Progression of Kidney Fibrosis after Sepsis: The Underestimated Role of Resident Macrophages and Recruited Monocytes.
敗血症後腎纖維化的進展:常駐巨噬細胞和招募單核細胞的被低估角色。
J Am Soc Nephrol 2025-03-28
Mitochondrial Quality Control Systems in Septic AKI: Molecular Mechanisms and Therapeutic Implications.
敗血症性急性腎損傷中的線粒體品質控制系統:分子機制與治療意涵。
Int J Med Sci 2025-04-14
Global research trends and collaborations in acute kidney injury (AKI) and sepsis: a bibliometric analysis (2004-2024).
急性腎損傷(AKI)與敗血症之全球研究趨勢與合作:文獻計量分析(2004-2024)
Ren Fail 2025-04-25
Current Experience Using the Selective Cytopheretic Device for Continuous Immunomodulation in Acute Kidney Injury and Multiorgan Failure.
急性腎損傷與多重器官衰竭中,應用 Selective Cytopheretic Device 進行持續免疫調節的現行經驗
Blood Purif 2025-05-04
Study on the regulation of renal tubular cell apoptosis by SIRT1/NF-κB signaling pathway in septic acute kidney injury.
SIRT1/NF-κB 訊號傳導路徑在敗血性急性腎損傷中調控腎小管細胞凋亡之研究
Ren Fail 2025-05-06
SIRT1 有助於保護腎臟免於敗血症引發的急性腎損傷,主要是降低發炎、氧化壓力和細胞死亡。動物和細胞實驗都證實,提升 SIRT1 表現能減輕腎臟損傷,未來有機會成為治療 AKI 的新方向。
PubMedDOI
Single-Cell RNA Sequencing and Spatial Transcriptomics Reveal Unique Subpopulations of Infiltrating Macrophages and Dendritic Cells Following AKI.
單細胞RNA定序與空間轉錄體學揭示AKI後浸潤性巨噬細胞與樹突細胞的獨特亞群
Am J Physiol Renal Physiol 2025-05-07
Dexmedetomidine improves septic acute kidney injury by inhibiting inflammation and oxidative stress through the activation of the Pink1/Park2 autophagy pathway.
Dexmedetomidine 透過活化 Pink1/Park2 自噬途徑,抑制發炎與氧化壓力,改善敗血性急性腎損傷
Ren Fail 2025-06-09