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

Conjugation of a Cryptococcus neoformans-derived metalloprotease to antifungal-loaded PLGA nanoparticles treats neural cryptococcosis in an in vitro model

将新型隐球菌来源的金属蛋白酶与载有抗真菌药物的PLGA纳米颗粒偶联,可在体外模型中治疗神经隐球菌病。

Lanser, Dylan M; Turner, Adam; Pacifici, Noah; Vu, Kiem; Lewis, Jamal; Gelli, Angie

Macropinocytosis mediates neurotropism of Cryptococcus neoformans in a human organoid model of the blood-brain barrier.

在人类血脑屏障类器官模型中,巨胞饮作用介导新型隐球菌的神经趋向性。

Bennett Amelia B, Lanser Dylan M, Vu Kiem, Sahoo Amita R, Buck Matthias, Gelli Angie

Antifungal activity of 6-substituted amiloride and hexamethylene amiloride (HMA) analogs

6-取代阿米洛利和六亚甲基阿米洛利(HMA)类似物的抗真菌活性

Vu, Kiem; Buckley, Benjamin J; Bujaroski, Richard S; Blumwald, Eduardo; Kelso, Michael J; Gelli, Angie

Macropinocytosis as a potential mechanism driving neurotropism of Cryptococcus neoformans

巨胞饮作用可能是新型隐球菌神经趋向性的潜在驱动机制

Lanser, Dylan M; Bennett, Amelia B; Vu, Kiem; Gelli, Angie

Characterization of the Growth and Morphology of a BSL-2 Coccidioides posadasii Strain That Persists in the Parasitic Life Cycle at Ambient CO(2)

在环境 CO(2) 条件下持续进行寄生生命周期的 BSL-2 级球孢子菌菌株的生长和形态特征

Garcia, Javier A; Vu, Kiem; Thompson, George R 3rd; Gelli, Angie

Flucytosine resistance in Cryptococcus gattii is indirectly mediated by the FCY2-FCY1-FUR1 pathway.

新型隐球菌对氟胞嘧啶的耐药性是由 FCY2-FCY1-FUR1 通路间接介导的

Vu Kiem, Thompson George R 3rd, Roe Chandler C, Sykes Jane E, Dreibe Elizabeth M, Lockhart Shawn R, Meyer Wieland, Engelthaler David M, Gelli Angie

Fluconazole Susceptibility in Cryptococcus gattii Is Dependent on the ABC Transporter Pdr11

新型隐球菌对氟康唑的敏感性取决于ABC转运蛋白Pdr11

Yang, Mai Lee; Uhrig, John; Vu, Kiem; Singapuri, Anil; Dennis, Michael; Gelli, Angie; Thompson, George R 3rd

The Cch1-Mid1 High-Affinity Calcium Channel Contributes to the Virulence of Cryptococcus neoformans by Mitigating Oxidative Stress.

Cch1-Mid1 高亲和力钙通道通过减轻氧化应激来增强新型隐球菌的毒力

Vu Kiem, Bautos Jennifer M, Gelli Angie

Cryptococcus neoformans promotes its transmigration into the central nervous system by inducing molecular and cellular changes in brain endothelial cells

新型隐球菌通过诱导脑内皮细胞的分子和细胞变化,促进其向中枢神经系统的迁移。

Vu, Kiem; Eigenheer, Richard A; Phinney, Brett S; Gelli, Angie

Immortalized human brain endothelial cell line HCMEC/D3 as a model of the blood-brain barrier facilitates in vitro studies of central nervous system infection by Cryptococcus neoformans.

永生化人脑内皮细胞系 HCMEC/D3 作为血脑屏障模型,有助于对新型隐球菌感染中枢神经系统进行体外研究

Vu Kiem, Weksler Babette, Romero Ignacio, Couraud Pierre-Olivier, Gelli Angie