Cargando…

Aptamer-modified DNA tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy

UiO-66 metal–organic framework nanoparticles (NMOFs) gated by aptamer-functionalized DNA tetrahedra provide superior biomarker-responsive hybrid nano-carriers for biomedical applications. Hybrid nano-carriers consisting of ATP-aptamer or VEGF-aptamer functionalized tetrahedra-gated NMOFs are loaded...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Pu, Fischer, Amit, Ouyang, Yu, Wang, Jianbang, Sohn, Yang Sung, Nechushtai, Rachel, Pikarsky, Eli, Fan, Chunhai, Willner, Itamar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580039/
https://www.ncbi.nlm.nih.gov/pubmed/34880998
http://dx.doi.org/10.1039/d1sc04229g
_version_ 1784596534125395968
author Zhang, Pu
Fischer, Amit
Ouyang, Yu
Wang, Jianbang
Sohn, Yang Sung
Nechushtai, Rachel
Pikarsky, Eli
Fan, Chunhai
Willner, Itamar
author_facet Zhang, Pu
Fischer, Amit
Ouyang, Yu
Wang, Jianbang
Sohn, Yang Sung
Nechushtai, Rachel
Pikarsky, Eli
Fan, Chunhai
Willner, Itamar
author_sort Zhang, Pu
collection PubMed
description UiO-66 metal–organic framework nanoparticles (NMOFs) gated by aptamer-functionalized DNA tetrahedra provide superior biomarker-responsive hybrid nano-carriers for biomedical applications. Hybrid nano-carriers consisting of ATP-aptamer or VEGF-aptamer functionalized tetrahedra-gated NMOFs are loaded with the chemotherapeutic drug, doxorubicin (DOX). In the presence of ATP or VEGF, both abundant in cancer cells, the tetrahedra-gated NMOFs are unlocked to release the drug. Enhanced and selective permeation of the DOX-loaded ATP/VEGF-responsive tetrahedra-gated NMOFs into MDA-MB-231 breast cancer cells as compared to the reference ATP/VEGF-responsive duplex-gated NMOFs or non-malignant MCF-10A epithelial breast cells is observed. This results in enhanced and selective cytotoxicity of the tetrahedra-gated DOX-loaded NMOFs toward the malignant cells. Additional nano-carriers, consisting of photosensitizer Zn(ii) protoporphyrin IX (Zn(ii)-PPIX)-loaded VEGF-responsive tetrahedra-gated NMOFs, are introduced. The VEGF-triggered unlocking of the NMOFs yields separated G-quadruplex-VEGF aptamer complexes conjugated to the tetrahedra, resulting in the release of loaded Zn(ii)-PPIX. Association of the released Zn(ii)-PPIX to the G-quadruplex structures generates highly fluorescent supramolecular Zn(ii)-PPIX/G-quadruplex VEGF aptamer-tetrahedra structures. The efficient and selective generation of the highly fluorescent Zn(ii)-PPIX/G-quadruplex VEGF aptamer-tetrahedra nanostructures in malignant cells allows the light-induced photosensitized generation of reactive oxygen species (ROS), leading to high-efficacy PDT treatment of the malignant cells.
format Online
Article
Text
id pubmed-8580039
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-85800392021-12-07 Aptamer-modified DNA tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy Zhang, Pu Fischer, Amit Ouyang, Yu Wang, Jianbang Sohn, Yang Sung Nechushtai, Rachel Pikarsky, Eli Fan, Chunhai Willner, Itamar Chem Sci Chemistry UiO-66 metal–organic framework nanoparticles (NMOFs) gated by aptamer-functionalized DNA tetrahedra provide superior biomarker-responsive hybrid nano-carriers for biomedical applications. Hybrid nano-carriers consisting of ATP-aptamer or VEGF-aptamer functionalized tetrahedra-gated NMOFs are loaded with the chemotherapeutic drug, doxorubicin (DOX). In the presence of ATP or VEGF, both abundant in cancer cells, the tetrahedra-gated NMOFs are unlocked to release the drug. Enhanced and selective permeation of the DOX-loaded ATP/VEGF-responsive tetrahedra-gated NMOFs into MDA-MB-231 breast cancer cells as compared to the reference ATP/VEGF-responsive duplex-gated NMOFs or non-malignant MCF-10A epithelial breast cells is observed. This results in enhanced and selective cytotoxicity of the tetrahedra-gated DOX-loaded NMOFs toward the malignant cells. Additional nano-carriers, consisting of photosensitizer Zn(ii) protoporphyrin IX (Zn(ii)-PPIX)-loaded VEGF-responsive tetrahedra-gated NMOFs, are introduced. The VEGF-triggered unlocking of the NMOFs yields separated G-quadruplex-VEGF aptamer complexes conjugated to the tetrahedra, resulting in the release of loaded Zn(ii)-PPIX. Association of the released Zn(ii)-PPIX to the G-quadruplex structures generates highly fluorescent supramolecular Zn(ii)-PPIX/G-quadruplex VEGF aptamer-tetrahedra structures. The efficient and selective generation of the highly fluorescent Zn(ii)-PPIX/G-quadruplex VEGF aptamer-tetrahedra nanostructures in malignant cells allows the light-induced photosensitized generation of reactive oxygen species (ROS), leading to high-efficacy PDT treatment of the malignant cells. The Royal Society of Chemistry 2021-10-12 /pmc/articles/PMC8580039/ /pubmed/34880998 http://dx.doi.org/10.1039/d1sc04229g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Pu
Fischer, Amit
Ouyang, Yu
Wang, Jianbang
Sohn, Yang Sung
Nechushtai, Rachel
Pikarsky, Eli
Fan, Chunhai
Willner, Itamar
Aptamer-modified DNA tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy
title Aptamer-modified DNA tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy
title_full Aptamer-modified DNA tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy
title_fullStr Aptamer-modified DNA tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy
title_full_unstemmed Aptamer-modified DNA tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy
title_short Aptamer-modified DNA tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy
title_sort aptamer-modified dna tetrahedra-gated metal–organic framework nanoparticle carriers for enhanced chemotherapy or photodynamic therapy
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580039/
https://www.ncbi.nlm.nih.gov/pubmed/34880998
http://dx.doi.org/10.1039/d1sc04229g
work_keys_str_mv AT zhangpu aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy
AT fischeramit aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy
AT ouyangyu aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy
AT wangjianbang aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy
AT sohnyangsung aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy
AT nechushtairachel aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy
AT pikarskyeli aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy
AT fanchunhai aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy
AT willneritamar aptamermodifieddnatetrahedragatedmetalorganicframeworknanoparticlecarriersforenhancedchemotherapyorphotodynamictherapy