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Journal ArticleDOI

Graphene Quantum Dots-Capped Magnetic Mesoporous Silica Nanoparticles as a Multifunctional Platform for Controlled Drug Delivery, Magnetic Hyperthermia, and Photothermal Therapy.

TLDR
The results indicate that compared with chemotherapy, magnetichyperthermia or photothermal therapy alone, the combined chemo-magnetic hyperthermia therapy or chemo -photothermal therapy with the DOX-loaded MMSN/GQDs nanosystem exhibits a significant synergistic effect, resulting in a higher efficacy to kill cancer cells.
Abstract: 
A multifunctional platform is reported for synergistic therapy with controlled drug release, magnetic hyperthermia, and photothermal therapy, which is composed of graphene quantum dots (GQDs) as caps and local photothermal generators and magnetic mesoporous silica nanoparticles (MMSN) as drug carriers and magnetic thermoseeds. The structure, drug release behavior, magnetic hyperthermia capacity, photothermal effect, and synergistic therapeutic efficiency of the MMSN/GQDs nanoparticles are investigated. The results show that monodisperse MMSN/GQDs nanoparticles with the particle size of 100 nm can load doxorubicin (DOX) and trigger DOX release by low pH environment. Furthermore, the MMSN/GQDs nanoparticles can efficiently generate heat to the hyperthermia temperature under an alternating magnetic field or by near infrared irradiation. More importantly, breast cancer 4T1 cells as a model cellular system, the results indicate that compared with chemotherapy, magnetic hyperthermia or photothermal therapy alone, the combined chemo-magnetic hyperthermia therapy or chemo-photothermal therapy with the DOX-loaded MMSN/GQDs nanosystem exhibits a significant synergistic effect, resulting in a higher efficacy to kill cancer cells. Therefore, the MMSN/GQDs multifunctional platform has great potential in cancer therapy for enhancing the therapeutic efficiency.

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Citations
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Journal ArticleDOI

Mesoporous silica enriched PbS quantum dots for optical fiber amplifiers

TL;DR: An optical fiber amplifier based on a tapered fiber coated with PbS quantum dots (QDs) loaded into mesoporous silica nanoparticles (MSNs) is proposed in this paper.

A Multi-frequency Magnetic Particle Spectroscopy System for the Characterization of Magnetic Nanoparticles

Shijie Sun, +1 more
TL;DR: In this article , a multi-channel excitation module for the generation of different-frequency ac magnetic fields and a detection module for measuring the magnetic response of the magnetic nanoparticles (MNPs).
Journal ArticleDOI

Construction and properties of venlafaxine hydrochloride sustained release system based on hollow mesoporous silica microspheres

TL;DR: In this article , a venlafaxine hydrochloride sustained release system based on hollow mesoporous silica microspheres (HMSMs) was developed, which showed good sustained release properties compared with sustained release tablets with hydroxypropyl methylcellulose as the main component.
Journal ArticleDOI

A photothermal and pH-responsive intelligent PSBG nanofiller for enhancing the barrier and self-healing performance of the SMP coatings

TL;DR: In this article , a smart coating with excellent light-thermal and pH dual-responsive can furnish excellent corrosion protection for aluminum alloys is prepared by using a shape memory polymer (SMP) embedded with core-shell PDA/SiO2/BTA/GQDs (PSBG) nanofillers.
Book ChapterDOI

Application of Nanomaterials for Cancer Diagnosis and Therapy

TL;DR: A brief introduction to nanotechnology and nanomaterials and their biomedical applications in cancer diagnosis and therapy is given in this paper, where the authors summarize their unique properties for cancer diagnostic and therapeutic applications, enumerate representative functionalized nanommaterials developed for biomedical applications, in particular their advantages and disadvantages for applications in early cancer detection and diagnosis as well as therapeutic drug discovery and delivery.
References
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Journal ArticleDOI

A mesoporous silica nanosphere-based carrier system with chemically removable CdS nanoparticle caps for stimuli-responsive controlled release of neurotransmitters and drug molecules.

TL;DR: An MCM-41 type mesoporous silica nanosphere-based controlled-release delivery system has been synthesized and characterized using surface-derivatized cadmium sulfide nanocrystals as chemically removable caps to encapsulate several pharmaceutical drug molecules and neurotransmitters inside the organically functionalized MSN Mesoporous framework.
Journal ArticleDOI

Magnetic nanomaterials for hyperthermia-based therapy and controlled drug delivery

TL;DR: Potential opportunities for the combination of hyperthermia-based therapy and controlled drug release paradigms--towards successful application in personalized medicine are portrayed.
Journal ArticleDOI

Functionalized mesoporous silica materials for controlled drug delivery

TL;DR: This review highlights the most recent research progress on silica-based controlled drug delivery systems, including pure mesoporous silica sustained-release systems, magnetism and/or luminescence functionalized mesoporus silica systems which integrate targeting and tracking abilities of drug molecules.
Journal ArticleDOI

Unusual infrared-absorption mechanism in thermally reduced graphene oxide

TL;DR: The observation of a giant-infrared-absorption band in reduced graphene oxide is reported, arising from the coupling of electronic states to the asymmetric stretch mode of a yet-unreported structure, consisting of oxygen atoms aggregated at the edges of defects.
Journal ArticleDOI

Multifunctional Mesoporous Silica-Coated Graphene Nanosheet Used for Chemo-Photothermal Synergistic Targeted Therapy of Glioma

TL;DR: These findings provided an excellent drug delivery system for combined therapy of glioma due to the advanced chemo-photothermal synergistic targeted therapy and good drug release properties of GSPID, which could effectively avoid frequent and invasive dosing and improve patient compliance.
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