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Genome editing of through targeted delivery of CRISPR-Cas9 system for alleviating acute lung inflammation ERK/NLRP3/IL-1 and NO/iNOS signalling. | LitMetric

Genome editing of through targeted delivery of CRISPR-Cas9 system for alleviating acute lung inflammation ERK/NLRP3/IL-1 and NO/iNOS signalling.

Acta Pharm Sin B

Sichuan Engineering Research Center for Biomimetic Synthesis of Natural Drugs, School of Life Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.

Published: March 2024

AI Article Synopsis

  • Excessive inflammation in the lungs can worsen respiratory diseases due to the release of harmful cytokines and damage to lung tissues, creating a need for effective drugs to combat this issue.
  • The study focuses on Protease-activated receptor 2 (PAR2), a target involved in inflammatory responses, and explores how gene editing using CRISPR-Cas9 can modify its role in lung inflammation.
  • By using specially designed nanoparticles (TAP) to deliver gene editing tools, researchers found that inhibiting PAR2 helped reduce inflammation in macrophages and provided insights into new drug strategies for treating lung inflammation.

Article Abstract

Excessive and uncontrollable inflammatory responses in alveoli can dramatically exacerbate pulmonary disease progressions through vigorous cytokine releases, immune cell infiltration and protease-driven tissue damages. It is an urgent need to explore potential drug strategies for mitigating lung inflammation. Protease-activated receptor 2 (PAR2) as a vital molecular target principally participates in various inflammatory diseases intracellular signal transduction. However, it has been rarely reported about the role of PAR2 in lung inflammation. This study applied CRISPR-Cas9 system encoding Cas9 and sgRNA () for knockout and fabricated an anionic human serum albumin-based nanoparticles to deliver with superior inflammation-targeting efficiency and stability (TAP). TAP robustly facilitated to enter and transfect inflammatory cells, eliciting precise gene editing of and . Importantly, deficiency by TAP effectively and safely promoted macrophage polarization, suppressed pro-inflammatory cytokine releases and alleviated acute lung inflammation, uncovering a novel value of PAR2. It also revealed that PAR2-mediated pulmonary inflammation prevented by TAP was mainly dependent on ERK-mediated NLRP3/IL-1 and NO/iNOS signalling. Therefore, this work indicated PAR2 as a novel target for lung inflammation and provided a potential nanodrug strategy for deficiency in treating inflammatory diseases.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10935474PMC
http://dx.doi.org/10.1016/j.apsb.2023.08.013DOI Listing

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