Highly sensitive chemiluminescence imaging of misfolded proteins in neurodegenerative models
Zhu, B.; Van, R.; Wang, H.; Kuang, S.; Jia, Y.; Leon, E. C.; Yang, F.; Zhang, J.; Yang, J.; Hong, H.; Fleur Marie, L.; Yu, A.; Wang, J.; Tanzi, R. E.; Zhang, C. M.; Mao, X. M.; Shao, Y.; Ran, C.
Show abstract
Visualizing misfolded proteins would greatly facilitate early diagnosis, etiology elucidation, and therapy monitoring of neurodegeneration. Although several probes have been reported, simple and versatile detection in vivo is still challenging. We demonstrated that both generic and precise detection of misfolded proteins could be achieved with a chemiluminescence probe, ADLumin-1. For the generic aspect, ADLumin-1 was highly sensitive to various misfolded proteins, showing up to 127.73-fold higher signal-to-noise ratio than Thioflavin T. ADLumin-1 could also non-invasively visualize misfolded proteins in mouse models of Parkinsons disease, Alzheimers disease and amyotrophic lateral sclerosis. Furthermore, ADLumin-1 displayed precise detection value for -synuclein by combining with PMCA in vitro and bioorthogonal ChRET imaging technology in vivo. ADLumin-1 can selectively detect -synuclein in CSF at the femtomolar level and enables in situ monitoring of misfolded -synuclein in vivo. Combining generality and precision, our findings could be widely applied in preclinical and clinical studies of neurodegenerative diseases. TeaserA highly sensitive chemiluminescence probe enables both generic and precise detection of various misfolded proteins
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Phosphorylation and O-GlcNAcylation at the same alpha-synuclein site generate distinct fibril structures 94%
- NanoPlex: a universal strategy for fluorescence microscopy multiplexing using nanobodies with erasable signals 94%
- Silicon-rhodamine-enabled Identification (SeeID) for Near-Infrared Light Controlled Proximity Labeling In Vitro and In Vivo 94%
Similar papers in this journal
- Emergence of stealth polymorphs that escape α-synuclein amyloid monitoring, take over and acutely spread in neurons 95%
- An Omni-Mesoscope for multiscale high-throughput quantitative phase imaging of cellular dynamics and high-content molecular characterization 93%
- Small molecule sequestration of amyloid-β as a drug discovery strategy for Alzheimer's disease 92%
Similar papers in this journal
- Characterization and super-resolution imaging of small tau aggregates in human samples. 94%
- Site-specific hyperphosphorylation of tau inhibits its fibrillization in vitro, blocks its seeding capacity in cells, and disrupts its microtubule binding; Implications for the native state stabilization of tau 94%
- SiR-XActin: A fluorescent probe for imaging actin dynamics in live cells 92%
Similar papers in this journal
- Antibodies Raised Against an Aβ Oligomer Mimic Recognize Pathological Features in Alzheimer's Disease and Associated Amyloid-Disease Brain Tissue 94%
- Live-Cell Imaging and Quantification of PolyQ Aggregates by Stimulated Raman Scattering of Selective Deuterium Labeling 94%
- Genetically encoded green fluorescent biosensors for monitoring UDP-GlcNAc in live cells 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.