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Blood microsampling technologies: Innovations and applications in 2022
by
Thangavelu, Manchu Umarani
, Kindt, Alida
, Reiss, Irwin K. M.
, Wouters, Bert
, Hankemeier, Thomas
in
Automation
/ Blood
/ Capillary electrophoresis
/ Chromatography
/ Cytokines
/ dried blood spot
/ forensic toxicology
/ Innovations
/ Kinases
/ Mass spectrometry
/ microsampling
/ Pathogens
/ Pharmacodynamics
/ Pharmacokinetics
/ Review
/ Reviews
/ Scientific imaging
/ Technological change
/ Therapeutic drug monitoring
/ volumetric absorptive microsampling
2023
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Blood microsampling technologies: Innovations and applications in 2022
by
Thangavelu, Manchu Umarani
, Kindt, Alida
, Reiss, Irwin K. M.
, Wouters, Bert
, Hankemeier, Thomas
in
Automation
/ Blood
/ Capillary electrophoresis
/ Chromatography
/ Cytokines
/ dried blood spot
/ forensic toxicology
/ Innovations
/ Kinases
/ Mass spectrometry
/ microsampling
/ Pathogens
/ Pharmacodynamics
/ Pharmacokinetics
/ Review
/ Reviews
/ Scientific imaging
/ Technological change
/ Therapeutic drug monitoring
/ volumetric absorptive microsampling
2023
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Do you wish to request the book?
Blood microsampling technologies: Innovations and applications in 2022
by
Thangavelu, Manchu Umarani
, Kindt, Alida
, Reiss, Irwin K. M.
, Wouters, Bert
, Hankemeier, Thomas
in
Automation
/ Blood
/ Capillary electrophoresis
/ Chromatography
/ Cytokines
/ dried blood spot
/ forensic toxicology
/ Innovations
/ Kinases
/ Mass spectrometry
/ microsampling
/ Pathogens
/ Pharmacodynamics
/ Pharmacokinetics
/ Review
/ Reviews
/ Scientific imaging
/ Technological change
/ Therapeutic drug monitoring
/ volumetric absorptive microsampling
2023
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Blood microsampling technologies: Innovations and applications in 2022
Journal Article
Blood microsampling technologies: Innovations and applications in 2022
2023
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Overview
With the development of highly sensitive bioanalytical techniques, the volume of samples necessary for accurate analysis has reduced. Microsampling, the process of obtaining small amounts of blood, has thus gained popularity as it offers minimal‐invasiveness, reduced logistical costs and biohazard risks while simultaneously showing increased sample stability and a potential for the decentralization of the approach and at‐home self‐sampling. Although the benefits of microsampling have been recognised, its adoption in clinical practice has been slow. Several microsampling technologies and devices are currently available and employed in research studies for various biomedical applications. This review provides an overview of the state‐of‐the‐art in microsampling technology with a focus on the latest developments and advancements in the field of microsampling. Research published in the year 2022, including studies (i) developing strategies for the quantitation of analytes in microsamples and (ii) bridging and comparing the interchangeability between matrices and choice of technology for a given application, is reviewed to assess the advantages, challenges and limitations of the current state of microsampling. Successful implementation of microsampling in routine clinical care requires continued efforts for standardization and harmonization. Microsampling has been shown to facilitate data‐rich studies and a patient‐centric approach to healthcare and is foreseen to play a central role in the future digital revolution of healthcare through continuous monitoring to improve the quality of life.
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