MiR-150 attenuates LPS-induced acute lung injury via targeting AKT3

Pibao Li1, Yanfen Yao2, Yuezhen Ma2

  • 1Department of Pulmonary and Critical Care Medicine, The First Affiliated Hospital of Soochow University, 899# Pinghai Road, Suzhou 215000, Jiangsu, China; Department of Intensive Care Unit, Shandong Provincial Third Hospital, No.12, Central Wuying Hill Road, Jinan 250031, Shandong, China.

Insights

MicroRNA-150 (miR-150) levels are reduced in acute respiratory distress syndrome (ARDS) patients. Restoring miR-150 expression may treat lipopolysaccharide-induced acute lung injury (ALI) by targeting AKT3 and inflammatory pathways.

Area of Science:

  • Pulmonary Medicine
  • Molecular Biology
  • Immunology

Background:

  • Acute lung injury (ALI) and acute respiratory distress syndrome (ARDS) are severe lung conditions often triggered by inflammatory responses.
  • The specific role of microRNA-150 (miR-150) in lipopolysaccharide (LPS)-induced ALI remains unclear.

Purpose of the Study:

  • To investigate the role of miR-150 in LPS-induced ALI.
  • To explore the therapeutic potential of miR-150 in treating ALI/ARDS.

Main Methods:

  • Serum miR-150 levels were analyzed in ARDS patients.
  • LPS-induced ALI mouse models and A549 cell cultures were used for in vivo and in vitro studies.
  • miR-150 expression, inflammatory cytokine levels, cell apoptosis, autophagy, and signaling pathways (AKT3, JNK, NF-κB) were assessed.

Main Results:

  • miR-150 expression was decreased in ARDS patients and negatively correlated with disease severity and survival.
  • In LPS-induced ALI mice, miR-150 reduced inflammatory cell counts, inflammatory cytokines, and lung edema, improving survival.
  • miR-150 inhibited apoptosis and autophagy in A549 cells, with AKT3 identified as a direct target. miR-150 and AKT3 silencing modulated JNK and NF-κB pathways.

Conclusions:

  • miR-150 plays a protective role in LPS-induced ALI.
  • Targeting miR-150, potentially through AKT3 regulation and modulation of JNK/NF-κB pathways, offers a promising therapeutic strategy for ALI/ARDS.

Related Concept Videos

Transcription Attenuation in Prokaryotes02:42

Transcription Attenuation in Prokaryotes

Transcriptional attenuation occurs when RNA transcription is prematurely terminated due to the formation of a terminator mRNA hairpin structure.  Bacteria use these hairpins to regulate the transcription process and control the synthesis of several amino acids including histidine, lysine, threonine, and phenylalanine. Transcription attenuation takes place in the non-coding regions of mRNA.
There are several different mechanisms used to attenuate transcription. In ribosome mediated...
18.2K
Acute Kidney Injury I: Introduction01:22

Acute Kidney Injury I: Introduction

Introduction:Acute Kidney Injury (AKI) describes a swift decrease in kidney function occurring over hours to days, characterized by the kidneys' failure to remove waste products from the bloodstream. This leads to dangerous complications like metabolic acidosis, fluid overload, and electrolyte imbalances, such as hyperkalemia, which can cause life-threatening arrhythmias. AKI is common in both hospital and outpatient settings, often triggered by dehydration, sepsis, or exposure to nephrotoxic...
603
Acute Kidney Injury II: Pathophysiology01:29

Acute Kidney Injury II: Pathophysiology

Acute kidney injury (AKI) causes are categorized into three primary categories based on the location of the injury: prerenal, intrarenal (or intrinsic), and postrenal causes. This classification guides clinical management and illustrates how different pathways can impair kidney function.Etiology and Pathophysiology of Acute Kidney Injury1. Prerenal causesEtiology: Prerenal Acute Kidney Injury, the most common type, occurs when reduced blood flow to the kidneys decreases filtration capacity...
936
Acute Kidney Injury VI: Nursing Management01:22

Acute Kidney Injury VI: Nursing Management

Acute Kidney Injury (AKI) results in an inability to maintain fluid, electrolyte, and acid-base balance. Effective nursing management is critical in improving patient outcomes and includes comprehensive patient assessment and targeted interventions.Comprehensive Patient AssessmentA detailed history collection is essential, focusing on any recent infections, nephrotoxic medication use, or chronic conditions such as hypertension and diabetes that may contribute to AKI. During the physical...
406
Acute Kidney Injury V: Interprofessional Care01:20

Acute Kidney Injury V: Interprofessional Care

Acute Kidney Injury (AKI) requires a collaborative healthcare approach to restore renal function and prevent complications. Essential management strategies involve monitoring fluid and electrolyte balance, adjusting medications, initiating dialysis when necessary, and providing nutritional support.Fluid and Electrolyte ManagementFluid Monitoring: Regularly monitoring body weight, central venous pressure, and urine output helps detect fluid imbalances early. Patient intake and output are...
303
Acute Kidney Injury III: Clinical Manifestations01:29

Acute Kidney Injury III: Clinical Manifestations

Acute Kidney Injury (AKI) progresses through distinct clinical phases: the oliguric, diuretic, and recovery phases, each marked by unique manifestations and challenges.Oliguric Phase:The oliguric phase is the initial stage of AKI, typically lasting 10 to 14 days. This phase is marked by a significant reduction in urine output, usually less than 400 mL per day, indicating decreased kidney function. Fluid retention is a prominent feature, leading to symptoms such as edema, hypertension, and...
837