Temporal Assessment of Protein Stability in Dried Blood Spots
Sun et al.
The finding, in our words
Protein stability in dried blood spots was evaluated over six months at room temperature using quantitative mass spectrometry, showing that four per cent of proteins altered during drying and nineteen proteins exhibited time-dependent changes during storage, with hydrophilic proteins being most unstable. These findings provide essential validation data for the use of dried blood spots in decentralised clinical proteomics applications.
A paraphrase to the Library’s standard, never the abstract. The source is one link away and is always the authority.
The analysis indicates that dried blood spots and volumetric absorptive microsampling enable minimally invasive monitoring of prohibited substances, with volumetric absorptive microsampling offering improved quantitative reliability over traditional dried spots.
Volumetric absorptive microsampling showed better precision than dried blood spots and a metabolic profile closer to whole blood, with stable signalling lipids for 24 hours at room temperature but significant changes after one week unless stabilised, indicating feasibility for decentralised sampling with the need for storage strategies.
Thangavelu et al., Analytical and bioanalytical chemistry · source ↗
Capillary dried blood spots, after haematocrit-dependent conversion, showed good agreement with plasma for 25-hydroxyvitamin D quantification, with 90 per cent of results within 20 per cent of plasma and substantial to almost perfect agreement in status classification, supporting reliable home self-collection for large-scale vitamin D monitoring.
Heughebaert et al., Clinical chemistry and laboratory medicine (paywalled) · source ↗
This study validated a dried blood spot method for tacrolimus monitoring and demonstrated agreement with venous whole blood measurements in kidney transplant recipients. It also found that dried blood spot analysis of the biomarker CXCL-10 was elevated in patients experiencing rejection or infection, supporting its use for decentralised monitoring.
This review establishes that microsampling across blood, saliva, urine and stool matrices offers validated workflows and regulatory recognition for human biomonitoring comparable to conventional methods. It finds that these decentralised approaches enhance participant acceptability and enable screening in remote or low-resource settings.