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Tumor-homing peptide and its utility for advanced cancer medicine

期刊

CANCER SCIENCE
卷 112, 期 6, 页码 2118-2125

出版社

WILEY
DOI: 10.1111/cas.14909

关键词

delivery; diagnostics; penetration; peptide; therapeutics

类别

资金

  1. Japan Agency for Medical Research and Development (AMED) [JP20cm0106208h0005]

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Cell-penetrating peptides, including tumor-homing peptides, are drawing attention as potential tools for specific delivery systems in cancer medicine. Tumor-homing peptides offer biological safety, rapid cellular uptake, and ease of modification, making them promising for various applications such as imaging diagnostics and therapeutics in precision cancer medicine.
Cell-penetrating peptides, such as antibodies, have gained great attention as tools for the development of specific delivery systems for payloads, which might be applied as non-invasive carriers in vivo. Among these, tumor-homing peptides recently have been studied for use in tumor medicine. Tumor-homing peptides are oligopeptides, usually consisting of 30 or fewer amino acids that are efficiently and specifically incorporated into tumor cells, suggesting their potential use in establishing novel non-invasive tumor imaging systems for diagnostic and therapeutic applications. Here, we briefly introduce the biological characteristics of our tumor-homing peptides, focusing especially on those developed using a random peptide library constructed using mRNA display technology. The advantage of the tumor-homing peptides is their biological safety, given that these molecules do not show significant cytotoxicity against non-neoplastic cells; lack serious antigenicity, which alternatively might evoke unfavorable immune responses and inflammation in vivo; and are rapidly incorporated into target cells/tissues, with rates exceeding those seen for antibodies. Given their small size, tumor-homing peptides also are easy to modify and redesign. Based on these merits, tumor-homing peptides are expected to find wide application in various aspects of tumor medicine, including imaging diagnostics (eg, with dye-conjugated probes for direct visualization of invasive/metastatic tumor lesions in vivo) and therapeutics (eg, using peptide-drug conjugates [PDCs] for tumor targeting). Although further evidence will be required to demonstrate their practical utility, tumor-homing peptides are expected to show great potential as a next-generation bio-tool contributing to precision medicine for cancer patients.

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