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Morphology-Dependent Cell Imaging by Using a Self-Assembled Diacetylene Peptide Amphiphile.

Hao JiangXiao-Yu HuStefanie SchlesigerMao LiEilo ZellermannShirley K KnauerCarsten Schmuck
Published in: Angewandte Chemie (International ed. in English) (2017)
Herein, a novel cationic peptide gemini amphiphile containing diacetylene motifs (DA2 P) is presented, which self-assembles into novel tadpole- and bola-shaped nanostructures at low concentrations and nanofibers at higher concentrations. Interestingly, the DA2 P assemblies can be polymerized into a fluorescent red phase but only during incubation with HeLa cells, most likely owing to the reorganization of the diacetylene chains of DA2 P upon interaction with the cell membrane. The red-fluorescent polymerized DA2 P assemblies can serve as a novel cell imaging probe. However, only vesicles, tadpole- and bola-shaped DA2 P assemblies can be translocated into HeLa cells, whereas the nanofiber-like DA2 P assemblies are trapped by the cell membranes and do not enter the cells. Hence, morphology-dependent cell imaging is observed.
Keyphrases
  • cell cycle arrest
  • induced apoptosis
  • single cell
  • cell therapy
  • high resolution
  • cell death
  • quantum dots
  • stem cells
  • endoplasmic reticulum stress
  • oxidative stress
  • mesenchymal stem cells
  • pi k akt
  • fluorescence imaging