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Updated: Jan 15, 2026

Constructing Thioether/Vinyl Sulfide-tethered Helical Peptides Via Photo-induced Thiol-ene/yne Hydrothiolation
Published on: August 1, 2018
Peptide Photoimmobilization by Thiol-ene Chemistry for Enhanced Neural Cell Adhesion
Yu-Liang Tsai1, Sotiria Moschopoulou-Triantafyllidou1, Jiyao Yu1
1Synthesis of Macromolecules, Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.
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Neurological diseases and neural injuries are prevalent but difficult to treat because of the complexity of the neural environment. To unravel this complexity, simple cell culture models are required that allow the study of individual aspects of the neural environment under defined conditions. In this work, we developed stable coatings of bioactive peptides via photoimmobilization through a thiol-ene reaction on glass substrates suitable for long-term culture of neural cells. The substrates were modified with thiol groups via chemical vapor deposition to obtain a homogeneous layer, followed by the immobilization of neural active peptides bearing vinyl groups. Subsequently, human neuroblastoma cells were shown to stably adhere to and grow on the modified substrates. The results establish a facile fabrication route for patternable and peptide-functionalized substrates for the culturing of neural cells without an additional antifouling treatment.

