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Autophagy, One of the Main Steps in Periodontitis Pathogenesis and Evolution
by
Ionescu, Ecaterina
, Pituru, Silviu Mirel
, Imre, Marina Melescanu
, Totan, Alexandra
, Mohora, Maria
, Greabu, Maria
, Giampieri, Francesca
in
Autophagy
/ Disease Progression
/ Humans
/ oxidative stress
/ periodontitis
/ Periodontitis - metabolism
/ Periodontitis - microbiology
/ Periodontitis - pathology
/ Periodontitis - therapy
/ Reactive Oxygen Species - metabolism
/ Review
2020
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Autophagy, One of the Main Steps in Periodontitis Pathogenesis and Evolution
by
Ionescu, Ecaterina
, Pituru, Silviu Mirel
, Imre, Marina Melescanu
, Totan, Alexandra
, Mohora, Maria
, Greabu, Maria
, Giampieri, Francesca
in
Autophagy
/ Disease Progression
/ Humans
/ oxidative stress
/ periodontitis
/ Periodontitis - metabolism
/ Periodontitis - microbiology
/ Periodontitis - pathology
/ Periodontitis - therapy
/ Reactive Oxygen Species - metabolism
/ Review
2020
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Autophagy, One of the Main Steps in Periodontitis Pathogenesis and Evolution
by
Ionescu, Ecaterina
, Pituru, Silviu Mirel
, Imre, Marina Melescanu
, Totan, Alexandra
, Mohora, Maria
, Greabu, Maria
, Giampieri, Francesca
in
Autophagy
/ Disease Progression
/ Humans
/ oxidative stress
/ periodontitis
/ Periodontitis - metabolism
/ Periodontitis - microbiology
/ Periodontitis - pathology
/ Periodontitis - therapy
/ Reactive Oxygen Species - metabolism
/ Review
2020
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Autophagy, One of the Main Steps in Periodontitis Pathogenesis and Evolution
Journal Article
Autophagy, One of the Main Steps in Periodontitis Pathogenesis and Evolution
2020
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Overview
Periodontitis represents a complex inflammatory disease that compromises the integrity of the tooth-supporting tissue through the interaction of specific periodontal pathogens and the host’s immune system. Experimental data help to outline the idea that the molecular way towards periodontitis initiation and progression presents four key steps: bacterial infection, inflammation, oxidative stress, and autophagy. The aim of this review is to outline the autophagy involvement in the pathogenesis and evolution of periodontitis from at least three points of view: periodontal pathogen invasion control, innate immune signaling pathways regulation and apoptosis inhibition in periodontal cells. The exact roles played by reactive oxygen species (ROS) inside the molecular mechanisms for autophagy initiation in periodontitis still require further investigation. However, clarifying the role and the mechanism of redox regulation of autophagy in the periodontitis context may be particularly beneficial for the elaboration of new therapeutic strategies.
Publisher
MDPI,MDPI AG
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