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

Novel, low-cost bioreactor for in vitro electrical stimulation of cardiac cells.

一种新型低成本生物反应器,用于体外电刺激心肌细胞

Licata Joseph P, Gerstenhaber Jonathan A, Lelkes Peter I

Bioreactor Technologies for Enhanced Organoid Culture

用于增强类器官培养的生物反应器技术

Licata, Joseph P; Schwab, Kyle H; Har-El, Yah-El; Gerstenhaber, Jonathan A; Lelkes, Peter I

Virtual Biomaterials Lab During COVID-19 Pandemic

新冠疫情期间的虚拟生物材料实验室

Gerstenhaber, Jonathan A; Har-El, Yah-El

Adult and iPS-derived non-parenchymal cells regulate liver organoid development through differential modulation of Wnt and TGF-β

成体和iPS来源的非实质细胞通过差异性调节Wnt和TGF-β来调控肝脏类器官的发育。

Goulart, Ernesto; de Caires-Junior, Luiz Carlos; Telles-Silva, Kayque Alves; Araujo, Bruno Henrique Silva; Kobayashi, Gerson S; Musso, Camila Manso; Assoni, Amanda Faria; Oliveira, Danyllo; Caldini, Elia; Gerstenhaber, Jonathan A; Raia, Silvano; Lelkes, Peter I; Zatz, Mayana

Long-term biocompatibility of fluorescent diamonds-(NV)-Z~800 nm in rats: survival, morbidity, histopathology, particle distribution and excretion studies (part IV)

荧光金刚石-(NV)-Z~800 nm 在大鼠体内的长期生物相容性:存活率、发病率、组织病理学、颗粒分布和排泄研究(第四部分)

Barone, Frank C; Marcinkiewicz, Cezary; Li, Jie; Feng, Yi; Sternberg, Mark; Lelkes, Peter I; Rosenbaum-Halevi, David; Gerstenhaber, Jonathan A; Feuerstein, Giora Z

Biocompatibility studies of fluorescent diamond particles-(NV)~800nm (part V): in vitro kinetics and in vivo localization in rat liver following long-term exposure

荧光金刚石颗粒(NV)~800nm的生物相容性研究(第五部分):体外动力学和长期暴露后在大鼠肝脏中的体内定位

Gerstenhaber, Jonathan A; Marcinkiewicz, Cezary; Barone, Frank C; Sternberg, Mark; D'Andrea, Michael R; Lelkes, Peter I; Feuerstein, Giora Z

An Air Bubble-Isolating Rotating Wall Vessel Bioreactor for Improved Spheroid/Organoid Formation

一种用于改善球状体/类器官形成的气泡隔离式旋转壁容器生物反应器

Phelan, Michael A; Gianforcaro, Anthony L; Gerstenhaber, Jonathan A; Lelkes, Peter I

Pilot study on biocompatibility of fluorescent nanodiamond-(NV)-Z~800 particles in rats: safety, pharmacokinetics, and bio-distribution (part III)

荧光纳米金刚石-(NV)-Z~800颗粒在大鼠体内的生物相容性初步研究:安全性、药代动力学和生物分布(第三部分)

Barone, Frank C; Marcinkiewicz, Cezary; Li, Jie; Sternberg, Mark; Lelkes, Peter I; Dikin, Dmitriy A; Bergold, Peter J; Gerstenhaber, Jonathan A; Feuerstein, Giora

Vascular thrombus imaging in vivo via near-infrared fluorescent nanodiamond particles bioengineered with the disintegrin bitistatin (Part II)

利用近红外荧光纳米金刚石颗粒对体内血管血栓进行成像,该纳米金刚石颗粒经解整合素比司他汀生物工程改造(第二部分)

Gerstenhaber, Jonathan A; Barone, Frank C; Marcinkiewicz, Cezary; Li, Jie; Shiloh, Aaron O; Sternberg, Mark; Lelkes, Peter I; Feuerstein, Giora

Bitistatin-functionalized fluorescent nanodiamond particles specifically bind to purified human platelet integrin receptor α(IIb)β(3) and activated platelets

比替斯他汀功能化的荧光纳米金刚石颗粒特异性结合纯化的人血小板整合素受体α(IIb)β(3)和活化的血小板

Marcinkiewicz, Cezary; Gerstenhaber, Jonathan A; Sternberg, Mark; Lelkes, Peter I; Feuerstein, Giora