Cytokine Storm in COVID-19: Exploring IL-6 Signaling and Cytokine-Microbiome Interactions as Emerging Therapeutic Approaches
Цитокиновый шторм при COVID-19: исследование сигнального пути IL-6 и взаимодействий цитокинов с микробиотой как новых терапевтических подходов
2024-10-24
SCID: 54.1/xz2rebhc
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IL-6 trans-signalingTNF-α and IFN-γ synergycytokine biomarkers and quantificationcytokine stormgut microbiota–cytokine interactions
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Abstract (AI)
IL-6 remains a key molecule of the cytokine storms characterizing COVID-19, exerting both proinflammatory and anti-inflammatory effects. Emerging research underscores the significance of IL-6 trans-signaling over classical signaling pathways, which has shifted the focus of therapeutic strategies. Additionally, the synergistic action of TNF-α and IFN-γ has been found to induce inflammatory cell death through PANoptosis, further amplifying the severity of cytokine storms. Long COVID-19 patients, as well as those with cytokine storms triggered by other conditions, exhibit distinct laboratory profiles, indicating the need for targeted approaches to diagnosis and management. Growing evidence also highlights the gut microbiota's crucial role in modulating the immune response during COVID-19 by affecting cytokine production, adding further complexity to the disease's immunological landscape. Targeted intervention strategies should focus on specific cytokine cutoffs, though accurate cytokine quantification remains a clinical challenge. Current treatment strategies are increasingly focused on inhibiting IL-6 trans-signaling, which offers promise for more precise therapeutic approaches to manage hyperinflammatory responses in COVID-19. In light of recent discoveries, this review summarizes key research findings on cytokine storms, particularly their role in COVID-19 and other inflammatory conditions. It explores emerging therapeutic strategies targeting cytokines like IL-6, TNF-α, and IFN-γ, while also addressing open questions, such as the need for better biomarkers to detect and manage cytokine storms. Additionally, the review highlights ongoing challenges in developing targeted treatments that mitigate hyperinflammation without compromising immune function, emphasizing the importance of continued research in this field.
Key Findings
1
Current treatment strategies increasingly target IL-6 trans-signaling as a promising approach to precisely manage hyperinflammatory responses.
2
Developing therapies that mitigate hyperinflammation without compromising immune function remains an ongoing challenge, requiring better biomarkers and further research.
3
Gut microbiota modulates immune responses in COVID-19 by influencing cytokine production, adding complexity to immunopathology and therapeutic design.
4
IL-6 is a central mediator of COVID-19 cytokine storms, possessing both proinflammatory and anti-inflammatory effects.
5
IL-6 trans-signaling is more significant than classical signaling in COVID-19, shifting therapeutic focus toward trans-signaling inhibition.
6
Long COVID-19 patients and patients with cytokine storms from other causes show distinct laboratory profiles, indicating need for targeted diagnosis and management.
7
Synergistic action of TNF-α and IFN-γ induces inflammatory cell death via PANoptosis, amplifying cytokine storm severity.
8
Targeted interventions should use specific cytokine cutoffs, but accurate cytokine quantification remains a clinical challenge.
Research Object
Cytokine storm in COVID-19 (including key cytokines IL-6, TNF-α, IFN-γ and cytokine–microbiome interactions)
Research Subject
Mechanisms and therapeutic targeting of IL-6 signaling (especially trans-signaling), cytokine-driven cell death (PANoptosis via TNF-α and IFN-γ), cytokine–microbiome modulation of immune responses, and the development of biomarkers and targeted interventions to manage hyperinflammation
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2024-10-24
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