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Published on: February 15, 2022
Molecular Mechanisms of Sepsis-Associated Acute Kidney Injury
Takashi Hato1,2,3, Pierre C Dagher1
1Department of Medicine, Indiana University School of Medicine, Indianapolis, Indiana.
Abstract:
Sepsis-associated AKI is a complex pathologic state driven by dynamic interactions between the host and microbes. The rapid progression and the absence of a molecular clock that stages the disease timeline make precise therapeutic interventions highly challenging. In this review, we aim to refine the timeline of sepsis-associated AKI by dissecting key molecular events that drive disease progression and may inform therapeutic strategies. AKI, initiated by microbes or infection mimicry, involves the rapid and simultaneous activation of inflammatory and anti-inflammatory pathways. This energy-intensive response is further fueled by the loss of distinction between self and nonself, leading to excessive antiviral responses mediated by self-derived nucleic acids. The resulting metabolic burden overwhelms cellular functions, triggering the integrated stress response and profound translation shutdown. Although this shutdown response may be necessary for energy preservation and for priming endogenous recovery mechanisms, prolonged inhibition of translation represents a maladaptive feature of septic AKI. Despite these challenges, the kidney exhibits remarkable resilience. Recovery relies on metabolic flexibility and stress-adaptive mechanisms, such as enhanced polyamine biosynthesis and RNA editing. Meanwhile, microbes also demonstrate metabolic adaptability, enabling them to evade host defenses and exploit the host environment. Understanding this dynamic interplay along the timeline of septic AKI is essential for developing rational therapeutic strategies.
Insights
Sepsis-associated acute kidney injury (AKI) involves complex host-microbe interactions. Understanding the molecular timeline of sepsis-induced AKI is crucial for developing targeted therapies to improve patient outcomes.
Area of Science:
- Nephrology
- Immunology
- Microbiology
Background:
- Sepsis-associated acute kidney injury (AKI) is a critical condition characterized by rapid progression and complex host-microbe interactions.
- The lack of a defined molecular timeline complicates the development of effective therapeutic interventions for sepsis-induced AKI.
Purpose of the Study:
- To refine the timeline of sepsis-associated AKI by dissecting key molecular events.
- To identify potential therapeutic targets by understanding disease progression.
Main Methods:
- This review synthesizes current research on the molecular and cellular events driving sepsis-associated AKI.
- Analysis of inflammatory, anti-inflammatory, and metabolic pathways involved in disease pathogenesis.
- Examination of host defense mechanisms and microbial adaptability.
Main Results:
- Sepsis-AKI involves simultaneous inflammatory pathway activation, loss of self-non-self distinction, and excessive antiviral responses.
- A significant metabolic burden triggers integrated stress response and translation shutdown, which can be maladaptive if prolonged.
- The kidney exhibits resilience through metabolic flexibility and stress-adaptive mechanisms like polyamine biosynthesis and RNA editing.
Conclusions:
- Understanding the dynamic interplay between host and microbial factors across the sepsis-AKI timeline is essential.
- Targeting specific molecular events and metabolic adaptations offers potential for novel therapeutic strategies.
- Further research into kidney resilience mechanisms could inform treatments for sepsis-induced AKI.
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