Recently, mitochondria‐targeted photothermal nanoagents demonstrated an improved therapeutic efficacy of cancer cells, compared with non‐targeting ones. Herein, copper sulfide (CuS) nanoparticles are in situ synthesized via bovine serum albumin (BSA) templates to prepare photothermal BSA@CuS nanocomposites with high efficiency (42.0%) of photothermal conversion. Subsequently, rhodamine‐110 (R) molecules are covalently conjugated with BSA@CuS nanocomposites to construct mitochondria‐targeted R‐BSA@CuS nanocomposites, which still retained 22.8% of photothermal conversion efficiency. Furthermore, as‐prepared R‐BSA@CuS nanocomposites can be efficiently internalized by human breast cancer (MCF‐7) cells, and then specifically accumulated in their...
International audienceDespite efforts in producing nanoparticles with tightly controlled designs and...
A promising method for treating cancer is localized therapy, which mainly employs hydrogel-based del...
The synergistic effect of chemo-photothermal therapy by near-infrared light-responsive nanoparticles...
Recently, mitochondria‐targeted photothermal nanoagents demonstrated an improved therapeutic efficac...
© 2020 Wiley-VCH GmbH This article reports the fabrication of a smart biomimetic enzyme system, whic...
Nanomaterials with localized surface plasmon resonance (LSPR) have exquisite optical properties, whi...
© 2020 Wiley-VCH GmbH This article reports the fabrication of a smart biomimetic enzyme system, whic...
Combinational chemo-photothermal therapy has been considered as a promising strategy to enhance anti...
The synergistic effect of chemo-photothermal therapy by near-infrared light-responsive nanoparticles...
Nanomaterial-based tumor photothermal therapy (PTT) has attracted increasing attention and been a pr...
International audienceDespite efforts in producing nanoparticles with tightly controlled designs and...
International audienceDespite efforts in producing nanoparticles with tightly controlled designs and...
Herein, we present the rational synthesis of a multimode photothermal agent, NGO-FA-CuS, for the adv...
Herein, we present the rational synthesis of a multimode photothermal agent, NGO-FA-CuS, for the adv...
Cancer has become number one cause of death. Conventional treatment includes surgery, chemotherapy, ...
International audienceDespite efforts in producing nanoparticles with tightly controlled designs and...
A promising method for treating cancer is localized therapy, which mainly employs hydrogel-based del...
The synergistic effect of chemo-photothermal therapy by near-infrared light-responsive nanoparticles...
Recently, mitochondria‐targeted photothermal nanoagents demonstrated an improved therapeutic efficac...
© 2020 Wiley-VCH GmbH This article reports the fabrication of a smart biomimetic enzyme system, whic...
Nanomaterials with localized surface plasmon resonance (LSPR) have exquisite optical properties, whi...
© 2020 Wiley-VCH GmbH This article reports the fabrication of a smart biomimetic enzyme system, whic...
Combinational chemo-photothermal therapy has been considered as a promising strategy to enhance anti...
The synergistic effect of chemo-photothermal therapy by near-infrared light-responsive nanoparticles...
Nanomaterial-based tumor photothermal therapy (PTT) has attracted increasing attention and been a pr...
International audienceDespite efforts in producing nanoparticles with tightly controlled designs and...
International audienceDespite efforts in producing nanoparticles with tightly controlled designs and...
Herein, we present the rational synthesis of a multimode photothermal agent, NGO-FA-CuS, for the adv...
Herein, we present the rational synthesis of a multimode photothermal agent, NGO-FA-CuS, for the adv...
Cancer has become number one cause of death. Conventional treatment includes surgery, chemotherapy, ...
International audienceDespite efforts in producing nanoparticles with tightly controlled designs and...
A promising method for treating cancer is localized therapy, which mainly employs hydrogel-based del...
The synergistic effect of chemo-photothermal therapy by near-infrared light-responsive nanoparticles...