Cargando…

Transferrin Modified GSH Sensitive Hyaluronic Acid Derivative Micelle to Deliver HSP90 Inhibitors to Enhance the Therapeutic Efficacy of Brain Cancers

SIMPLE SUMMARY: Heat shock protein 90 (HSP90) is a key element of a multi-chaperone complex involved in the stabilizing of many client proteins, oncoproteins, which play essential roles in tumorigenesis. As the result, HSP90 has been taken as a promising target for anticancer therapies. AUY922 has g...

Descripción completa

Detalles Bibliográficos
Autores principales: Debele, Tilahun Ayane, Wu, Ping-Ching, Wei, Yu-Feng, Chuang, Jian-Ying, Chang, Kwang-Yu, Tsai, Jui-Hung, Su, Wen-Pin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156315/
https://www.ncbi.nlm.nih.gov/pubmed/34069106
http://dx.doi.org/10.3390/cancers13102375
_version_ 1783699416082808832
author Debele, Tilahun Ayane
Wu, Ping-Ching
Wei, Yu-Feng
Chuang, Jian-Ying
Chang, Kwang-Yu
Tsai, Jui-Hung
Su, Wen-Pin
author_facet Debele, Tilahun Ayane
Wu, Ping-Ching
Wei, Yu-Feng
Chuang, Jian-Ying
Chang, Kwang-Yu
Tsai, Jui-Hung
Su, Wen-Pin
author_sort Debele, Tilahun Ayane
collection PubMed
description SIMPLE SUMMARY: Heat shock protein 90 (HSP90) is a key element of a multi-chaperone complex involved in the stabilizing of many client proteins, oncoproteins, which play essential roles in tumorigenesis. As the result, HSP90 has been taken as a promising target for anticancer therapies. AUY922 has good antitumor activity by inhibiting the ATPase activity of HSP90, while it has certain limitations, including poor water solubility and lack of selectivity, which have incited the development of a novel targeted nanoformulation. In this study, we have successfully synthesized and characterized a GSH-sensitive micelle that can encapsulate hydrophobic AUY922 in its core region to enhance its therapeutic efficacy against brain cancers. All in vitro and in vivo experimental results showed nanoformulated AUY922 has a better therapeutic efficacy against brain cancer in comparison to the free AUY922. ABSTRACT: Herein, GSH-sensitive hyaluronic acid-poly(lactic-co-glycolic acid) (HA-SS-PLGA) was synthesized. Surface modification of PLGA with hyaluronic acid produced a highly stable micelle at physiological pH while a micelle was destabilized at a higher GSH level. Fluorescence microscopy results showed that rhodamine-encapsulated micelle was taken up by brain cancer cells, while competitive inhibition was observed in the presence of free HA and free transferrin. In vitro cytotoxicity results revealed that transferrin-targeted nanoformulated AUY922 (TF-NP-AUY922) shows higher cytotoxicity than either free AUY922 or non-targeted AUY922-loaded micelles (NP-AUY922). In comparison to the control groups, free AUY922, TF-NP-AUY922 or NP-AUY922 treatment revealed the upregulation of HSP70, while the expression of HSP90 client proteins was simultaneously depleted. In addition, the treatment group induced caspase-dependent PARP cleavage and the upregulation of p53 expression, which plays a key role in apoptosis of brain cancer cells. In vivo and ex vivo biodistribution studies showed that cypate-loaded micelle was taken up and accumulated in the tumor regions. Furthermore, in vivo therapeutic efficacy studies revealed that the AUY922-loaded micelle significantly suppressed tumor growth in comparison to the free AUY922, or control groups using tumor-bearing NOD-SCID mice. Moreover, biochemical index and histological analysis revealed synthesized micelle does not show any significant cytotoxicity to the selected major organs. Overall, a synthesized micelle is the best carrier for AUY922 to enhance the therapeutic efficiency of brain cancer.
format Online
Article
Text
id pubmed-8156315
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-81563152021-05-28 Transferrin Modified GSH Sensitive Hyaluronic Acid Derivative Micelle to Deliver HSP90 Inhibitors to Enhance the Therapeutic Efficacy of Brain Cancers Debele, Tilahun Ayane Wu, Ping-Ching Wei, Yu-Feng Chuang, Jian-Ying Chang, Kwang-Yu Tsai, Jui-Hung Su, Wen-Pin Cancers (Basel) Article SIMPLE SUMMARY: Heat shock protein 90 (HSP90) is a key element of a multi-chaperone complex involved in the stabilizing of many client proteins, oncoproteins, which play essential roles in tumorigenesis. As the result, HSP90 has been taken as a promising target for anticancer therapies. AUY922 has good antitumor activity by inhibiting the ATPase activity of HSP90, while it has certain limitations, including poor water solubility and lack of selectivity, which have incited the development of a novel targeted nanoformulation. In this study, we have successfully synthesized and characterized a GSH-sensitive micelle that can encapsulate hydrophobic AUY922 in its core region to enhance its therapeutic efficacy against brain cancers. All in vitro and in vivo experimental results showed nanoformulated AUY922 has a better therapeutic efficacy against brain cancer in comparison to the free AUY922. ABSTRACT: Herein, GSH-sensitive hyaluronic acid-poly(lactic-co-glycolic acid) (HA-SS-PLGA) was synthesized. Surface modification of PLGA with hyaluronic acid produced a highly stable micelle at physiological pH while a micelle was destabilized at a higher GSH level. Fluorescence microscopy results showed that rhodamine-encapsulated micelle was taken up by brain cancer cells, while competitive inhibition was observed in the presence of free HA and free transferrin. In vitro cytotoxicity results revealed that transferrin-targeted nanoformulated AUY922 (TF-NP-AUY922) shows higher cytotoxicity than either free AUY922 or non-targeted AUY922-loaded micelles (NP-AUY922). In comparison to the control groups, free AUY922, TF-NP-AUY922 or NP-AUY922 treatment revealed the upregulation of HSP70, while the expression of HSP90 client proteins was simultaneously depleted. In addition, the treatment group induced caspase-dependent PARP cleavage and the upregulation of p53 expression, which plays a key role in apoptosis of brain cancer cells. In vivo and ex vivo biodistribution studies showed that cypate-loaded micelle was taken up and accumulated in the tumor regions. Furthermore, in vivo therapeutic efficacy studies revealed that the AUY922-loaded micelle significantly suppressed tumor growth in comparison to the free AUY922, or control groups using tumor-bearing NOD-SCID mice. Moreover, biochemical index and histological analysis revealed synthesized micelle does not show any significant cytotoxicity to the selected major organs. Overall, a synthesized micelle is the best carrier for AUY922 to enhance the therapeutic efficiency of brain cancer. MDPI 2021-05-14 /pmc/articles/PMC8156315/ /pubmed/34069106 http://dx.doi.org/10.3390/cancers13102375 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Debele, Tilahun Ayane
Wu, Ping-Ching
Wei, Yu-Feng
Chuang, Jian-Ying
Chang, Kwang-Yu
Tsai, Jui-Hung
Su, Wen-Pin
Transferrin Modified GSH Sensitive Hyaluronic Acid Derivative Micelle to Deliver HSP90 Inhibitors to Enhance the Therapeutic Efficacy of Brain Cancers
title Transferrin Modified GSH Sensitive Hyaluronic Acid Derivative Micelle to Deliver HSP90 Inhibitors to Enhance the Therapeutic Efficacy of Brain Cancers
title_full Transferrin Modified GSH Sensitive Hyaluronic Acid Derivative Micelle to Deliver HSP90 Inhibitors to Enhance the Therapeutic Efficacy of Brain Cancers
title_fullStr Transferrin Modified GSH Sensitive Hyaluronic Acid Derivative Micelle to Deliver HSP90 Inhibitors to Enhance the Therapeutic Efficacy of Brain Cancers
title_full_unstemmed Transferrin Modified GSH Sensitive Hyaluronic Acid Derivative Micelle to Deliver HSP90 Inhibitors to Enhance the Therapeutic Efficacy of Brain Cancers
title_short Transferrin Modified GSH Sensitive Hyaluronic Acid Derivative Micelle to Deliver HSP90 Inhibitors to Enhance the Therapeutic Efficacy of Brain Cancers
title_sort transferrin modified gsh sensitive hyaluronic acid derivative micelle to deliver hsp90 inhibitors to enhance the therapeutic efficacy of brain cancers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156315/
https://www.ncbi.nlm.nih.gov/pubmed/34069106
http://dx.doi.org/10.3390/cancers13102375
work_keys_str_mv AT debeletilahunayane transferrinmodifiedgshsensitivehyaluronicacidderivativemicelletodeliverhsp90inhibitorstoenhancethetherapeuticefficacyofbraincancers
AT wupingching transferrinmodifiedgshsensitivehyaluronicacidderivativemicelletodeliverhsp90inhibitorstoenhancethetherapeuticefficacyofbraincancers
AT weiyufeng transferrinmodifiedgshsensitivehyaluronicacidderivativemicelletodeliverhsp90inhibitorstoenhancethetherapeuticefficacyofbraincancers
AT chuangjianying transferrinmodifiedgshsensitivehyaluronicacidderivativemicelletodeliverhsp90inhibitorstoenhancethetherapeuticefficacyofbraincancers
AT changkwangyu transferrinmodifiedgshsensitivehyaluronicacidderivativemicelletodeliverhsp90inhibitorstoenhancethetherapeuticefficacyofbraincancers
AT tsaijuihung transferrinmodifiedgshsensitivehyaluronicacidderivativemicelletodeliverhsp90inhibitorstoenhancethetherapeuticefficacyofbraincancers
AT suwenpin transferrinmodifiedgshsensitivehyaluronicacidderivativemicelletodeliverhsp90inhibitorstoenhancethetherapeuticefficacyofbraincancers