One-pot synthesis of Fe/N-doped hollow carbon nanospheres with multienzyme mimic activities against inflammation

L Fan, P Sun, Y Huang, Z Xu, X Lu, J Xi… - ACS Applied Bio …, 2020 - ACS Publications
Inflammation, including infectious and noninfectious inflammation, are a growing threat to
public health worldwide. For different types of inflammation, more specific and intensified …

Hollow cobalt sulfide nanospheres with highly enzyme-like antibacterial activities to accelerate infected wound healing

R Wu, Z Liu, Y Huang, L Huang, J Wang… - Bioconjugate …, 2023 - ACS Publications
The emergence of nanozymes presents a promising alternative to antibiotics for reactive
oxygen species-mediated broad-spectrum antimicrobial purposes, but nanozymes still face …

Construction of pH‐Dependent Nanozymes with Oxygen Vacancies as the High‐Efficient Reactive Oxygen Species Scavenger for Oral‐Administrated Anti …

N Zhao, FE Yang, CY Zhao, SW Lv… - Advanced …, 2021 - Wiley Online Library
It is of great significance to eliminate excessive reactive oxygen species (ROS) for treating
inflammatory bowel disease (IBD). Herein, for the first time, a novel nanozyme NiCo2O4 …

N-Rich and Sulfur-Doped Nano Hollow Carbons with High Oxidase-like Activity Prepared Using a Green Template of CaCO3 for Bacteriostasis

L Liu, J Deng, Y Wang, X He, H He, X Chen, D Liao… - Langmuir, 2023 - ACS Publications
Nanozymes, enzyme-mimicking nanomaterials, have attracted increasing attention due to
their low cost, high stability, and catalytic ability compared with natural enzymes. However …

Engineering core–shell chromium nanozymes with inflammation-suppressing, ROS-scavenging and antibacterial properties for pulpitis treatment

F Xie, C Zhu, L Gong, N Zhu, Q Ma, Y Yang, X Zhao… - Nanoscale, 2023 - pubs.rsc.org
Oral diseases are usually caused by inflammation and bacterial infection. Reactive oxygen
species (ROS), which come from both autologous inflammation tissue and bacterial …

A template-free assembly of Cu, N-codoped hollow carbon nanospheres as low-cost and highly efficient peroxidase nanozymes

XS Tao, Y Liu, Y Gan, YT Li, J Sha, AM Cao - Analyst, 2022 - pubs.rsc.org
Developing carbon-based materials with high catalytic performance and sensitivity has
significance in low-cost and highly efficient nanozymes. Herein, for the first time, Cu, N …

Bioinspired Design of Fe3+‐Doped Mesoporous Carbon Nanospheres for Enhanced Nanozyme Activity

Y Sang, Y Huang, W Li, J Ren… - Chemistry–A European …, 2018 - Wiley Online Library
Nanozymes have received considerable attention as alternatives of natural enzymes.
However, the catalytic activity of nanozymes is often lower than that of natural enzymes …

An ultra-highly active nanozyme of Fe, N co-doped ultrathin hollow carbon framework for antibacterial application

J Hao, C Zhang, C Feng, Q Wang, ZY Liu, Y Li… - Chinese Chemical …, 2023 - Elsevier
In recent years, nanozymes have received more and more attention, but the low activity
limits the development of nanozymes. Therefore, the design and development of efficient …

Co-, N-doped carbon dot nanozymes based on an untriggered ROS generation approach for anti-biofilm activities and in vivo anti-bacterial treatment

W Dong, L Xu, M Chen, T Jiang, L Su, J Ma… - Journal of Materials …, 2024 - pubs.rsc.org
Bacterial infections originating from food, water, and soil are widely recognized as significant
global public health concerns. Biofilms are implicated in approximately two-thirds of …

Macrophage-biomimetic liposomes delivery of carbon dots nanozymes ameliorate ulcerative colitis by modulating inflammation pathways and remodeling the redox …

Y Ma, J Zhao, Z Deng, B Gao, C Xu, X Yan… - Chemical Engineering …, 2023 - Elsevier
As a recurrent chronic inflammatory intestinal disease, ulcerative colitis (UC) has seriously
affected the life quality of patients. Numerous studies have demonstrated excessive reactive …