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Bitte verwenden Sie diesen Link, wenn Sie dieses Dokument zitieren oder verlinken wollen: https://nbn-resolving.org/urn:nbn:de:gbv:9-opus-62338

The role of biodegradable poly-(L-lactide)-based polymers in blood cell activation and platelet-monocyte interaction

  • Abstract: The main purpose of new stent technologies is to overcome unfavorable material-related incompatibilities by producing bio- and hemo-compatible polymers with anti-inflammatory and antithrombogenic properties. In this context, wettability is an important surface property, which has a major impact on the biological response of blood cells. However, the influence of local hemodynamic changes also influences blood cell activation. Therefore, we investigated biodegradable polymers with different wettability to identify possible aspects for a better prediction of blood compatibility. We applied shear rates of 100 s−1 and 1500 s−1 and assessed platelet and monocyte activation as well as the formation of CD62P+ monocyte-bound platelets via flow cytometry. Aggregation of circulating platelets induced by collagen was assessed by light transmission aggregometry. Via live cell imaging, leukocytes were tracked on biomaterial surfaces to assess their average velocity. Monocyte adhesion on biomaterials was determined by fluorescence microscopy. In response to low shear rates of 100 s−1 , activation of circulating platelets and monocytes as well as the formation of CD62P+ monocyte-bound platelets corresponded to the wettability of the underlying material with the most favorable conditions on more hydrophilic surfaces. Under high shear rates, however, blood compatibility cannot only be predicted by the concept of wettability. We assume that the mechanisms of blood cell-polymer interactions do not allow for a rule-of-thumb prediction of the blood compatibility of a material, which makes extensive in vitro testing mandatory.

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Metadaten
Author: Anne Strohbach, Friedemann Maess, Katharina Wulf, Svea Petersen, Niels Grabow, Klaus-Peter Schmitz, Stephan B. Felix, Raila Busch
URN:urn:nbn:de:gbv:9-opus-62338
DOI:https://doi.org/https://doi.org/10.3390/ijms22126340
ISSN:1422-0067
Parent Title (English):Int. J. Mol. Sci.
Place of publication:17
Document Type:Article
Language:English
Date of Publication (online):2021/06/13
Release Date:2022/05/24
Tag:leukocyte activation; platelet activation; platelet–monocyte aggregates; poly-(L-lactide);; shear stress
Volume:22
Issue:12
Article Number:4340
Faculties:Universitätsmedizin / Kliniken und Polikliniken für Innere Medizin
Collections:Artikel aus DFG-gefördertem Publikationsfonds
Licence (German):License LogoCreative Commons - Namensnennung