Cargando…
Cell-penetrating Peptide-modified Targeted Drug-loaded Phase-transformation Lipid Nanoparticles Combined with Low-intensity Focused Ultrasound for Precision Theranostics against Hepatocellular Carcinoma
Objective: Prepare a multifunctional ultrasound molecular probe, hyaluronic acid-mediated cell-penetrating peptide-modified 10-hydroxycamptothecin-loaded phase-transformation lipid nanoparticles (HA/CPPs-10-HCPT-NPs), and to combine HA/CPPs-10-HCPT-NPs with low-intensity focused ultrasound (LIFU) fo...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Ivyspring International Publisher
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5858507/ https://www.ncbi.nlm.nih.gov/pubmed/29556363 http://dx.doi.org/10.7150/thno.22386 |
_version_ | 1783307673075187712 |
---|---|
author | Zhao, Hongyun Wu, Meng Zhu, Leilei Tian, Yi Wu, Mingxing Li, Yizhen Deng, Liming Jiang, Wei Shen, Wei Wang, Zhigang Mei, Zhechuan Li, Pan Ran, Haitao Zhou, Zhiyi Ren, Jianli |
author_facet | Zhao, Hongyun Wu, Meng Zhu, Leilei Tian, Yi Wu, Mingxing Li, Yizhen Deng, Liming Jiang, Wei Shen, Wei Wang, Zhigang Mei, Zhechuan Li, Pan Ran, Haitao Zhou, Zhiyi Ren, Jianli |
author_sort | Zhao, Hongyun |
collection | PubMed |
description | Objective: Prepare a multifunctional ultrasound molecular probe, hyaluronic acid-mediated cell-penetrating peptide-modified 10-hydroxycamptothecin-loaded phase-transformation lipid nanoparticles (HA/CPPs-10-HCPT-NPs), and to combine HA/CPPs-10-HCPT-NPs with low-intensity focused ultrasound (LIFU) for precision theranostics against hepatocellular carcinoma (HCC). Methods: HA/CPPs-10-HCPT-NPs were prepared using thin-film dispersion, ultrasound emulsification, and electrostatic effects. HA/CPPs-10-HCPT-NPs were characterized for particle size, zeta potential, encapsulation efficiency and drug-loading efficiency. In vitro, HA/CPPs-10-HCPT-NPs were tested for acoustic droplet vaporization (ADV) at different time points/acoustic intensities; the ability of HA/CPPs-10-HCPT-NPs to target SMMC-7721 cells was detected by confocal laser scanning microscopy (CLSM); the penetrating ability of CG-TAT-GC-modified NPs was verified by CLSM in a 3D multicellular tumor spheroid (MCTS) model; the effect of HA/CPPs-10-HCPT-NPs combined with LIFU on killing SMMC-7721 cells was measured by CCK-8 and flow cytometry. In vivo, the tumor-target efficiency of HA/CPPs-10-HCPT-NPs was evaluated by a small-animal fluorescence imaging system and CLSM; the enhanced ultrasound imaging efficiency of HA/CPPs-10-HCPT-NPs combined with LIFU was measured by an ultrasound imaging analyzer; the therapeutic effect of HA/CPPs-10-HCPT-NPs combined with LIFU was evaluated by tumor volume, tumor inhibition rate, and staining (hematoxylin and eosin (H & E), proliferating cell nuclear antigen (PCNA) and TUNEL). Results: Mean particle size and mean zeta potential of HA/CPPs-10-HCPT-NPs were 284.2±13.3 nm and - 16.55±1.50 mV, respectively. HA/CPPs-10-HCPT-NPs could bind to SMMC-7721 cells more readily than CPPs-10-HCPT-NPs. Penetration depth into 3D MCTS of HA/CPPs-10-HCPT-NPs was 2.76-fold larger than that of NPs without CG-TAT-GC. HA/CPPs-10-HCPT-NPs could enhance ultrasound imaging by undergoing ADV triggered by LIFU. HA/CPPs-10-HCPT-NPs+LIFU group demonstrated significantly higher efficiency of anti-proliferation and apoptosis percentage than all other groups. In mouse liver tumor xenografts, HA/CPPs-10-HCPT-NPs could target tumor sites and enhance ultrasound imaging under LIFU. HA/CPPs-10-HCPT-NPs+LIFU group had a significantly smaller tumor volume, lower proliferative index (PI), and higher tumor inhibition and apoptotic index (AI) than all other groups. Conclusions: Combined application of HA/CPPs-10-HCPT-NPs and LIFU should be a valuable and promising strategy for precise HCC theranostics. |
format | Online Article Text |
id | pubmed-5858507 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Ivyspring International Publisher |
record_format | MEDLINE/PubMed |
spelling | pubmed-58585072018-03-19 Cell-penetrating Peptide-modified Targeted Drug-loaded Phase-transformation Lipid Nanoparticles Combined with Low-intensity Focused Ultrasound for Precision Theranostics against Hepatocellular Carcinoma Zhao, Hongyun Wu, Meng Zhu, Leilei Tian, Yi Wu, Mingxing Li, Yizhen Deng, Liming Jiang, Wei Shen, Wei Wang, Zhigang Mei, Zhechuan Li, Pan Ran, Haitao Zhou, Zhiyi Ren, Jianli Theranostics Research Paper Objective: Prepare a multifunctional ultrasound molecular probe, hyaluronic acid-mediated cell-penetrating peptide-modified 10-hydroxycamptothecin-loaded phase-transformation lipid nanoparticles (HA/CPPs-10-HCPT-NPs), and to combine HA/CPPs-10-HCPT-NPs with low-intensity focused ultrasound (LIFU) for precision theranostics against hepatocellular carcinoma (HCC). Methods: HA/CPPs-10-HCPT-NPs were prepared using thin-film dispersion, ultrasound emulsification, and electrostatic effects. HA/CPPs-10-HCPT-NPs were characterized for particle size, zeta potential, encapsulation efficiency and drug-loading efficiency. In vitro, HA/CPPs-10-HCPT-NPs were tested for acoustic droplet vaporization (ADV) at different time points/acoustic intensities; the ability of HA/CPPs-10-HCPT-NPs to target SMMC-7721 cells was detected by confocal laser scanning microscopy (CLSM); the penetrating ability of CG-TAT-GC-modified NPs was verified by CLSM in a 3D multicellular tumor spheroid (MCTS) model; the effect of HA/CPPs-10-HCPT-NPs combined with LIFU on killing SMMC-7721 cells was measured by CCK-8 and flow cytometry. In vivo, the tumor-target efficiency of HA/CPPs-10-HCPT-NPs was evaluated by a small-animal fluorescence imaging system and CLSM; the enhanced ultrasound imaging efficiency of HA/CPPs-10-HCPT-NPs combined with LIFU was measured by an ultrasound imaging analyzer; the therapeutic effect of HA/CPPs-10-HCPT-NPs combined with LIFU was evaluated by tumor volume, tumor inhibition rate, and staining (hematoxylin and eosin (H & E), proliferating cell nuclear antigen (PCNA) and TUNEL). Results: Mean particle size and mean zeta potential of HA/CPPs-10-HCPT-NPs were 284.2±13.3 nm and - 16.55±1.50 mV, respectively. HA/CPPs-10-HCPT-NPs could bind to SMMC-7721 cells more readily than CPPs-10-HCPT-NPs. Penetration depth into 3D MCTS of HA/CPPs-10-HCPT-NPs was 2.76-fold larger than that of NPs without CG-TAT-GC. HA/CPPs-10-HCPT-NPs could enhance ultrasound imaging by undergoing ADV triggered by LIFU. HA/CPPs-10-HCPT-NPs+LIFU group demonstrated significantly higher efficiency of anti-proliferation and apoptosis percentage than all other groups. In mouse liver tumor xenografts, HA/CPPs-10-HCPT-NPs could target tumor sites and enhance ultrasound imaging under LIFU. HA/CPPs-10-HCPT-NPs+LIFU group had a significantly smaller tumor volume, lower proliferative index (PI), and higher tumor inhibition and apoptotic index (AI) than all other groups. Conclusions: Combined application of HA/CPPs-10-HCPT-NPs and LIFU should be a valuable and promising strategy for precise HCC theranostics. Ivyspring International Publisher 2018-02-14 /pmc/articles/PMC5858507/ /pubmed/29556363 http://dx.doi.org/10.7150/thno.22386 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions. |
spellingShingle | Research Paper Zhao, Hongyun Wu, Meng Zhu, Leilei Tian, Yi Wu, Mingxing Li, Yizhen Deng, Liming Jiang, Wei Shen, Wei Wang, Zhigang Mei, Zhechuan Li, Pan Ran, Haitao Zhou, Zhiyi Ren, Jianli Cell-penetrating Peptide-modified Targeted Drug-loaded Phase-transformation Lipid Nanoparticles Combined with Low-intensity Focused Ultrasound for Precision Theranostics against Hepatocellular Carcinoma |
title | Cell-penetrating Peptide-modified Targeted Drug-loaded Phase-transformation Lipid Nanoparticles Combined with Low-intensity Focused Ultrasound for Precision Theranostics against Hepatocellular Carcinoma |
title_full | Cell-penetrating Peptide-modified Targeted Drug-loaded Phase-transformation Lipid Nanoparticles Combined with Low-intensity Focused Ultrasound for Precision Theranostics against Hepatocellular Carcinoma |
title_fullStr | Cell-penetrating Peptide-modified Targeted Drug-loaded Phase-transformation Lipid Nanoparticles Combined with Low-intensity Focused Ultrasound for Precision Theranostics against Hepatocellular Carcinoma |
title_full_unstemmed | Cell-penetrating Peptide-modified Targeted Drug-loaded Phase-transformation Lipid Nanoparticles Combined with Low-intensity Focused Ultrasound for Precision Theranostics against Hepatocellular Carcinoma |
title_short | Cell-penetrating Peptide-modified Targeted Drug-loaded Phase-transformation Lipid Nanoparticles Combined with Low-intensity Focused Ultrasound for Precision Theranostics against Hepatocellular Carcinoma |
title_sort | cell-penetrating peptide-modified targeted drug-loaded phase-transformation lipid nanoparticles combined with low-intensity focused ultrasound for precision theranostics against hepatocellular carcinoma |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5858507/ https://www.ncbi.nlm.nih.gov/pubmed/29556363 http://dx.doi.org/10.7150/thno.22386 |
work_keys_str_mv | AT zhaohongyun cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT wumeng cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT zhuleilei cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT tianyi cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT wumingxing cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT liyizhen cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT dengliming cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT jiangwei cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT shenwei cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT wangzhigang cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT meizhechuan cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT lipan cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT ranhaitao cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT zhouzhiyi cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma AT renjianli cellpenetratingpeptidemodifiedtargeteddrugloadedphasetransformationlipidnanoparticlescombinedwithlowintensityfocusedultrasoundforprecisiontheranosticsagainsthepatocellularcarcinoma |