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Construction of Cyclic Cell-Penetrating Peptides for Enhanced Penetration of Biological Barriers
Published on: September 19, 2022
Cell-penetrating peptides in oncologic pharmacotherapy: A review
Nuno Vale1, Diana Duarte2, Sara Silva2
1OncoPharma Research Group, Center for Health Technology and Services Research (CINTESIS), Porto, Portugal; Faculty of Medicine, University of Porto, Porto, Portugal.
Abstract:
Cancer is the second leading cause of death in the world and its treatment is extremely challenging, mainly due to its complexity. Cell-Penetrating Peptides (CPPs) are peptides that can transport into the cell a wide variety of biologically active conjugates (or cargoes), and are, therefore, promising in the treatment and in the diagnosis of several types of cancer. Some notable examples are TAT and Penetratin, capable of penetrating the central nervous system (CNS) and, therefore, acting in cancers of this system, such as Glioblastoma Multiforme (GBM). These above-mentioned peptides, conjugated with traditional chemotherapeutic such as Doxorubicin (DOX) and Paclitaxel (PTX), have also been shown to induce apoptosis of breast and liver cancer cells, as well as in lung cancer cells, respectively. In other cancers, such as esophageal cancer, the attachment of Magainin 2 (MG2) to Bombesin (MG2B), another CPP, led to pronounced anticancer effects. Other examples are CopA3, that selectively decreased the viability of gastric cancer cells, and the CPP p28. Furthermore, in preclinical tests, the anti-tumor efficacy of this peptide was evaluated on human breast cancer, prostate cancer, ovarian cancer, and melanoma cells in vitro, leading to high expression of p53 and promoting cell cycle arrest. Despite the numerous in vitro and in vivo studies with promising results, and the increasing number of clinical trials using CPPs, few treatments reach the expected clinical efficacy. Usually, their clinical application is limited by its poor aqueous solubility, immunogenicity issues and dose-limiting toxicity. This review describes the most recent advances and innovations in the use of CPPs in several types of cancer, highlighting their crucial importance for various purposes, from therapeutic to diagnosis. Further clinical trials with these peptides are warranted to examine its effects on various types of cancer.
Insights
Cell-Penetrating Peptides (CPPs) show promise for cancer treatment and diagnosis by delivering drugs into cells. Despite potential, clinical efficacy is limited by solubility and toxicity, necessitating further trials.
Area of Science:
- Oncology
- Molecular Biology
- Drug Delivery
Background:
- Cancer remains a leading cause of death, driving research into novel therapeutic strategies.
- Cell-Penetrating Peptides (CPPs) offer a promising approach for targeted cancer therapy and diagnosis.
- CPPs facilitate the intracellular delivery of various therapeutic payloads.
Purpose of the Study:
- To review recent advances in the application of CPPs for diverse cancer types.
- To highlight the therapeutic and diagnostic potential of CPPs in oncology.
- To discuss challenges and future directions for CPP-based cancer treatments.
Main Methods:
- Literature review of preclinical and clinical studies involving CPPs in cancer.
- Analysis of CPPs' mechanisms of action and cargo delivery capabilities.
- Examination of specific CPP examples (e.g., TAT, Penetratin, MG2B, p28) and their conjugates.
Main Results:
- CPPs like TAT and Penetratin show potential in treating central nervous system cancers (e.g., Glioblastoma Multiforme).
- CPP-drug conjugates (e.g., DOX, PTX) demonstrate efficacy against breast, liver, and lung cancers.
- Other CPPs (e.g., MG2B, CopA3, p28) exhibit selective cytotoxicity in esophageal, gastric, breast, prostate, ovarian cancers, and melanoma.
Conclusions:
- CPPs are crucial tools for cancer therapy and diagnosis, enabling targeted drug delivery.
- Despite promising preclinical data, clinical translation is hindered by poor solubility, immunogenicity, and toxicity.
- Further clinical trials are essential to fully realize the therapeutic potential of CPPs in various cancers.
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