Literature DB >> 30159635

Surface topography of polylactic acid nanofibrous mats: influence on blood compatibility.

Abiramy Soundararajan1, Jyorthana Muralidhar R1, Ramya Dhandapani1, Janani Radhakrishnan1, Amrutha Manigandan1, Sivashankari Kalyanasundaram1, Swaminathan Sethuraman1, Anuradha Subramanian2.   

Abstract

Fabricating nanofibrous scaffolds with robust blood compatibility remains an unmet challenge for cardiovascular applications since anti-thrombogenic surface coatings did not withstand physiological shear force. Hence, the present study envisages the influence of smooth and porous topographies of poly(lactic acid) (PLA) nanofibers on hemocompatibility as it could offer time-independent blood compatibility. Further, recent studies have evolved to integrate various contrasting agents for augmenting the prognostic properties of tissue engineered scaffolds; an attempt was also made to synthesize Curcumin-superparamagnetic iron oxide nanoparticle complex (Cur-SPION) as a contrasting agent and impregnated into PLA nanofibers for evaluating the blood compatibility. Herein, electrospun nanofibers of PLA with different topographies (smooth and porous) were fabricated and characterized for surface morphology, zeta potential, fluorescence, and crystallinity. The scaffolds with smooth, porous and rough surface topographies were thoroughly investigated for its hemocompatibility by evaluating hemolysis percentage, platelet adhesion, in vitro kinetic clotting time, serum protein adsorption, plasma recalcification time (PRT), capture and release of erythrocytes. Although the nanofibers of all three groups showed acceptable hemolytic percentage (HP < 5%), the adhered RBCs on Cur-SPION based fibers undergo morphological transformation from biconcave discocytes to echinocytes with cube-like protrusions. On the contrary, no morphological changes were observed in RBCs cultured on smooth and porous nanofibers. Porous fibers exhibited excellent anti-thrombogenic property and adhered lesser platelets and maintained the discoidal morphology of native platelets. Cur-SPION integrated PLA nanofibers showed inactivated platelets with anti-thrombogenic activity compared to smooth nanofibers. In conclusion, PLA nanofibers porous topography did not affect the RBC membrane integrity and maintained discoidal morphology of platelets with superior anti-thrombogenic activity. However, smooth and Cur-SPION integrated PLA nanofibers were found to activate the platelets and deform the RBC membrane integrity, respectively. Hence, the nanofibers with porous structures provide an ideal topography for time-independent hemocompatibility.

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Year:  2018        PMID: 30159635     DOI: 10.1007/s10856-018-6153-2

Source DB:  PubMed          Journal:  J Mater Sci Mater Med        ISSN: 0957-4530            Impact factor:   3.896


  32 in total

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  6 in total

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Journal:  Iran J Pharm Res       Date:  2021       Impact factor: 1.696

2.  Electrospun fibre diameter and its effects on vascular smooth muscle cells.

Authors:  James Alexander Reid; Alison McDonald; Anthony Callanan
Journal:  J Mater Sci Mater Med       Date:  2021-10-09       Impact factor: 3.896

3.  Biocompatibility and degradation comparisons of four biodegradable copolymeric osteosynthesis systems used in maxillofacial surgery: A goat model with four years follow-up.

Authors:  Barzi Gareb; Nico B van Bakelen; Léon Driessen; Pieter Buma; Jeroen Kuipers; Dirk W Grijpma; Arjan Vissink; Ruud R M Bos; Baucke van Minnen
Journal:  Bioact Mater       Date:  2022-01-19

4.  The effect of size and surface ligands of iron oxide nanoparticles on blood compatibility.

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Review 5.  Surface Functionalities of Polymers for Biomaterial Applications.

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Review 6.  Titanium or Biodegradable Osteosynthesis in Maxillofacial Surgery? In Vitro and In Vivo Performances.

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Journal:  Polymers (Basel)       Date:  2022-07-07       Impact factor: 4.967

  6 in total

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