AI Article Synopsis

  • Alzheimer's disease (AD) is a complex neurodegenerative disorder marked by β-amyloid plaques, tau protein tangles, and neuroinflammation, with specific tau isoforms, particularly 2N4R, playing a crucial role in its toxicity.
  • A drug discovery project is investigating the anti-aggregation effects of 17 compounds called 4- or 5-aminoindole carboxamides on the toxic 2N4R tau isoform, with initial findings showing that 4-aminoindole derivatives have superior anti-fibrillar activity.
  • Promising results from the study indicate that certain compounds successfully reduced the formation of toxic protein aggregates in neuroblastoma cells, suggesting potential for further development as treatments for AD.

Article Abstract

Alzheimer's disease (AD) is a multifactorial, chronic neurodegenerative disease characterized by the presence of extracellular β-amyloid (Aβ) plaques, intraneuronal neurofibrillary tangles (NFTs), activated microglial cells, and an inflammatory state (involving reactive oxygen species production) in the brain. NFTs are comprised of misfolded and hyperphosphorylated forms of the microtubule-binding protein tau. Interestingly, the trimeric form of the 2N4R splice isoform of tau has been found to be more toxic than the trimeric 1N4R isoform in neuron precursor cells. Few drug discovery programs have focused on specific tau isoforms. The present drug discovery project is centered on the anti-aggregation effect of a series of seventeen 4- or 5-aminoindole carboxamides on the 2N4R isoform of tau. The selection of the best compounds was performed using α-synuclein (α-syn). The anti-oligomer and -fibril activities of newly synthesized aminoindole carboxamide derivatives were evaluated with biophysical methods, such as thioflavin T fluorescence assays, photo-induced cross-linking of unmodified proteins, and transmission electron microscopy. To evaluate the reduction of inclusions and cytoprotective effects, M17D neuroblastoma cells expressing inclusion-forming α-syn were treated with the best amide representatives. The 4-aminoindole carboxamide derivatives exhibited a better anti-fibrillar activity compared to their 5-aminoindole counterparts. The amide derivatives , , and exerted anti-oligomer and anti-fibril activities on α-syn and the 2N4R isoform of tau. At a concentration of 40 μM, compound reduced inclusion formation in M17D neuroblastoma cells expressing inclusion-prone αSynuclein3K::YFP. Our results demonstrate the potential of 4-aminoindole carboxamide derivatives with regard to inhibiting the oligomer formation of α-syn and tau (2N4R isoform) for further optimization prior to pre-clinical studies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10284320PMC
http://dx.doi.org/10.1016/j.rechem.2023.100938DOI Listing

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