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Furin-Mediated Intracellular Self-Assembly of Olsalazine Nanoparticles for Enhanced Magnetic Resonance Imaging and Tumor Therapy

One strategy to enhance tumor retention of imaging agents or anti-cancer drugs is rational design of probes that undergo a tumor-specific enzymatic reaction which prevents them from being pumped out of the cell. Here, the anticancer agent olsalazine (Olsa) was conjugated to the cell-penetrating pept...

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Autores principales: Yuan, Yue, Zhang, Jia, Qi, Xiaoliang, Li, Shuoguo, Liu, Guanshu, Siddhanta, Soumik, Barman, Ishan, Song, Xiaolei, McMahon, Michael T., Bulte, Jeff W.M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6872935/
https://www.ncbi.nlm.nih.gov/pubmed/31636420
http://dx.doi.org/10.1038/s41563-019-0503-4
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author Yuan, Yue
Zhang, Jia
Qi, Xiaoliang
Li, Shuoguo
Liu, Guanshu
Siddhanta, Soumik
Barman, Ishan
Song, Xiaolei
McMahon, Michael T.
Bulte, Jeff W.M.
author_facet Yuan, Yue
Zhang, Jia
Qi, Xiaoliang
Li, Shuoguo
Liu, Guanshu
Siddhanta, Soumik
Barman, Ishan
Song, Xiaolei
McMahon, Michael T.
Bulte, Jeff W.M.
author_sort Yuan, Yue
collection PubMed
description One strategy to enhance tumor retention of imaging agents or anti-cancer drugs is rational design of probes that undergo a tumor-specific enzymatic reaction which prevents them from being pumped out of the cell. Here, the anticancer agent olsalazine (Olsa) was conjugated to the cell-penetrating peptide RVRR. Taking advantage of a biologically compatible condensation reaction, single Olsa-RVRR molecules were self-assembled into large intracellular nanoparticles (Olsa-NPs) by the tumor-associated enzyme furin. Both Olsa-RVRR and Olsa-NPs could be readily detected with chemical exchange saturation transfer magnetic resonance imaging (CEST MRI) by virtue of exchangeable olsalazine hydroxyl protons. In vivo studies using HCT116 and LoVo murine xenografts showed that the OlsaCEST signal and anti-tumor therapeutic effect were 6.5-fold and 5.2-fold increased, respectively, compared to olsalazine without RVRR, with an excellent “theranostic correlation” (R(2)=0.97) between the imaging signal and therapeutic response (normalized tumor size). This furin-targeted MRI-detectable platform has potential for imaging tumor aggressiveness, drug accumulation, and therapeutic response.
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spelling pubmed-68729352020-04-21 Furin-Mediated Intracellular Self-Assembly of Olsalazine Nanoparticles for Enhanced Magnetic Resonance Imaging and Tumor Therapy Yuan, Yue Zhang, Jia Qi, Xiaoliang Li, Shuoguo Liu, Guanshu Siddhanta, Soumik Barman, Ishan Song, Xiaolei McMahon, Michael T. Bulte, Jeff W.M. Nat Mater Article One strategy to enhance tumor retention of imaging agents or anti-cancer drugs is rational design of probes that undergo a tumor-specific enzymatic reaction which prevents them from being pumped out of the cell. Here, the anticancer agent olsalazine (Olsa) was conjugated to the cell-penetrating peptide RVRR. Taking advantage of a biologically compatible condensation reaction, single Olsa-RVRR molecules were self-assembled into large intracellular nanoparticles (Olsa-NPs) by the tumor-associated enzyme furin. Both Olsa-RVRR and Olsa-NPs could be readily detected with chemical exchange saturation transfer magnetic resonance imaging (CEST MRI) by virtue of exchangeable olsalazine hydroxyl protons. In vivo studies using HCT116 and LoVo murine xenografts showed that the OlsaCEST signal and anti-tumor therapeutic effect were 6.5-fold and 5.2-fold increased, respectively, compared to olsalazine without RVRR, with an excellent “theranostic correlation” (R(2)=0.97) between the imaging signal and therapeutic response (normalized tumor size). This furin-targeted MRI-detectable platform has potential for imaging tumor aggressiveness, drug accumulation, and therapeutic response. 2019-10-21 2019-12 /pmc/articles/PMC6872935/ /pubmed/31636420 http://dx.doi.org/10.1038/s41563-019-0503-4 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Yuan, Yue
Zhang, Jia
Qi, Xiaoliang
Li, Shuoguo
Liu, Guanshu
Siddhanta, Soumik
Barman, Ishan
Song, Xiaolei
McMahon, Michael T.
Bulte, Jeff W.M.
Furin-Mediated Intracellular Self-Assembly of Olsalazine Nanoparticles for Enhanced Magnetic Resonance Imaging and Tumor Therapy
title Furin-Mediated Intracellular Self-Assembly of Olsalazine Nanoparticles for Enhanced Magnetic Resonance Imaging and Tumor Therapy
title_full Furin-Mediated Intracellular Self-Assembly of Olsalazine Nanoparticles for Enhanced Magnetic Resonance Imaging and Tumor Therapy
title_fullStr Furin-Mediated Intracellular Self-Assembly of Olsalazine Nanoparticles for Enhanced Magnetic Resonance Imaging and Tumor Therapy
title_full_unstemmed Furin-Mediated Intracellular Self-Assembly of Olsalazine Nanoparticles for Enhanced Magnetic Resonance Imaging and Tumor Therapy
title_short Furin-Mediated Intracellular Self-Assembly of Olsalazine Nanoparticles for Enhanced Magnetic Resonance Imaging and Tumor Therapy
title_sort furin-mediated intracellular self-assembly of olsalazine nanoparticles for enhanced magnetic resonance imaging and tumor therapy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6872935/
https://www.ncbi.nlm.nih.gov/pubmed/31636420
http://dx.doi.org/10.1038/s41563-019-0503-4
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