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Updated: Feb 3, 2026

Author Spotlight: Transmitochondrial Cybrid Generation Using Cancer Cell Lines
Published on: March 17, 2023
New generation CPPs show distinct selectivity for cancer and noncancer cells
Felista L Tansi1, Margarita P Filatova2, Dmitri O Koroev2
1Department of Experimental Radiology, Institute of Diagnostic and Interventional Radiology, Jena University Hospital, Jena, Germany.
Abstract:
In the last three decades, many new cell-penetrating peptides (CPPs) were developed that exhibited enhanced cell selectivity. Thus, we aimed to validate the tumor cell selectivity of peptides from this new generation, namely fragments mini-crotamine and mini-maurocalcine. Both of these peptides are derived from venoms. Furthermore, we studied an analog of the classical CPP HIV-TAT(47-57) with alternating chirality of Arg residues. To allow covalent coupling of cargoes or fluorophores, a cysteine residue was introduced to the N-terminus of the synthesized peptides. The therapeutic antibody trastuzumab conjugated to different fluorescent dyes was used for internalization studies. Comparison of uptake efficiencies revealed that CPPs of the new generation are in contrast to MPG-peptides, nearly unable to internalize the noncovalently formed complexes with trastuzumab. Interestingly, the fluorescent derivative of the crotamine fragment was mainly observed in a subpopulation of breast cancer cells, whereas it was homogenously distributed in fibrosarcoma, colon cancer, and noncancerous endothelia cells. Thus, the fluorescent crotamine fragment reported herein is a potent theranostic tool for image-guided applications. This peptide can be used to pinpoint the level of heterogeneity present within tumors and aid in the generation of therapeutics that target heterogenic subpopulations.
Insights
New cell-penetrating peptides (CPPs) show limited uptake of therapeutic antibodies. However, a fluorescent crotamine fragment selectively targets breast cancer cells, offering potential for theranostic applications and personalized cancer therapy.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Cell-penetrating peptides (CPPs) facilitate cellular uptake of cargo.
- Recent CPPs show enhanced cell selectivity.
- Venom-derived peptides offer novel CPP properties.
Purpose of the Study:
- To evaluate the tumor cell selectivity of novel CPPs, including mini-crotamine and mini-maurocalcine fragments.
- To assess the internalization of therapeutic antibodies conjugated to these CPPs.
- To explore the theranostic potential of a fluorescent crotamine fragment.
Main Methods:
- Synthesis of CPPs with N-terminal cysteine for cargo conjugation.
- Conjugation of therapeutic antibody trastuzumab to fluorescent dyes.
- Internalization studies comparing CPPs with antibody complexes.
- Fluorescence microscopy to analyze peptide distribution in cancer cells and non-cancerous cells.
Main Results:
- Novel CPPs demonstrated poor internalization of non-covalently complexed trastuzumab.
- Fluorescent mini-crotamine selectively localized to a subpopulation of breast cancer cells.
- Homogeneous distribution of fluorescent mini-crotamine was observed in fibrosarcoma, colon cancer, and non-cancerous endothelial cells.
- CPPs derived from venoms show differential cell uptake.
Conclusions:
- The fluorescent crotamine fragment is a promising theranostic tool for image-guided cancer therapy.
- This peptide can identify tumor heterogeneity, aiding in targeted therapeutic development.
- Selective targeting of cancer cell subpopulations is achievable with novel CPPs.
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