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April 3, 2026Inorganic Chemistry19 citations

Schiff Base-Wrapped Co, Zn-Based Clusters with Hierarchical Chiral Structures for Therapeutic Application in Parkinson’s Disease

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LMLing-Cui MengJCJie ChenLXLu-Yao Xu

Key Points

  • The aim is to design and evaluate chiral cobalt and zinc-based clusters for therapeutic applications in Parkinson's disease.
  • Designed and synthesized R/S-Co4Zn5L10 chiral helix with specific functions
  • Assessed biocompatibility and bioactivity of enantiomers
  • Evaluated effects on dopaminergic neuron loss and locomotion deficits in nematodes
  • R-Co4Zn5L10 effectively restores dopaminergic neuron loss in nematodes
  • Improves dopamine-dependent locomotion deficits
  • Inhibits α-synuclein aggregation during nematode development

Abstract

Hierarchical chiral structures have wide applications in materials science and biomedicine. The synthesis of multilevel chiral structures with specific functions is a key issue. In this work, we have successfully designed and synthesized R/S-Co4Zn5L10 (L = C16H15O3N) quinary chiral helix, in which the chirality transfers from the chiral carbon atoms of ligands to octahedral stereochirality, then to a single helix, further to a supramolecular helical chain, and ultimately to the chiral crystal structure. R/S-Co4Zn5L10 consists of two chiral building units, R/S-Zn3L2 and R/S-CoL2. R/S-CoL2 can also agglomerate into R/S-Co4L6. The evaluation of the biocompatibility and bioactivity for three pairs of enantiomers reveals that R-Co4Zn5L10 and R-CoL2 effectively restore dopaminergic neuron loss and improve dopamine-dependent locomotion deficits in nematodes. Additionally, these compounds inhibit α-synuclein aggregation during nematode development. These findings suggest that elaborately designed cobalt-based chiral structures have potential as novel therapeutic candidates for Parkinson's disease.

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Cite This Study

Meng et al. (2026) studied this question.

synapsesocial.com/papers/69cf5d4e5a333a821460af3ahttps://doi.org/10.1021/acs.inorgchem.6c00360
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