74 次運動減輕血流再循環(huán)激活代謝轉能器 SCD1 催化血管保護性代謝物 2025-5-7
Exercise mitigates flow recirculation and activates metabolic transducer SCD1 to catalyze vascular protective metabolitesKS:Exercise;flow recirculation;SCD1作為對周期性心臟收縮的
137 次靶向軟骨下骨骨細胞中的H19用于減輕骨關節(jié)炎軟骨降解 2025-5-6
Targeting Long Noncoding RNA H19 in Subchondral Bone Osteocytes and the Alleviation of Cartilage Degradation in OsteoarthritisKWS:LncRNA H19;Subchondral Bone Osteocytes;Cartilag
287 次OK432在腫瘤和免疫研究中的作用機制及應用優(yōu)勢 2025-4-28
OK432(M9414),全稱溶血性鏈球菌 Su 株冷凍干燥制劑,是一種經(jīng)青霉素處理后制備的生物實驗用試劑。它富含多種活性成分,包括蛋白質、肽類、多糖等,這些成分協(xié)同作用,賦予了 OK432 復雜且強大
221 次內皮雌激素-心肌cGMP軸決定壓力超負荷期間的血管生成和心臟功能 2025-4-28
Endothelial oestrogen-myocardial cyclic guanosine monophosphate axis critically determines angiogenesis and cardiac performance during pressure overloadKeywords: Angiogenesis; Cycl
258 次機械拉伸誘導的活性氧驅動新生豬腎上皮細胞內皮素的產(chǎn)生 2025-4-27
Induction of reactive oxygen species by mechanical stretch drives endothelin production in neonatal pig renal epithelial cellsKeywords: Acute kidney injury; Endothelin; Endothelin
273 次Hes1/Piezo1 通路在糖皮質激素誘導的骨質疏松癥中的關鍵作用 2025-4-22
The pivotal role of the Hes1/Piezo1 pathway in the pathophysiology of glucocorticoid-induced osteoporosisKeywords: Bone biology; Bone disease; Osteoporosis; Therapeutics.糖皮質激素
285 次大腦通過 PGE2 骨內感受調節(jié)負重骨:踝關節(jié)骨性關節(jié)炎和疼痛的影響 2025-4-21
Brain regulates weight bearing bone through PGE2 skeletal interoception: implication of ankle osteoarthritis and painSubject terms: Bone, Pathogenesis內感受(Interoception)是一種監(jiān)
362 次骨肉瘤與巨噬細胞相互作用的IL-8經(jīng) FAK 促進瘤生長轉移 2025-4-8
Pivotal role of IL-8 derived from the interaction between osteosarcoma and tumor-associated macrophages in osteosarcoma growth and metastasis via the FAK pathwaySubject terms: Bone
381 次NETosis 驅動高血壓患者血壓升高和血管功能障礙 2025-4-7
NETosis Drives Blood Pressure Elevation and Vascular Dysfunction in HypertensionKeywords: extracellular traps; histones; hypertension; neutrophils; protein-arginine deiminase type
319 次微生理系統(tǒng)產(chǎn)生的剪切力可減少關節(jié)炎3D模型中TNF-α介導的軟骨損傷 2025-4-1
Microphysiological System-Generated Physiological Shear Forces Reduce TNF-α-Mediated Cartilage Damage in a 3D Model of ArthritisKeywords: TNF‐α; articular cartilage br