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Updated: Jun 22, 2025

Construction of Cyclic Cell-Penetrating Peptides for Enhanced Penetration of Biological Barriers
Published on: September 19, 2022
Poptosis or Peptide-Induced Transmembrane Pore Formation: A Novel Way to Kill Cancer Cells without Affecting Normal
Matthew R Pincus1, Miriam Silberstein2, Nitzan Zohar3
1Department of Pathology, SUNY Downstate Medical Center, 450 Clarkson Avenue, Brooklyn, NY 11203, USA.
Abstract:
Recent advances in cancer treatment like personalized chemotherapy and immunotherapy are aimed at tumors that meet certain specifications. In this review, we describe a new approach to general cancer treatment, termed peptide-induced poptosis, in which specific peptides, e.g., PNC-27 and its shorter analogue, PNC-28, that contain the segment of the p53 transactivating 12-26 domain that bind to HDM-2 in its 1-109 domain, bind to HDM-2 in the membranes of cancer cells, resulting in transmembrane pore formation and the rapid extrusion of cancer cell contents, i.e., tumor cell necrosis. These peptides cause tumor cell necrosis of a wide variety of solid tissue and hematopoietic tumors but have no effect on the viability and growth of normal cells since they express at most low levels of membrane-bound HDM-2. They have been found to successfully treat a highly metastatic pancreatic tumor as well as stem-cell-enriched human acute myelogenous leukemias in nude mice, with no evidence of off-target effects. These peptides also are cytotoxic to chemotherapy-resistant cancers and to primary tumors. We performed high-resolution scanning immuno-electron microscopy and visualized the pores in cancer cells induced by PNC-27. This peptide forms 1:1 complexes with HDM-2 in a temperature-independent step, followed by dimerization of these complexes to form transmembrane channels in a highly temperature-dependent step parallel to the mode of action of other membranolytic but less specific agents like streptolysin. These peptides therefore may be effective as general anti-cancer agents.
Insights
New peptides like PNC-27 induce tumor cell necrosis by forming pores in cancer cell membranes. This novel peptide-induced apoptosis approach shows promise as a general cancer treatment, sparing normal cells.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Current cancer therapies like chemotherapy and immunotherapy target specific tumor characteristics.
- A new general cancer treatment strategy, peptide-induced apoptosis, is emerging.
Purpose of the Study:
- To review the mechanism and potential of peptide-induced apoptosis as a broad-spectrum cancer treatment.
- To highlight the efficacy of specific peptides, PNC-27 and PNC-28, in cancer cell necrosis.
Main Methods:
- Describing the binding of peptides (PNC-27, PNC-28) to HDM-2 in cancer cell membranes.
- Utilizing high-resolution scanning immuno-electron microscopy to visualize induced pores.
- Investigating the temperature-dependent and independent steps of pore formation.
Main Results:
- PNC-27 and PNC-28 induce necrosis in various solid and hematopoietic tumors by forming transmembrane pores.
- Normal cells remain unaffected due to low membrane-bound HDM-2 levels.
- Successful treatment of metastatic pancreatic tumors and acute myelogenous leukemias in mice without off-target effects was observed.
- Cytotoxicity against chemotherapy-resistant and primary tumors was demonstrated.
Conclusions:
- Peptide-induced apoptosis, via peptides like PNC-27, offers a novel mechanism for general cancer treatment.
- The selective targeting of cancer cells presents a promising therapeutic strategy with minimal impact on normal tissues.
- Further research into these peptides may lead to effective general anti-cancer agents.
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