Human primary endothelial label-free biochip assay reveals unpredicted functions of plasma serine proteases

Debreczeni, Márta Lídia [Nagy-Debreczeni, Márta Lídia (Immunológia, Sejt...), author] III. Department of Internal Medicine (SU / FM / C); Szekacs, Inna* [Székács, Inna (nanobioszenzorika), author] Institute of Technical Physics and Materials Sc...; Fotonika Laboratórium (MFA); Kovacs, Boglarka [Kovács, Boglárka (nanobioszenzorika), author] Fotonika Laboratórium (MFA); Saftics, Andras [Saftics, András (Anyagtudomány), author] Fotonika Laboratórium (MFA); Kurunczi, Sándor [Kurunczi, Sándor (Bioszenzorika), author] Fotonika Laboratórium (MFA); Gál, Péter [Gál, Péter (Szerkezeti biokémia), author] Institute of Enzymology (RCNS); Dobó, József [Dobó, József (biokémia és immun...), author] Institute of Enzymology (RCNS); Cervenak, László** ✉ [Cervenak, László (Immunológia), author] III. Department of Internal Medicine (SU / FM / C); Horvath, Robert ✉ [Horváth, Róbert (Bioszenzorok), author] III. Department of Internal Medicine (SU / FM / C); Lendület Nanobioszenzorika Kutatócsoport (MFA); Fotonika Laboratórium (MFA)

English Article (Journal Article) Scientific
Published: SCIENTIFIC REPORTS 2045-2322 10 (1) Paper: 3303 , 14 p. 2020
  • Szociológiai Tudományos Bizottság: A nemzetközi
  • Regionális Tudományok Bizottsága: B nemzetközi
  • SJR Scopus - Multidisciplinary: D1
Identifiers
Fundings:
  • (EFOP-3.6.3-VEKOP-16-2017-00009)
Subjects:
  • Biomaterials (as related to medical implants, devices, sensors)
  • Biophotonics
  • Physics of biological systems
  • Surface science and nanostructures
  • Nano-technology
Tissue-on-a-chip technologies are more and more important in the investigation of cellular function and in the development of novel drugs by allowing the direct screening of substances on human cells. Constituting the inner lining of vessel walls, endothelial cells are the key players in various physiological processes, moreover, they are the first to be exposed to most drugs currently used. However, to date, there is still no appropriate technology for the label-free, real-time and high-throughput monitoring of endothelial function. To this end, we developed an optical biosensor-based endothelial label-free biochip (EnLaB) assay that meets all the above requirements. Using our EnLaB platform, we screened a set of plasma serine proteases as possible endothelial cell activators, and first identified the endothelial cell activating function of three important serine proteases – namely kallikrein, C1r and mannan-binding lectin-associated serine-protease 2 (MASP-2) – and verified these results in well-established functional assays. EnLaB proved to be an effective tool for revealing novel cellular mechanisms as well as for the high-throughput screening of various compounds on endothelial cells.
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2025-04-01 22:37