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Nature Communications
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October 13, 2022
Reducing Akt2 in retinal pigment epithelial cells causes a compensatory increase in Akt1 and attenuates diabetic retinopathy
Haitao Liu, Nadezda A Stepicheva, Sayan Ghosh, et al.
The Journal of Infectious Diseases
|
February 3, 2005
Function of HAb18G/CD147 in invasion of host cells by severe acute respiratory syndrome coronavirus
Zhinan Chen, Li Mi, Jing Xu, et al.
Theranostics
|
August 15, 2022
Therapeutic aptamer targeting sclerostin loop3 for promoting bone formation without increasing cardiovascular risk in osteogenesis imperfecta mice
Luyao Wang, Yuanyuan Yu, Shuaijian Ni, et al.
Communications Biology
|
July 9, 2021
βA3/A1-crystallin regulates apical polarity and EGFR endocytosis in retinal pigmented epithelial cells
Peng Shang, Nadezda Stepicheva, Kenneth Teel, et al.
Biomaterials
|
March 31, 2015
A delivery system specifically approaching bone resorption surfaces to facilitate therapeutic modulation of microRNAs in osteoclasts
Jin Liu, Lei Dang, Defang Li, et al.
Communications Biology
|
September 26, 2019
Neutrophils homing into the retina trigger pathology in early age-related macular degeneration
Sayan Ghosh, Archana Padmanabhan, Tanuja Vaidya, et al.
JCI Insight
|
June 22, 2023
Activated cGAS/STING signaling elicits endothelial cell senescence in early diabetic retinopathy
Haitao Liu, Sayan Ghosh, Tanuja Vaidya, et al.
Autophagy
|
April 27, 2022
Increased LCN2 (lipocalin 2) in the RPE decreases autophagy and activates inflammasome-ferroptosis processes in a mouse model of dry AMD
Urvi Gupta, Sayan Ghosh, Callen T Wallace, et al.
Aging Cell
|
February 17, 2025
Activated mTOR Signaling in the RPE Drives EMT, Autophagy, and Metabolic Disruption, Resulting in AMD-Like Pathology in Mice
Olivia Chowdhury, Sridhar Bammidi, Pooja Gautam, et al.
Nature Medicine
|
February 10, 2015
Aptamer-functionalized lipid nanoparticles targeting osteoblasts as a novel RNA interference-based bone anabolic strategy
Chao Liang, Baosheng Guo, Heng Wu, et al.
Page
of 42
Search research articles
Search
Showing results (401-410 of 416) with videos related to
Sort By:
Page
of 42
Nature Communications
|
October 13, 2022
Reducing Akt2 in retinal pigment epithelial cells causes a compensatory increase in Akt1 and attenuates diabetic retinopathy
Haitao Liu, Nadezda A Stepicheva, Sayan Ghosh, et al.
The Journal of Infectious Diseases
|
February 3, 2005
Function of HAb18G/CD147 in invasion of host cells by severe acute respiratory syndrome coronavirus
Zhinan Chen, Li Mi, Jing Xu, et al.
Theranostics
|
August 15, 2022
Therapeutic aptamer targeting sclerostin loop3 for promoting bone formation without increasing cardiovascular risk in osteogenesis imperfecta mice
Luyao Wang, Yuanyuan Yu, Shuaijian Ni, et al.
Communications Biology
|
July 9, 2021
βA3/A1-crystallin regulates apical polarity and EGFR endocytosis in retinal pigmented epithelial cells
Peng Shang, Nadezda Stepicheva, Kenneth Teel, et al.
Biomaterials
|
March 31, 2015
A delivery system specifically approaching bone resorption surfaces to facilitate therapeutic modulation of microRNAs in osteoclasts
Jin Liu, Lei Dang, Defang Li, et al.
Communications Biology
|
September 26, 2019
Neutrophils homing into the retina trigger pathology in early age-related macular degeneration
Sayan Ghosh, Archana Padmanabhan, Tanuja Vaidya, et al.
JCI Insight
|
June 22, 2023
Activated cGAS/STING signaling elicits endothelial cell senescence in early diabetic retinopathy
Haitao Liu, Sayan Ghosh, Tanuja Vaidya, et al.
Autophagy
|
April 27, 2022
Increased LCN2 (lipocalin 2) in the RPE decreases autophagy and activates inflammasome-ferroptosis processes in a mouse model of dry AMD
Urvi Gupta, Sayan Ghosh, Callen T Wallace, et al.
Aging Cell
|
February 17, 2025
Activated mTOR Signaling in the RPE Drives EMT, Autophagy, and Metabolic Disruption, Resulting in AMD-Like Pathology in Mice
Olivia Chowdhury, Sridhar Bammidi, Pooja Gautam, et al.
Nature Medicine
|
February 10, 2015
Aptamer-functionalized lipid nanoparticles targeting osteoblasts as a novel RNA interference-based bone anabolic strategy
Chao Liang, Baosheng Guo, Heng Wu, et al.
Page
of 42