日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Supplemental exposure to polystyrene nanoplastics synergistically amplifies calcium oxalate crystal-induced injury to renal tubular epithelium, accelerating the formation of calcium oxalate kidney stones.

额外接触聚苯乙烯纳米塑料可协同放大草酸钙晶体对肾小管上皮的损伤,加速草酸钙肾结石的形成。

Su Xiaozhe, Yang Yijun, Xiang Heng, Dong Caitao, Shi MingCheng, Wang Yufei, Zhou Qixuan, Song Qianlin, He Ziqi, Jiang Qinhong, Chen Bobo, Wang Yunhan, Xiong Yunhe, Yang Sixing

CHAC1 Mediates Endoplasmic Reticulum Stress-Dependent Ferroptosis in Calcium Oxalate Kidney Stone Formation

CHAC1 介导草酸钙肾结石形成过程中内质网应激依赖性铁死亡

Caitao Dong, Ziqi He, Wenbiao Liao, Qinhong Jiang, Chao Song, Qianlin Song, Xiaozhe Su, Yunhe Xiong, Yunhan Wang, Lingchao Meng, Sixing Yang

Understanding formation processes of calcareous nephrolithiasis in renal interstitium and tubule lumen

了解肾间质和肾小管腔内钙化性肾结石的形成过程

Dong, Caitao; Zhou, Jiawei; Su, Xiaozhe; He, Ziqi; Song, Qianlin; Song, Chao; Ke, Hu; Wang, Chuan; Liao, Wenbiao; Yang, Sixing

Serum metabolomics study reveals a distinct metabolic diagnostic model for renal calculi

血清代谢组学研究揭示了肾结石独特的代谢诊断模型

Xiong, Yunhe; Song, Qianlin; Zhao, Shurui; Wang, Chuan; Ke, Hu; Liao, Wenbiao; Meng, Lingchao; Liu, Lingyan; Song, Chao

Oxalate regulates crystal-cell adhesion and macrophage metabolism via JPT2/PI3K/AKT signaling to promote the progression of kidney stones

草酸盐通过JPT2/PI3K/AKT信号通路调节晶体细胞黏附和巨噬细胞代谢,从而促进肾结石的进展。

Song, Qianlin; Song, Chao; Chen, Xin; Xiong, Yunhe; He, Ziqi; Su, Xiaozhe; Zhou, Jiawei; Ke, Hu; Dong, Caitao; Liao, Wenbiao; Yang, Sixing

Anisotropic Wettability of Bioinspired Surface Characterized by Friction Force

仿生表面各向异性润湿性的摩擦力表征

Zhang, Jinhong; Li, Lijun; Xu, Peng; Lei, Yifeng; Song, Qianlin; Liu, Junwei; Xiong, Yunhe; Yang, Sixing; Zhang, Yurong; Xue, Longjian