Increasing sensitivity and selectivity for electrochemical sensing of uric acid and theophylline in real blood serum through multinary nanocomposites DOI Creative Commons
Mohammad Hossein Ghanbari, Zahra Norouzi, Bastian J. M. Etzold

et al.

Microchemical Journal, Journal Year: 2023, Volume and Issue: 191, P. 108836 - 108836

Published: May 12, 2023

The sensing of theophylline (TP) and uric acid (UA) is important for the diagnosis treatment diseases in early stages. While first proofs show potential electrochemical sensors, simultaneous detection TP UA still not satisfactory. Herein we present an sensor showing high sensitivity selectivity two purine derivatives, blood serum. Key this a multinary nanocomposite which was specially designed purpose based on titania nanoparticles, copper oxide, boron-doped reduced graphene Au nanoparticles as also modification supporting carbon electrode with 2-amino-5-mercapto-1,3,4-thiadiazole through electropolymerization. study showed that improves electrochemically active surface area electron transfer rate sensor, together boosts current response strongly. It could be shown provides excellent linear relationship between 0.5 nM 10.0 µM 1.0 µM. Detection limits 0.18 0.36 results TP, respectively. 1.27 μA µM−1 cm−2 1.06 TP. Additionally, method used measurements real serum, demonstrated applicability device.

Language: Английский

Natural biomarocmolecule-based antimicrobial hydrogel for rapid wound healing: A review DOI
Ashkan Farazin,

Fatemeh Amohammad Shirazi,

Morvarid Shafiei

et al.

International Journal of Biological Macromolecules, Journal Year: 2023, Volume and Issue: 244, P. 125454 - 125454

Published: June 16, 2023

Language: Английский

Citations

58

Advanced Dressings for Chronic Wound Management DOI
Abhishek Mishra,

Aniket Kushare,

Munishwar N. Gupta

et al.

ACS Applied Bio Materials, Journal Year: 2024, Volume and Issue: 7(5), P. 2660 - 2676

Published: May 9, 2024

Wound healing, particularly for chronic wounds, presents a considerable difficulty due to differences in biochemical and cellular processes that occur different types of wounds. Recent technological breakthroughs have notably advanced the understanding diagnostic therapeutic approaches wound healing. The evolution care has seen transition from traditional textile dressings variety alternatives, including self-healing hydrogels, hydrofibers, foams, hydrocolloids, environment responsive dressings, growth factor-based therapy, bioengineered skin substitutes, stem cell gene therapy. Technological advancements, such as 3D printing electronic (e-skin) contribute customization Despite these effectively managing wounds remains challenging. This necessitates development treatments consider performance, risk–benefit balance, cost-effectiveness. review discusses innovative strategies healing Incorporating biomarkers into coupled with corresponding biosensors drug delivery formulations, enables theranostic approach treatment Furthermore, integrating power sources user interfaces like near-field communication, radio frequency identification, Bluetooth enhances real-time monitoring on-demand delivery. It also provides thorough evaluation advantages, patient compliance, costs, durability emphasizing smart formulations their preparation methods.

Language: Английский

Citations

19

The emerging progress on wound dressings and their application in clinic wound management DOI Creative Commons
Linlin Su,

Yanhui Jia,

Lanqing Fu

et al.

Heliyon, Journal Year: 2023, Volume and Issue: 9(12), P. e22520 - e22520

Published: Nov. 18, 2023

BackgroundIn addition to its barrier function, the skin plays a crucial role in maintaining stability of body's internal environment and normal physiological functions. When is damaged, it important select proper dressings as temporary barriers cover wound, which can exert significant effects on defence against microbial infection, tissue/cell functions, coordinating process wound repair regeneration. It now forms an approach clinic practice facilitate repair.Search strategiesWe conducted comprehensive literature search using online databases including PubMed, Web Science, MEDLINE, ScienceDirect, Wiley Online Library, CNKI, Wanfang Data. In addition, information was obtained from local foreign books biomaterials science traumatology.ResultsThis review focuses efficacy principles functional for anti-bacteria, anti-infection, anti-inflammation, anti-oxidation, hemostasis, healing facilitation; analyses research progress carrying living cells such fibroblasts, keratinocytes, appendage cells, stem different origins. We also summarize recent advances intelligent with respect real-time monitoring, automatic drug delivery, precise adjustment according actual microenvironment. this explores compares characteristics, advantages disadvantages, mechanisms actions, application scopes made materials.ConclusionThe dynamic acquisition analysis conditions are management prognostic evaluation. Therefore, development modern that integrate multiple have high similarity skin, highly will be focus future research, could drive efficient personalized medicine, ultimately translation health monitoring into clinical practice.

Language: Английский

Citations

37

Biomimetic Materials for Skin Tissue Regeneration and Electronic Skin DOI Creative Commons

Sol Youn,

Mi‐Ran Ki, Mohamed Abdel‐Hamid

et al.

Biomimetics, Journal Year: 2024, Volume and Issue: 9(5), P. 278 - 278

Published: May 7, 2024

Biomimetic materials have become a promising alternative in the field of tissue engineering and regenerative medicine to address critical challenges wound healing skin regeneration. Skin-mimetic enormous potential improve outcomes enable innovative diagnostic sensor applications. Human skin, with its complex structure diverse functions, serves as an excellent model for designing biomaterials. Creating effective coverings requires mimicking unique extracellular matrix composition, mechanical properties, biochemical cues. Additionally, integrating electronic functionality into these presents exciting possibilities real-time monitoring, diagnostics, personalized healthcare. This review examines biomimetic their role healing, well integration technologies. It discusses recent advances, challenges, future directions this rapidly evolving field.

Language: Английский

Citations

14

Electrochemical biosensors and power supplies for wearable health‐managing textile systems DOI Creative Commons
Changxin Li,

Kangkang Jia,

Qimin Liang

et al.

Interdisciplinary materials, Journal Year: 2024, Volume and Issue: 3(2), P. 270 - 296

Published: March 1, 2024

Abstract In recent years, wearable electrochemical biosensors have received increasing attention, benefiting from the growing demand for continuous monitoring personalized medicine and point‐of‐care medical assistance. Incorporating biosensing corresponding power supply into everyday textiles could be a promising strategy next‐generation non‐invasive comfort interaction mode with healthcare. This review starts manufacturing structural design of discusses series various biomarkers (e.g., pH, electrolytes, metabolite, cytokines) at molecular level. The fiber‐shaped or textile‐based solar cells aqueous batteries as energy harvesting storage devices are further introduced complete textiles. Finally, we discuss challenges prospects relating to sensing textile systems wearability, durability, washability, sample collection analysis, clinical validation.

Language: Английский

Citations

13

A point-of-care, label-free OECT sensor for uric acid detection: validation in human saliva DOI Creative Commons

Francesca Ceccardi,

Federica Mariani, Francesco Decataldo

et al.

Electrochimica Acta, Journal Year: 2025, Volume and Issue: unknown, P. 145834 - 145834

Published: Feb. 1, 2025

Language: Английский

Citations

1

Biomolecule sensors based on organic electrochemical transistors DOI Creative Commons
Zhengquan Lu, Kun Xu,

Kai Xiao

et al.

npj Flexible Electronics, Journal Year: 2025, Volume and Issue: 9(1)

Published: Feb. 13, 2025

Language: Английский

Citations

1

Smart textiles for chronic disease management: Advancements, applications, and future prospects DOI
Ziying Wang, Xinqi Zhao, Kai Yan

et al.

Materials Science and Engineering R Reports, Journal Year: 2025, Volume and Issue: 164, P. 100987 - 100987

Published: April 2, 2025

Language: Английский

Citations

1

Emerging Smart Micro/Nanofiber‐Based Materials for Next‐Generation Wound Dressings DOI

Yuping Dong,

Shaoju Fu, Jianyong Yu

et al.

Advanced Functional Materials, Journal Year: 2023, Volume and Issue: 34(9)

Published: Nov. 20, 2023

Abstract Smart wound dressings capable of detecting, monitoring, and regulating complicated dynamic healing processes hold tremendous potential in tissue reconstruction. Micro/nanofiber‐based materials are regarded as one the most promising candidates to develop smart owing their remarkable features including architectural mimicry extracellular matrix, tunability structural assembly, diversity functionality. Herein, latest progress micro/nanoscale fiber‐based terms composition engineering, design, applications management is comprehensively reviewed. This work begins with advances fibers stimuli‐responsive fibers, shape memory conductive fibers. Then, design from conventional 2D fibrous membrane emerging 3D sponge/hydrogel thoroughly discussed. Furthermore, micro/nanofibrous drug delivery, biomechanical stimulation, electrical monitoring highlighted. Finally, article offers perspectives on existing challenges future directions for management.

Language: Английский

Citations

21

Sensing patches for biomarker identification in skin-derived biofluids DOI
Wei Chen,

Danni Fu,

Tianyue Ma

et al.

Biosensors and Bioelectronics, Journal Year: 2024, Volume and Issue: 258, P. 116326 - 116326

Published: April 22, 2024

Language: Английский

Citations

8