2018
DOI: 10.1016/j.msec.2017.12.019
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Hybrid PCL/CaCO3 scaffolds with capabilities of carrying biologically active molecules: Synthesis, loading and in vivo applications

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Cited by 47 publications
(41 citation statements)
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“…Saveleva et al recently tested a PCL/CaCO 3 scaffold loaded with tannic acid as a model substance in vivo and demonstrated benecial effects of the implanted scaffold on the stabilisation of blood vessels in rats by the release of loaded drugs, which, in turn, was induced by the recrystallisation of vaterite to calcite. 28 It was also shown that the introduction of vaterite particles as a ller or coating onto polymer scaffolds induced the biomimetic precipitation of HAp from simulated body uid. 21,29 A number of studies demonstrated that the nucleation and growth processes of CaCO 3 crystals are affected by the microenvironment.…”
Section: Introductionmentioning
confidence: 99%
“…Saveleva et al recently tested a PCL/CaCO 3 scaffold loaded with tannic acid as a model substance in vivo and demonstrated benecial effects of the implanted scaffold on the stabilisation of blood vessels in rats by the release of loaded drugs, which, in turn, was induced by the recrystallisation of vaterite to calcite. 28 It was also shown that the introduction of vaterite particles as a ller or coating onto polymer scaffolds induced the biomimetic precipitation of HAp from simulated body uid. 21,29 A number of studies demonstrated that the nucleation and growth processes of CaCO 3 crystals are affected by the microenvironment.…”
Section: Introductionmentioning
confidence: 99%
“…This has been shown for both small drugs (e.g. tannic acid releasing for weeks 122 ) and biomacromolecule RNase. 123 Most of the CaCO 3 -based scaffolds are composites made of polymer hydrogels with VCC crystals embedded into polymer networks and either homogeneously distributed inside gels 123,124 or representing coatings, e.g.…”
Section: Vcc For Tissue Engineeringmentioning
confidence: 80%
“…A striking example of a solution to this problem is the work of Savelyeva et al They coated PCL nanofibers by CaCO3 particles loaded tannic acid. It was reported that particles improve cell adhesion on the surface of the PCL implant, and when connected to the bone, after a while passed into the form of hydroxyapatite, which significantly improved the integration of the implant on both sides [138] ( Figure 2). It is these aspects that limit the use of pure polymers for tissue engineering prompting to use of hybrid materials, which are overall better suited for fine-tuning of relevant properties of implants [131], and can be also used for drug delivery through incorporated particles.…”
Section: Hybrid Biomaterials Applied For Tendonmentioning
confidence: 98%
“…A striking example of a solution to this problem is the work of Savelyeva et al They coated PCL nanofibers by CaCO 3 particles loaded tannic acid. It was reported that particles improve cell adhesion on the surface of the PCL implant, and when connected to the bone, after a while passed into the form of hydroxyapatite, which significantly improved the integration of the implant on both sides [138] (Figure 2).…”
Section: Hybrid Biomaterials Applied For Tendonmentioning
confidence: 98%
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