Advancements in electrochemical biosensing of cardiovascular disease biomarkers.
Sakthivel KogularasuWan-Ching LinYen-Yi LeeBo-Wun HuangYung-Lung ChenGuo-Ping Chang-ChienJinn-Kong SheuPublished in: Journal of materials chemistry. B (2024)
Cardiovascular diseases (CVDs) stand as a predominant global health concern, introducing vast socioeconomic challenges. In addressing this pressing dilemma, enhanced diagnostic modalities have become paramount, positioning electrochemical biosensing as an instrumental innovation. This comprehensive review navigates the multifaceted terrain of CVDs, elucidating their defining characteristics, clinical manifestations, therapeutic avenues, and intrinsic risk factors. Notable emphasis is placed on pivotal diagnostic tools, spotlighting cardiac biomarkers distinguished by their unmatched clinical precision in terms of relevance, sensitivity, and specificity. Highlighting the broader repercussions of CVDs, there emerges an accentuated need for refined diagnostic strategies. Such an exploration segues into a profound analysis of electrochemical biosensing, encapsulating its foundational principles, diverse classifications, and integral components, notably recognition molecules and transducers. Contemporary advancements in biosensing technologies are brought to the fore, emphasizing pioneering electrode architectures, cutting-edge signal amplification processes, and the synergistic integration of biosensors with microfluidic platforms. At the core of this discourse is the demonstrated proficiency of biosensors in detecting cardiovascular anomalies, underpinned by empirical case studies, systematic evaluations, and clinical insights. As the narrative unfolds, it addresses an array of inherent challenges, spanning intricate technicalities, real-world applicability constraints, and regulatory considerations, finally, by casting an anticipatory gaze upon the future of electrochemical biosensing, heralding a new era of diagnostic tools primed to revolutionize cardiovascular healthcare.
Keyphrases
- label free
- cardiovascular disease
- global health
- healthcare
- risk factors
- gold nanoparticles
- public health
- transcription factor
- type diabetes
- high resolution
- left ventricular
- current status
- mass spectrometry
- health information
- cardiovascular events
- autism spectrum disorder
- single cell
- liquid chromatography
- circulating tumor cells