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020 _a9781394213559
020 _a9781394214143
020 _a1394214146
020 _a1394214731
020 _a9781394214747
020 _a139421474X
020 _a9781394214730
_q(electronic bk.)
024 7 _a10.1002/9781394214143
_2doi
035 _a(OCoLC)1515466892
_z(OCoLC)1511138356
035 9 _a(OCLCCM-Owned)1515466892
040 _aSFB
_beng
_erda
_epn
_cSFB
_dDG1
_dOCLCO
_dUKAHL
_dUKKRT
_dEBLCP
_dCLOUD
_dHOPLA
_dN$T
041 _aeng
049 _aMAIN
050 4 _aR856
082 0 0 _223
_a610.28
245 0 0 _aSoft Materials-Based Biosensing Medical Applications.
264 1 _aNewark :
_bWiley ;
_aBeverly, MA :
_bScrivener Publishing,
_c2025.
264 4 _c©2025.
300 _a1 online resource (522 pages)
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
520 _aThe book offers a comprehensive, interdisciplinary overview of how innovative soft materials are revolutionizing biosensing technologies, making it an essential read for anyone interested in cutting-edge advancements in biomedical research and healthcare. Soft materials include granular materials, foams, gels, polymers, surfactants, functional organics, and biological molecules. These structures can be altered by thermal or mechanical stress due to their ability to self-organize into mesoscopic physical structures. They are becoming increasingly significant as functional materials for broader applications because of their rich surface chemistry and versatile functions. A biosensor is an analytical tool for chemical compound detection that combines a biological element with a physicochemical detector. Sensitive biological components, such as proteins, carbohydrates, tissue, bacteria, and enzymes, are collected from a biomimetic element that interacts and binds with the analyte under investigation. In biosensors, soft matter may function as both a sensing and transducing component. The interplay of soft matter with biomolecular analytes results in cell signaling pathways, diagnostic tests for applications in low-resource environments, prospective drug development, molecular biodetection, chemical sensors, and biological sensors. Understanding these biomolecular interactions in the context of acute illnesses is critical for biomedical research and healthcare. This has fueled efforts to create a biosensor that is effective, low-cost, and label-free. Several approaches using soft materials to functionalize and tailor structures have greatly advanced science, including chemistry, physics, pharmaceutical science, materials science, and engineering. Soft Materials-Based Biosensing Medical Applications summarizes recent advances in soft materials with unique physicochemical properties that synergistically promote biosensing systems. Audience The book will be read by researchers, materials scientists, electronic and AI engineers, as well as pharmaceutical and biomedical professionals interested in the uses of biosensing.
588 _aDescription based on publisher supplied metadata and other sources.
650 0 _aBiomedical engineering.
_0http://id.loc.gov/authorities/subjects/sh85014237
650 0 _aBiosensors.
_0http://id.loc.gov/authorities/subjects/sh85014260
650 2 _aBiosensing Techniques
_0https://id.nlm.nih.gov/mesh/D015374
650 6 _aGénie biomédical.
650 6 _aBiocapteurs.
650 7 _abiomedical engineering.
_2aat
650 7 _aMaterials Science.
_2bisacsh/2024
650 7 _aTECHNOLOGY & ENGINEERING.
_2bisacsh/2024
655 0 _aElectronic books.
700 1 _aGupta, Deepak.
700 1 _aSingh, Milan.
700 1 _aMalviya, Rishabha.
700 1 _aSundram, Sonali.
776 0 8 _iPrint version:
_z9781394213559
776 0 8 _iPrint version:
_z1394213557
856 4 0 _uhttps://onlinelibrary.wiley.com/doi/book/10.1002/9781394214143
_yFull text is available at Wiley Online Library. Click here to view.
942 _2ddc
_cER