Genomes and Their Mechanisms
Creator
Xie, Qian
Zhang, Bao
Zhao, Wei
He, Xiaoen
Chen, Tingting
Wu, Qinghua
Lyu, Taibiao
Shen, Chu
Yang, Yicheng
Ye, Kaiyan
Zhou, Runing
Chattopadhyay, Saurabh
Li, Zhu
Aras, Siddhesh
Source
Medline; PMC
abstract
Defective interfering particles (DIPs), derived naturally from viral particles, are not able to replicate on their own. Several studies indicate that DIPs exert antiviral effects via multiple mechanisms. DIPs are able to activate immune responses and suppress virus replication cycles, such as competing for viral replication products, impeding the packaging, release and invasion of viruses. Other studies show that DIPs can be used as a vaccine against viral infection. Moreover, DIPs/DI genomes display antitumor effects by inducing tumor cell apoptosis and promoting dendritic cell maturation. With genetic modified techniques, it is possible to improve its safety against both viruses and tumors. In this review, a comprehensive discussion on the effects exerted by DIPs is provided. We further highlight the clinical significance of DIPs and propose that DIPs can open up a new platform for antiviral and antitumor therapies.
has issue date
2019-08-09
(
xsd:dateTime
)
bibo:doi
10.3389/fmicb.2019.01852
bibo:pmid
31447826
has license
cc-by
sha1sum (hex)
c32c30f41c1f50f242b977297a8ff85eda1a2987
schema:url
https://doi.org/10.3389/fmicb.2019.01852
resource representing a document's title
The Antiviral and Antitumor Effects of Defective Interfering Particles/Genomes and Their Mechanisms
has PubMed Central identifier
PMC6696905
has PubMed identifier
31447826
schema:publication
Front Microbiol
resource representing a document's body
covid:c32c30f41c1f50f242b977297a8ff85eda1a2987#body_text
is
schema:about
of
named entity 'MECHANISMS'
named entity 'MULTIPLE'
named entity 'STUDIES'
named entity 'EXERT'
named entity 'SUPPRESS'
named entity 'APOPTOSIS'
named entity 'ACTIVATE'
named entity 'TUMOR CELL'
named entity 'DISCUSSION'
named entity 'TUMORS'
named entity 'ANTIVIRAL'
named entity 'INDUCING'
named entity 'DERIVED'
named entity 'DENDRITIC CELL MATURATION'
named entity 'PLATFORM'
named entity 'GENOMES'
named entity 'CLINICAL SIGNIFICANCE'
named entity 'MECHANISMS'
named entity 'NEW'
named entity 'RELEASE'
named entity 'VIRAL INFECTION'
named entity 'PROVIDED'
named entity 'EFFECTS'
named entity 'REPLICATE'
named entity 'EXERTED'
named entity 'DISPLAY'
named entity 'REVIEW'
named entity 'THEIR'
named entity 'ANTITUMOR'
named entity 'OPEN'
named entity 'VIRAL REPLICATION'
named entity 'POSSIBLE'
named entity 'THEIR'
named entity 'PRODUCTS'
named entity 'PACKAGING'
named entity 'VACCINE'
named entity 'ANTITUMOR'
named entity 'COMPREHENSIVE'
named entity 'IMMUNE RESPONSES'
named entity 'EFFECTS'
named entity 'CITATION'
named entity 'ANTIVIRAL'
named entity 'SAFETY'
named entity 'TECHNIQUES'
named entity 'GENETIC'
named entity 'USED'
named entity 'PROMOTING'
named entity 'INVASION'
named entity 'VIRUSES'
named entity 'IMPEDING'
named entity 'MODIFIED'
named entity 'THERAPIES'
named entity 'DEFECTIVE INTERFERING PARTICLES'
named entity 'DEFECTIVE INTERFERING PARTICLES'
named entity 'VIRAL PARTICLES'
named entity 'VIRUS REPLICATION'
named entity 'ITS'
covid:arg/c32c30f41c1f50f242b977297a8ff85eda1a2987
named entity 'dendritic cell'
named entity 'antiviral'
named entity 'antiviral'
named entity 'genomes'
named entity 'Antitumor'
named entity 'genomes'
named entity 'antiviral'
named entity 'DCs'
named entity 'heterologous'
named entity 'apoptotic effects'
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