Piezocatalytic medicine: an emerging frontier using piezoelectric materials for biomedical applications
S Chen, P Zhu, L Mao, W Wu, H Lin, D Xu… - Advanced …, 2023 - Wiley Online Library
Emerging piezocatalysts have demonstrated their remarkable application potential in
diverse medical fields. In addition to their ultrahigh catalytic activities, their inherent and …
diverse medical fields. In addition to their ultrahigh catalytic activities, their inherent and …
Chemodynamic therapy via fenton and fenton‐like nanomaterials: strategies and recent advances
Chemodynamic therapy (CDT), a novel cancer therapeutic strategy defined as the treatment
using Fenton or Fenton‐like reaction to produce• OH in the tumor region, was first proposed …
using Fenton or Fenton‐like reaction to produce• OH in the tumor region, was first proposed …
Multifaceted carbonized metal–organic frameworks synergize with immune checkpoint inhibitors for precision and augmented cuproptosis cancer therapy
The discovery of cuproptosis, a copper-dependent mechanism of programmed cell death,
has provided a way for cancer treatment. However, cuproptosis has inherent limitations …
has provided a way for cancer treatment. However, cuproptosis has inherent limitations …
Manipulating intratumoral fenton chemistry for enhanced chemodynamic and chemodynamic‐synergized multimodal therapy
Chemodynamic therapy (CDT) uses the tumor microenvironment‐assisted intratumoral
Fenton reaction for generating highly toxic hydroxyl free radicals (• OH) to achieve selective …
Fenton reaction for generating highly toxic hydroxyl free radicals (• OH) to achieve selective …
Calcium carbonate: controlled synthesis, surface functionalization, and nanostructured materials
Calcium carbonate (CaCO3) is an important inorganic mineral in biological and geological
systems. Traditionally, it is widely used in plastics, papermaking, ink, building materials …
systems. Traditionally, it is widely used in plastics, papermaking, ink, building materials …
Inorganic nanomaterials with rapid clearance for biomedical applications
Inorganic nanomaterials that have inherently exceptional physicochemical properties (eg,
catalytic, optical, thermal, electrical, or magnetic performance) that can provide desirable …
catalytic, optical, thermal, electrical, or magnetic performance) that can provide desirable …
Synergistic reinforcing of immunogenic cell death and transforming tumor‐associated macrophages via a multifunctional cascade bioreactor for optimizing cancer …
C Huang, B Lin, C Chen, H Wang, X Lin… - Advanced …, 2022 - Wiley Online Library
Immunogenic cell death (ICD) has aroused widespread attention because it can reconstruct
a tumor microenvironment and activate antitumor immunity. This study proposes a two‐way …
a tumor microenvironment and activate antitumor immunity. This study proposes a two‐way …
Thermal immuno-nanomedicine in cancer
Immunotherapy has revolutionized the treatment of patients with cancer. However,
promoting antitumour immunity in patients with tumours that are resistant to these therapies …
promoting antitumour immunity in patients with tumours that are resistant to these therapies …
Tumor‐microenvironment‐activated reactive oxygen species amplifier for enzymatic cascade cancer starvation/chemodynamic/immunotherapy
M Wang, M Chang, C Li, Q Chen, Z Hou… - Advanced …, 2022 - Wiley Online Library
At present, some progress has been made in the field of cancer theranostics based on
nanocatalysts (NCs), but achieving precise theranostics in response to the specific tumor …
nanocatalysts (NCs), but achieving precise theranostics in response to the specific tumor …
Piezotronic Effect-Augmented Cu2–xO–BaTiO3 Sonosensitizers for Multifunctional Cancer Dynamic Therapy
Y Zhao, S Wang, Y Ding, Z Zhang, T Huang, Y Zhang… - ACS …, 2022 - ACS Publications
Ultrasound (US)-triggered sonodynamic therapy (SDT) based on semiconductor
nanomaterials has attracted considerable attention for cancer therapy. However, most …
nanomaterials has attracted considerable attention for cancer therapy. However, most …