PANoptosis: A New Insight Into Oral Infectious Diseases

Weiyi Jiang1, Zilong Deng1, Xingzhu Dai1

  • 1Department of Stomatology, Nanfang Hospital, Southern Medical University, Guangzhou, China.

Frontiers in Immunology
|December 31, 2021
PubMed

Insights

Oral microbiome dysbiosis can trigger infectious diseases. This review explores PANoptosis, a cell death pathway crucial for immunity against oral pathogens and relevant to disease development.

Area of Science:

  • Microbiology
  • Immunology
  • Cell Biology

Background:

  • The oral microbiome is a complex ecosystem where dysbiosis initiates infectious diseases.
  • Infections involve host-pathogen interactions leading to programmed cell death pathways like pyroptosis, apoptosis, and necroptosis.
  • PANoptosis integrates these cell death pathways, acting as a key immune response against intracellular pathogens.

Purpose of the Study:

  • To review the pathophysiological mechanisms of inflammation and tissue damage in oral infectious diseases.
  • To overview pathogens that activate PANoptosis and its functional consequences in oral infections.
  • To explore microbial immune evasion strategies and their impact on host-pathogen interplay.

Main Methods:

  • Literature review summarizing existing research on oral microbiome, cell death pathways, and PANoptosis.
  • Analysis of pathophysiological mechanisms linking oral pathogens to inflammation and tissue destruction.
  • Examination of immune evasion strategies employed by oral microbes.

Main Results:

  • PANoptosis is a critical immune response in innate immune cells for detecting and eliminating intracellular pathogens.
  • Activation of PANoptosis is implicated in various oral infectious diseases, autoimmunity, and cancer.
  • Understanding PANoptosis provides insights into microbial pathogenesis and host immune evasion.

Conclusions:

  • PANoptosis plays a significant role in the immune response to oral pathogens and in the pathogenesis of oral infectious diseases.
  • Further research into PANoptosis and microbial immune evasion can guide the development of novel therapeutic strategies for oral infections.

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