4.5 Article

Replacing centrifugation with mixing in urine analysis enriches protein pool in the urine samples

Journal

ANALYTICAL BIOCHEMISTRY
Volume 628, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ab.2021.114284

Keywords

Urinalysis; Urine mixing; Proteomic analysis; Western blot; Protein biomarkers

Funding

  1. National Centre for Research and Development
  2. Polish-Norwegian Research Programme [Pol/Nor/196258/59/2013]

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Centrifuging urine samples removes proteins and enriches them with important proteins, increasing the possibility of finding new biomarkers and improving diagnostic accuracy for diseases undiagnosable with classic urine analysis.
Urine is the basic diagnostic material, easy to collect, not requiring invasive approach. During standard procedure the urine samples are centrifuged and the supernatant analysed physically, biochemically, and microscopically. The centrifugation step removes proteins including those forming aggregates especially in the state of illness and after transplantation. Here, we analysed the effect of urine centrifuging on specific protein content in urine samples obtained from cardiovascular patients (CVD) and after kidney or liver transplantation. We tested homogeneous whole urine samples, standardly centrifuge one, and the pellet after centrifuging. Protein content was examined using Western blot analysis and mass spectrometry (MS) of samples from CVD patients or the one after transplantation. The average of 21% proteins from non-centrifuged samples were found in the pellet removed after standard centrifugation. MS analysis confirmed that diagnostically important proteins were located there in. In 90% of cases whole urine samples contained more proteins than standard supernatant, among them e.g. proteins involved in immunological response like immunoglobulins and complement compounds secreted by leucocytes. Replacing centrifuging with intensive mixing of urine samples provides a method of enriching the samples with proteins removed during standard procedure, thus increasing possibility of finding new biomarkers for diseases undiagnosable with classic urine analysis.

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