3,131 to 3,140 of 11,080 Results
Nov 26, 2024 -
Replication Data for: AptaFluorescence: An aptamer-based fluorescent imaging protocol for biomolecule visualization
JPEG Image - 1.4 MB -
MD5: 887d84fdb9f275315b3bdaf83ea509df
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Nov 26, 2024 -
Replication Data for: AptaFluorescence: An aptamer-based fluorescent imaging protocol for biomolecule visualization
JPEG Image - 1.4 MB -
MD5: 9b376fec0330be73899dade704faf02d
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Nov 26, 2024 -
Replication Data for: AptaFluorescence: An aptamer-based fluorescent imaging protocol for biomolecule visualization
JPEG Image - 1.5 MB -
MD5: 4b7ab59c37c123a11143a045f1444875
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Nov 26, 2024
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Sep 30, 2024 - RUEDL Christiane
Ruedl, Christiane; Wu, Xiaoting, 2024, "Reducing microglial lipid load enhances β amyloid phagocytosis in an Alzheimer’s disease mouse model", https://doi.org/10.21979/N9/V4FHSQ, DR-NTU (Data), V1
Macrophages accumulate lipid droplets (LD) under stress and inflammatory conditions. Despite the presence of LD-loaded macrophages in many tissues, including the brain, their contribution to neurodegenerative disorders remains elusive. This study investigated the role of lipid me... |
Sep 30, 2024 -
Reducing microglial lipid load enhances β amyloid phagocytosis in an Alzheimer’s disease mouse model
7Z Archive - 390.1 MB -
MD5: 92acb47dfe45cff8b9948fdf2be9f9b0
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Sep 30, 2024 -
Reducing microglial lipid load enhances β amyloid phagocytosis in an Alzheimer’s disease mouse model
7Z Archive - 1.6 GB -
MD5: a8dfb4c9066b3e0be5174cebd23263fe
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Sep 30, 2024 -
Reducing microglial lipid load enhances β amyloid phagocytosis in an Alzheimer’s disease mouse model
Comma Separated Values - 39.3 KB -
MD5: 89efe74e3095fc467dbf784d283dcc4a
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Sep 30, 2024 -
Reducing microglial lipid load enhances β amyloid phagocytosis in an Alzheimer’s disease mouse model
7Z Archive - 904.2 MB -
MD5: 9101a7ee417b1f7c9f2785f996240917
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Sep 25, 2024 - Sreelakshmi CHERUVALLI
Regina, Viduthalai Rasheedkhan; Cheruvalli, Sreelakshmi; Kwok, Weihao; Chopra, Tarun; Rice, Scott, 2024, "Related data for: Decoding scalp health and microbiome dysbiosis", https://doi.org/10.21979/N9/A1SDY5, DR-NTU (Data), V1
Microbial colonization in hair follicles was investigated by direct imaging using scanning electron microscope. |
