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1.
ACS Appl Bio Mater ; 6(5): 2003-2013, 2023 05 15.
Article En | MEDLINE | ID: mdl-37129536

Photothermal therapy (PTT) is an effective therapeutic method against multidrug-resistant bacteria. The heating temperature is of great significance to completely eliminate bacteria but not damage surrounding healthy tissue. To meet the need for chronic wound management, a pH and temperature dual-responsive copper-gold nanoassembly (sCuAu NAs) was constructed by cross-linking the CuAu nanoparticles (CuAu NPs) with small molecules involved in the Edman degradation reaction. At room temperature, the sCuAu NAs could quickly heat up to eliminate the biofilm upon laser irradiation due to the surface plasmon resonance coupling effect. On arriving at the degradation temperature of around 50 °C, the sCuAu NAs are disassembled into CuAu NPs in the wound infection site, which not only prevents overheating but also promotes deep penetration and accelerates copper-ion release to remove residual bacteria and promote wound healing. This study not only provides an effective treatment that can simultaneously alleviate wound infection and accelerate wound healing but also brings up an idea on the development and application of temperature self-regulated photothermal agents in various diseases.


Nanoparticles , Photothermal Therapy , Copper/pharmacology , Copper/chemistry , Temperature , Wound Healing
2.
J Control Release ; 357: 40-51, 2023 05.
Article En | MEDLINE | ID: mdl-36948418

Cancer immunotherapy is an emerging cancer therapeutic method by activating the patient's immune system but suffers from low immunogenicity at tumor sites. Fever-like heat is known to modulate an immune-friendly tumor microenvironment. Here, temperature-responsive iron oxide nanoassemblies (IONAs) are developed by crosslinking iron oxide nanoparticles (IONPs) and loaded with JQ1 (JQ1/IONAs), an immuno-modulating agent known to down-regulate PD-L1. In the presence of an alternating magnetic field (AMF), the IONAs demonstrate a much more effective magnetic thermal effect than IONPs and are responsively disassembled to prevent overheating. Compared with IONPs + AMF (∼ 41 °C) and unresponsive nanoassemblies (uIONAs) + AMF (∼ 50 °C), the IONAs + AMF with a temperature heated around 45 °C show a much better immune response and anti-tumor effect. Further combining the mild thermal therapy with controlled release of JQ1, the JQ1/IONAs + AMF completely eradicate the primary tumors and trigger a strong immune effect to inhibit the distant tumor growth as well as prevent tumor recurrence and metastasis. Our JQ1/IONAs not only provide a magnetic thermal agent with effective heating and temperature self-regulation ability but also serve as a heat-triggered JQ1 carrier to spontaneously combine mild magnetic thermal therapy with immune checkpoint blockade therapy.


Hyperthermia, Induced , Neoplasms , Humans , Hyperthermia, Induced/methods , Hot Temperature , Magnetic Fields , Neoplasms/therapy , Cell Line, Tumor , Tumor Microenvironment
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