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Updated: Oct 6, 2025

Synthesis of an In vivo MRI-detectable Apoptosis Probe
Published on: July 31, 2012
A naphthalimide-based peptide conjugate for concurrent imaging and apoptosis induction in cancer cells by utilizing
Narendra Singh1, Swati Sharma1, Ramesh Singh2
1Department of Chemistry and Centre for Nanosciences, Indian Institute of Technology Kanpur U.P. 208016 India sverma@iitk.ac.in.
Abstract:
The excessive production of endogenous hydrogen sulfide (H2S) in cancer cells leads to enhanced tumor growth and metastasis. On the other hand, decreased endogenous H2S suppresses tumor growth. The reported approaches for inhibiting tumor growth are selective silencing of the tumor-promoting genes and pharmacological inhibition of these proteins. To enhance the antitumor efficacy of frontline chemotherapeutic agents, herein, we synthesized a highly sensitive endogenous H2S responsive fluorescent probe, i.e., a hydrogen sulfide-sensing naphthalimide-based peptide conjugate (HSNPc), which showed selective inhibition of proliferation of cancer cells due to apoptosis induction. Furthermore, HSNPc suppressed the glycolytic reserve, a critical energy source for the proliferation of cancer cells. HSNPc also decreased the Young's modulus of HeLa cells compared to the control cells, which demonstrated a direct relation between cell apoptosis and cell stiffness. Taken together, we demonstrated the dual function of detection and killing of cancer cells by HSNPc that can be likened to a theranostic role.
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