Drug‐Loaded Mesoporous Tantalum Oxide Nanoparticles for Enhanced Synergetic Chemoradiotherapy with Reduced Systemic Toxicity
Нагруженные лекарственным препаратом мезопористые наночастицы оксида тантала для усиленной синергетической химиолучевой терапии с пониженной системной токсичностью
2016-12-13
SCID: 54.1/7b6n787j
Discuss with AI
chemoradiotherapydoxorubicin deliveryintrinsic radiosensitizationmesoporous tantalum oxide nanoparticlespH-responsive drug release
Figures from the paper
Abstract (AI)
Combining chemotherapy and radiotherapy (chemoradiotherapy) has been widely applied in many clinical practices, showing promises in enhancing therapeutic outcomes. Nontoxic nanocarriers that not only are able to deliver chemotherapeutics into tumors, but could also act as radiosensitizers to enhance radiotherapy would thus be of great interest in the development of chemoradiotherapies. To achieve this aim, herein mesoporous tantalum oxide (mTa2O5) nanoparticles with polyethylene glycol (PEG) modification are fabricated. Those mTa2O5‐PEG nanoparticles could serve as a drug delivery vehicle to allow efficient loading of chemotherapeutics such as doxorubicin (DOX), whose release appears to be pH responsive. Meanwhile, owing to the interaction of Ta with X‐ray, mTa2O5‐PEG nanoparticles could offer an intrinsic radiosensitization effect to increase X‐ray‐induced DNA damages during radiotherapy. As a result, DOX‐loaded mTa2O5‐PEG (mTa2O5‐PEG/DOX) nanoparticles can offer a strong synergistic therapeutic effect during the combined chemoradiotherapy. Furthermore, in chemoradiotherapy, such mTa2O5‐PEG/DOX shows remarkably reduced side effects compared to free DOX, which at the same dose appears to be lethal to animals. This work thus presents a new type of mesoporous nanocarrier particularly useful for the delivery of safe and effective chemoradiotherapy.
Key Findings
1
Compared with free doxorubicin at the same dose, the nanoparticle formulation markedly reduces side effects, while free doxorubicin is lethal to animals.
2
Doxorubicin-loaded nanoparticles produce a strong synergistic therapeutic effect during chemoradiotherapy.
3
Mesoporous tantalum oxide provides intrinsic radiosensitization through tantalum–X-ray interactions that enhance X-ray-induced DNA damage.
4
PEG-modified mesoporous tantalum oxide nanoparticles were developed as nontoxic nanocarriers for combined chemotherapy and radiotherapy.
5
The nanoparticles efficiently load doxorubicin and enable pH-responsive drug release, supporting tumor-targeted chemotherapeutic delivery.
Research Object
DOX-loaded PEG-modified mesoporous tantalum oxide (mTa2O5-PEG/DOX) nanoparticles used for combined chemoradiotherapy
Research Subject
Their pH-responsive chemotherapeutic delivery, intrinsic X-ray radiosensitization, synergistic antitumor efficacy, and reduced systemic toxicity
Publication Details
Publication Date
2016-12-13
Journal
Publisher
ISSN
Access Type
Author Information
Download PDF
Subscribe to digest