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Hyaluronan-binding peptide for targeting peritoneal carcinomatosis

Peritoneal carcinomatosis results from dissemination of solid tumors in the peritoneal cavity, and is a common site of metastasis in patients with carcinomas of gastrointestinal or gynecological origin. Peritoneal carcinomatosis treatment is challenging as poorly vascularized, disseminated peritonea...

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Autores principales: Ikemoto, Hideki, Lingasamy, Prakash, Anton Willmore, Anne-Mari, Hunt, Hedi, Kurm, Kaarel, Tammik, Olav, Scodeller, Pablo, Simón-Gracia, Lorena, Kotamraju, Venkata Ramana, Lowy, Andrew M, Sugahara, Kazuki N, Teesalu, Tambet
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5697747/
https://www.ncbi.nlm.nih.gov/pubmed/28468593
http://dx.doi.org/10.1177/1010428317701628
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author Ikemoto, Hideki
Lingasamy, Prakash
Anton Willmore, Anne-Mari
Hunt, Hedi
Kurm, Kaarel
Tammik, Olav
Scodeller, Pablo
Simón-Gracia, Lorena
Kotamraju, Venkata Ramana
Lowy, Andrew M
Sugahara, Kazuki N
Teesalu, Tambet
author_facet Ikemoto, Hideki
Lingasamy, Prakash
Anton Willmore, Anne-Mari
Hunt, Hedi
Kurm, Kaarel
Tammik, Olav
Scodeller, Pablo
Simón-Gracia, Lorena
Kotamraju, Venkata Ramana
Lowy, Andrew M
Sugahara, Kazuki N
Teesalu, Tambet
author_sort Ikemoto, Hideki
collection PubMed
description Peritoneal carcinomatosis results from dissemination of solid tumors in the peritoneal cavity, and is a common site of metastasis in patients with carcinomas of gastrointestinal or gynecological origin. Peritoneal carcinomatosis treatment is challenging as poorly vascularized, disseminated peritoneal micro-tumors are shielded from systemic anticancer drugs and drive tumor regrowth. Here, we describe the identification and validation of a tumor homing peptide CKRDLSRRC (IP3), which upon intraperitoneal administration delivers payloads to peritoneal metastases. IP3 peptide was identified by in vivo phage display on a mouse model of peritoneal carcinomatosis of gastric origin (MKN-45P), using high-throughput sequencing of the peptide-encoding region of phage genome as a readout. The IP3 peptide contains a hyaluronan-binding motif, and fluorescein-labeled IP3 peptide bound to immobilized hyaluronan in vitro. After intraperitoneal administration in mice bearing peritoneal metastases of gastric and colon origin, IP3 peptide homed robustly to macrophage-rich regions in peritoneal tumors, including poorly vascularized micro-tumors. Finally, we show that IP3 functionalization conferred silver nanoparticles the ability to home to peritoneal tumors of gastric and colonic origin, suggesting that it could facilitate targeted delivery of nanoscale payloads to peritoneal tumors. Collectively, our study suggests that the IP3 peptide has potential applications for targeting drugs, nanoparticles, and imaging agents to peritoneal tumors.
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spelling pubmed-56977472017-11-21 Hyaluronan-binding peptide for targeting peritoneal carcinomatosis Ikemoto, Hideki Lingasamy, Prakash Anton Willmore, Anne-Mari Hunt, Hedi Kurm, Kaarel Tammik, Olav Scodeller, Pablo Simón-Gracia, Lorena Kotamraju, Venkata Ramana Lowy, Andrew M Sugahara, Kazuki N Teesalu, Tambet Tumour Biol Article Peritoneal carcinomatosis results from dissemination of solid tumors in the peritoneal cavity, and is a common site of metastasis in patients with carcinomas of gastrointestinal or gynecological origin. Peritoneal carcinomatosis treatment is challenging as poorly vascularized, disseminated peritoneal micro-tumors are shielded from systemic anticancer drugs and drive tumor regrowth. Here, we describe the identification and validation of a tumor homing peptide CKRDLSRRC (IP3), which upon intraperitoneal administration delivers payloads to peritoneal metastases. IP3 peptide was identified by in vivo phage display on a mouse model of peritoneal carcinomatosis of gastric origin (MKN-45P), using high-throughput sequencing of the peptide-encoding region of phage genome as a readout. The IP3 peptide contains a hyaluronan-binding motif, and fluorescein-labeled IP3 peptide bound to immobilized hyaluronan in vitro. After intraperitoneal administration in mice bearing peritoneal metastases of gastric and colon origin, IP3 peptide homed robustly to macrophage-rich regions in peritoneal tumors, including poorly vascularized micro-tumors. Finally, we show that IP3 functionalization conferred silver nanoparticles the ability to home to peritoneal tumors of gastric and colonic origin, suggesting that it could facilitate targeted delivery of nanoscale payloads to peritoneal tumors. Collectively, our study suggests that the IP3 peptide has potential applications for targeting drugs, nanoparticles, and imaging agents to peritoneal tumors. 2017-05 /pmc/articles/PMC5697747/ /pubmed/28468593 http://dx.doi.org/10.1177/1010428317701628 Text en http://www.creativecommons.org/licenses/by-nc/4.0/ Creative Commons Non Commercial CC BY-NC: This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (http://www.creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Article
Ikemoto, Hideki
Lingasamy, Prakash
Anton Willmore, Anne-Mari
Hunt, Hedi
Kurm, Kaarel
Tammik, Olav
Scodeller, Pablo
Simón-Gracia, Lorena
Kotamraju, Venkata Ramana
Lowy, Andrew M
Sugahara, Kazuki N
Teesalu, Tambet
Hyaluronan-binding peptide for targeting peritoneal carcinomatosis
title Hyaluronan-binding peptide for targeting peritoneal carcinomatosis
title_full Hyaluronan-binding peptide for targeting peritoneal carcinomatosis
title_fullStr Hyaluronan-binding peptide for targeting peritoneal carcinomatosis
title_full_unstemmed Hyaluronan-binding peptide for targeting peritoneal carcinomatosis
title_short Hyaluronan-binding peptide for targeting peritoneal carcinomatosis
title_sort hyaluronan-binding peptide for targeting peritoneal carcinomatosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5697747/
https://www.ncbi.nlm.nih.gov/pubmed/28468593
http://dx.doi.org/10.1177/1010428317701628
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