Javascript must be enabled to continue!
Smart Healthcare Piezoelectric Materials: Bridging Mechanoelectric Coupling to Clinical Translation
View through CrossRef
Abstract:
Piezoelectric materials have emerged as transformative biomedical platforms capable
of converting physiological mechanical stimuli into precisely regulated bioelectric signals.
Compared to most nanomedicines with multiple components and increasingly complex
nanostructures, piezoelectric nanomaterials feature simple and well-defined composition and
structure, along with tunable morphology, size, and piezoelectric catalytic activity. Beyond ultrahigh
catalytic activity, piezoelectric materials exhibit an inherent, unique carrier release capability
enabling them to trigger diverse redox catalytic reactions, offering significant potential
for future medical applications. Triggered by mechanical energy, these materials release electrons/
holes to catalyze substrate redox reactions or modulate biological processes, facilitating
the production of effector molecules for medical use (e.g., signal monitoring, sterilization,
therapy). To advance novel medical technologies—especially biomedical development—this review
outlines recent progress in piezoelectric catalytic biomedicine. It first introduces the principle
of piezoelectric catalysis and piezoelectric material preparation methods, then comprehensively
summarizes their medical applications (tumor therapy, smart wearables, tissue repair/
regeneration, biosensing). It also demonstrates the tremendous potential of piezoelectric
materials in clinical translation. Finally, an intelligent closed-loop system based on 5G is discussed
and proposed to build the next generation of personalized medical (IoMT) paradigm. It
is expected that the IoMT paradigm can completely change the existing medical model, comprehensively
improve the efficiency of medical services, provide the public with new personalized
medical care, and promote lifestyle changes. This paper identifies current bottlenecks in
long-term biocompatibility, real-time signal monitoring, and standardized system development.
It aims to provide insights for intelligent piezoelectric healthcare materials, with the goal
of advancing the application of piezoelectric materials in the field of smart healthcare.
Bentham Science Publishers Ltd.
Title: Smart Healthcare Piezoelectric Materials: Bridging Mechanoelectric Coupling to Clinical Translation
Description:
Abstract:
Piezoelectric materials have emerged as transformative biomedical platforms capable
of converting physiological mechanical stimuli into precisely regulated bioelectric signals.
Compared to most nanomedicines with multiple components and increasingly complex
nanostructures, piezoelectric nanomaterials feature simple and well-defined composition and
structure, along with tunable morphology, size, and piezoelectric catalytic activity.
Beyond ultrahigh
catalytic activity, piezoelectric materials exhibit an inherent, unique carrier release capability
enabling them to trigger diverse redox catalytic reactions, offering significant potential
for future medical applications.
Triggered by mechanical energy, these materials release electrons/
holes to catalyze substrate redox reactions or modulate biological processes, facilitating
the production of effector molecules for medical use (e.
g.
, signal monitoring, sterilization,
therapy).
To advance novel medical technologies—especially biomedical development—this review
outlines recent progress in piezoelectric catalytic biomedicine.
It first introduces the principle
of piezoelectric catalysis and piezoelectric material preparation methods, then comprehensively
summarizes their medical applications (tumor therapy, smart wearables, tissue repair/
regeneration, biosensing).
It also demonstrates the tremendous potential of piezoelectric
materials in clinical translation.
Finally, an intelligent closed-loop system based on 5G is discussed
and proposed to build the next generation of personalized medical (IoMT) paradigm.
It
is expected that the IoMT paradigm can completely change the existing medical model, comprehensively
improve the efficiency of medical services, provide the public with new personalized
medical care, and promote lifestyle changes.
This paper identifies current bottlenecks in
long-term biocompatibility, real-time signal monitoring, and standardized system development.
It aims to provide insights for intelligent piezoelectric healthcare materials, with the goal
of advancing the application of piezoelectric materials in the field of smart healthcare.
Related Results
Review of high temperature piezoelectric materials, devices, and applications
Review of high temperature piezoelectric materials, devices, and applications
Piezoelectric functional materials have been extensively studied and employed in numerous devices. With the rapid development of modern industries, such as power plants, aerospace,...
Perceptions of Telemedicine and Rural Healthcare Access in a Developing Country: A Case Study of Bayelsa State, Nigeria
Perceptions of Telemedicine and Rural Healthcare Access in a Developing Country: A Case Study of Bayelsa State, Nigeria
Abstract
Introduction
Telemedicine is the remote delivery of healthcare services using information and communication technologies and has gained global recognition as a solution to...
Design, fabrication, and properties of 2-2 connectivity cement/polymer based piezoelectric composites with varied piezoelectric phase distribution
Design, fabrication, and properties of 2-2 connectivity cement/polymer based piezoelectric composites with varied piezoelectric phase distribution
The laminated 2-2 connectivity cement/polymer based piezoelectric composites with varied piezoelectric phase distribution were fabricated by employing Lead Zirconium Titanate ceram...
Design and test of liquid sloshing piezoelectric energy harvester
Design and test of liquid sloshing piezoelectric energy harvester
The energy harvester based on the piezoelectric effect can convert the vibration energy in the environment into electricity to power the network nodes. In order to broaden the effe...
Future Prospects of Piezoelectric Perovskite Materials
Future Prospects of Piezoelectric Perovskite Materials
Piezoelectric perovskite materials have emerged as a promising class of
materials due to their unique combination of piezoelectric properties, mechanical
stability, and wide bandga...
The interaction between neural populations: Additive versus diffusive coupling
The interaction between neural populations: Additive versus diffusive coupling
Abstract
Models of networks of populations of neurons commonly assume that the interactions between neural populations are via
...
Žanrovska analiza pomorskopravnih tekstova i ostvarenje prijevodnih univerzalija u njihovim prijevodima s engleskoga jezika
Žanrovska analiza pomorskopravnih tekstova i ostvarenje prijevodnih univerzalija u njihovim prijevodima s engleskoga jezika
Genre implies formal and stylistic conventions of a particular text type, which inevitably affects the translation process. This „force of genre bias“ (Prieto Ramos, 2014) has been...
Spatial Equity and Influencing Factors of Coupling Coordination Degree of Healthcare Resources Allocation and Service Utilization in China
Spatial Equity and Influencing Factors of Coupling Coordination Degree of Healthcare Resources Allocation and Service Utilization in China
Abstract
Background: The COVID-19 epidemic in early 2020 has made the contradiction between allocation and utilization of healthcare resources in China more prominent. Howe...

