Nanotherapies Based on ROS Regulation in Oral Diseases
Xin Luo1, Yanli Zhang2, Yuting Zeng1
1Department of Stomatology, Nanfang Hospital, Southern Medical University, Guangzhou, 510515, China.
Abstract:
Oral diseases rank among the most prevalent clinical conditions globally, typically involving detrimental factors such as infection, inflammation, and injury in their occurrence, development, and outcomes. The concentration of reactive oxygen species (ROS) within cells has been demonstrated as a pivotal player in modulating these intricate pathological processes, exerting significant roles in restoring oral functionality and maintaining tissue structural integrity. Due to their enzyme-like catalytic properties, unique composition, and intelligent design, ROS-based nanomaterials have garnered considerable attention in oral nanomedicine. Such nanomaterials have the capacity to influence the spatiotemporal dynamics of ROS within biological systems, guiding the evolution of intra-ROS to facilitate therapeutic interventions. This paper reviews the latest advancements in the design, functional customization, and oral medical applications of ROS-based nanomaterials. Through the analysis of the components and designs of various novel nanozymes and ROS-based nanoplatforms responsive to different stimuli dimensions, it elaborates on their impacts on the dynamic behavior of intra-ROS and their potential regulatory mechanisms within the body. Furthermore, it discusses the prospects and strategies of nanotherapies based on ROS scavenging and generation in oral diseases, offering alternative insights for the design and development of nanomaterials for treating ROS-related conditions.
Insights
Reactive oxygen species (ROS) nanomaterials show promise for treating oral diseases by managing cellular ROS levels. This review explores their design and therapeutic applications in oral nanomedicine.
Area of Science:
- Biomedical Engineering
- Nanomedicine
- Oral Health
Background:
- Oral diseases are globally prevalent, often involving infection, inflammation, and injury.
- Reactive oxygen species (ROS) play a critical role in modulating oral pathological processes and tissue integrity.
- ROS-based nanomaterials offer unique catalytic properties for oral nanomedicine.
Purpose of the Study:
- To review recent advancements in ROS-based nanomaterials for oral diseases.
- To analyze the design, customization, and applications of these nanomaterials.
- To discuss nanotherapies for ROS modulation in oral conditions.
Main Methods:
- Review of novel nanozymes and ROS-responsive nanoplatforms.
- Analysis of nanomaterial components and designs.
- Examination of impacts on intra-ROS dynamics and regulatory mechanisms.
Main Results:
- ROS-based nanomaterials can influence the spatiotemporal dynamics of ROS.
- These nanomaterials facilitate therapeutic interventions by guiding ROS evolution.
- Various designs demonstrate responsiveness to different stimuli for targeted ROS management.
Conclusions:
- ROS-based nanomaterials represent a promising frontier in oral nanomedicine.
- Strategies for ROS scavenging and generation offer new therapeutic avenues.
- Further development of these nanomaterials can advance treatments for ROS-related oral conditions.
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