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Phenolic Bis-styrylbenzo[c]‑1,2,5-thiadiazoles as Probes for Fluorescence Microscopy Mapping of Aβ Plaque Heterogeneity

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Figshare2019-02-13 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Phenolic_Bis-styrylbenzo_i_c_i_1_2_5-thiadiazoles_as_Probes_for_Fluorescence_Microscopy_Mapping_of_A_Plaque_Heterogeneity/7713233
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A fluorescent bis-styryl-benzothiadiazole (BTD) with carboxylic acid functional groups (X-34/Congo red analogue) showed lower binding affinity toward Aβ1-42 and Aβ1-40 fibrils than its neutral analogue. Hence, variable patterns of neutral OH-substituted bis-styryl-BTDs were generated. All bis-styryl-BTDs showed higher binding affinity to Aβ1-42 fibrils than to Aβ1-40 fibrils. The para-OH on the phenyl rings was beneficial for binding affinity while a meta-OH decreased the affinity. Differential staining of transgenic mouse Aβ amyloid plaque cores compared to peripheral coronas using neutral compared to anionic bis-styryl ligands indicate differential recognition of amyloid polymorphs. Hyperspectral imaging of transgenic mouse Aβ plaque stained with uncharged para-hydroxyl substituted bis-styryl-BTD implicated differences in binding site polarity of polymorphic amyloid plaque. Most properties of the corresponding bis-styryl-BTD were retained with a rigid alkyne linker rendering a probe insensitive to cis–trans isomerization. These new BTD-based ligands are promising probes for spectral imaging of different Aβ fibril polymorphs.
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2019-02-13
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