Literature DB >> 28713017

Intracellular co-delivery of Sr ion and phenamil drug through mesoporous bioglass nanocarriers synergizes BMP signaling and tissue mineralization.

Jung-Hwan Lee1, Nandin Mandakhbayar2, Ahmed El-Fiqi3, Hae-Won Kim4.   

Abstract

Inducing differentiation and maturation of resident multipotent stem cells (MSCs) is an important strategy to regenerate hard tissues in mal-calcification conditions. Here we explore a co-delivery approach of therapeutic molecules comprised of ion and drug through a mesoporous bioglass nanoparticle (MBN) for this purpose. Recently, MBN has offered unique potential as a nanocarrier for hard tissues, in terms of high mesoporosity, bone bioactivity (and possibly degradability), tunable delivery of biomolecules, and ionic modification. Herein Sr ion is structurally doped to MBN while drug Phenamil is externally loaded as a small molecule activator of BMP signaling, for the stimulation of osteo/odontogenesis and mineralization of human MSCs derived from dental pulp. The Sr-doped MBN (85Si:10Ca:5Sr) sol-gel processed presents a high mesoporosity with a pore size of ∼6nm. In particular, Sr ion is released slowly at a daily rate of ∼3ppm per mg nanoparticles for up to 7days, a level therapeutically effective for cellular stimulation. The Sr-MBN is internalized to most MSCs via an ATP dependent macropinocytosis within hours, increasing the intracellular levels of Sr, Ca and Si ions. Phenamil is loaded maximally ∼30% into Sr-MBN and then released slowly for up to 7days. The co-delivered molecules (Sr ion and Phenamil drug) have profound effects on the differentiation and maturation of cells, i.e., significantly enhancing expression of osteo/odontogenic genes, alkaline phosphatase activity, and mineralization of cells. Of note, the stimulation is a result of a synergism of Sr and Phenamil, through a Trb3-dependent BMP signaling pathway. This biological synergism is further evidenced in vivo in a mal-calcification condition involving an extracted tooth implantation in dorsal subcutaneous tissues of rats. Six weeks post operation evidences the osseous-dentinal hard tissue formation, which is significantly stimulated by the Sr/Phenamil delivery, based on histomorphometric and micro-computed tomographic analyses. The bioactive nanoparticles releasing both Sr ion and Phenamil drug are considered to be a promising therapeutic nanocarrier platform for hard tissue regeneration. Furthermore, this novel ion/drug co-delivery concept through nanoparticles can be extensively used for other tissues that require different therapeutic treatment. STATEMENT OF SIGNIFICANCE: This study reports a novel design concept in inorganic nanoparticle delivery system for hard tissues - the co-delivery of therapeutic molecules comprised of ion (Sr) and drug (Phenamil) through a unique nanoparticle of mesoporous bioactive glass (MBN). The physico-chemical and biological properties of MBN enabled an effective loading of both therapeutic molecules and a subsequently sustained/controlled release. The co-delivered Sr and Phenamil demonstrated significant stimulation of adult stem cell differentiation in vitro and osseous/dentinal regeneration in vivo, through BMP signaling pathways. We consider the current combination of Sr ion with Phenamil is suited for the osteo/odontogenesis of stem cells for hard tissue regeneration, and further, this ion/drug co-delivery concept can extend the applications to other areas that require specific cellular and tissue functions.
Copyright © 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  BMP signaling activator; Bioglass nanocarrier; Co-delivery; Hard tissue regeneration; Multipotent stem cells; Therapeutic ion

Mesh:

Substances:

Year:  2017        PMID: 28713017     DOI: 10.1016/j.actbio.2017.07.021

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  11 in total

1.  Self-assembled organic nanorods for dual chemo-photodynamic therapies.

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Journal:  RSC Adv       Date:  2018-02-01       Impact factor: 4.036

2.  Intra-articular biomaterials-assisted delivery to treat temporomandibular joint disorders.

Authors:  Khandmaa Dashnyam; Jung-Hwan Lee; Nandin Mandakhbayar; Guang-Zhen Jin; Hae-Hyoung Lee; Hae-Won Kim
Journal:  J Tissue Eng       Date:  2018-05-13       Impact factor: 7.813

3.  Reformulated mineral trioxide aggregate components and the assessments for use as future dental regenerative cements.

Authors:  Ho-Jin Moon; Jung-Hwan Lee; Joong-Hyun Kim; Jonathan C Knowles; Yong-Bum Cho; Dong-Hoon Shin; Hae-Hyoung Lee; Hae-Won Kim
Journal:  J Tissue Eng       Date:  2018-10-30       Impact factor: 7.813

4.  Carbon nanotube incorporation in PMMA to prevent microbial adhesion.

Authors:  Kyoung-Im Kim; Dong-Ae Kim; Kapil D Patel; Ueon Sang Shin; Hae-Won Kim; Jung-Hwan Lee; Hae-Hyoung Lee
Journal:  Sci Rep       Date:  2019-03-20       Impact factor: 4.379

5.  Performance of a glucose-reactive enzyme-based biofuel cell system for biomedical applications.

Authors:  Won-Yong Jeon; Jung-Hwan Lee; Khandmaa Dashnyam; Young-Bong Choi; Tae-Hyun Kim; Hae-Hyoung Lee; Hae-Won Kim; Hyug-Han Kim
Journal:  Sci Rep       Date:  2019-07-26       Impact factor: 4.379

Review 6.  Drug Delivery (Nano)Platforms for Oral and Dental Applications: Tissue Regeneration, Infection Control, and Cancer Management.

Authors:  Pooyan Makvandi; Uros Josic; Masoud Delfi; Filippo Pinelli; Vahid Jahed; Emine Kaya; Milad Ashrafizadeh; Atefeh Zarepour; Filippo Rossi; Ali Zarrabi; Tarun Agarwal; Ehsan Nazarzadeh Zare; Matineh Ghomi; Tapas Kumar Maiti; Lorenzo Breschi; Franklin R Tay
Journal:  Adv Sci (Weinh)       Date:  2021-02-05       Impact factor: 16.806

7.  Multi-functional nano-adhesive releasing therapeutic ions for MMP-deactivation and remineralization.

Authors:  Soo-Kyung Jun; Sun-A Yang; You-Jin Kim; Ahmed El-Fiqi; Nandin Mandakhbayar; Duck-Su Kim; Jiyeon Roh; Salvatore Sauro; Hae-Won Kim; Jung-Hwan Lee; Hae-Hyoung Lee
Journal:  Sci Rep       Date:  2018-04-04       Impact factor: 4.379

8.  Magnetic Mesoporous Calcium Sillicate/Chitosan Porous Scaffolds for Enhanced Bone Regeneration and Photothermal-Chemotherapy of Osteosarcoma.

Authors:  Fan Yang; Jiawei Lu; Qinfei Ke; Xiaoyuan Peng; Yaping Guo; Xuetao Xie
Journal:  Sci Rep       Date:  2018-05-09       Impact factor: 4.379

9.  A novel vehicle-like drug delivery 3D printing scaffold and its applications for a rat femoral bone repairing in vitro and in vivo.

Authors:  Hui Wang; Zhengwei Deng; Jing Chen; Xin Qi; Libing Pang; Bocai Lin; Yan Teik Yuin Adib; Na Miao; Deping Wang; Yadong Zhang; Jiusheng Li; Xiangqiong Zeng
Journal:  Int J Biol Sci       Date:  2020-04-01       Impact factor: 6.580

Review 10.  Smart Cargo Delivery System based on Mesoporous Nanoparticles for Bone Disease Diagnosis and Treatment.

Authors:  Panpan Pan; Qin Yue; Juan Li; Meiqi Gao; Xuanyu Yang; Yuan Ren; Xiaowei Cheng; Penglei Cui; Yonghui Deng
Journal:  Adv Sci (Weinh)       Date:  2021-03-16       Impact factor: 16.806

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