2013
DOI: 10.1016/j.bbagen.2013.04.032
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Fibrin nanoparticles as Possible vehicles for drug delivery

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Cited by 53 publications
(18 citation statements)
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“…190 These nano-fibrin scaffolds were also used to enhance angiogenesis in chitin/poly (butylene succinate)/bioactive glass 191 and chitin/calcium sulfate gels. 192 Vedakumari et al 193 developed a wet precipitation method for synthesizing FNPs. In this technique, first, a crude form of fibrin was isolated from bovine blood by stirring the blood with a glass rod.…”
Section: Application Of Nanotechnology In Fibrin-based Bone Tissue Enmentioning
confidence: 99%
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“…190 These nano-fibrin scaffolds were also used to enhance angiogenesis in chitin/poly (butylene succinate)/bioactive glass 191 and chitin/calcium sulfate gels. 192 Vedakumari et al 193 developed a wet precipitation method for synthesizing FNPs. In this technique, first, a crude form of fibrin was isolated from bovine blood by stirring the blood with a glass rod.…”
Section: Application Of Nanotechnology In Fibrin-based Bone Tissue Enmentioning
confidence: 99%
“…Biocompatibility of the FNPs was demonstrated by in vitro and in vivo analyses. 193 The authors, in their next study, prepared magnetic FNPs (MAG-FNPs). To this, they incinerated red blood cells of defibrinated blood and dissolved the residue in 5 N HCl to obtain an iron solution which was added dropwise to a fibrin/NaOH solution as mentioned earlier.…”
Section: Application Of Nanotechnology In Fibrin-based Bone Tissue Enmentioning
confidence: 99%
“…Significant upregulation of both CD4 + /CD8 + T-cells and CD80 + /CD86 + on the APCs suggested differentiate and in case of B cells, in stimulation of antibody production. Vedakumari et al[134] prepared FNPs using wet precipitation procedure without using factor XIII or other crosslinking reagents and evaluated their toxicity among others on the immune system. The FNPs did not significantly activate the classical, lectinor the alternative pathway of complement.…”
mentioning
confidence: 99%
“…Upon increasing the concentration of CQDs from 50 μg/mL to 250 μg/mL, the cell viability (%) was not affected significantly that retained the cell viability > 90 % in both cell lines as evidenced from the microscopical images. Previous report shows that the QDs which retain the cell viability >80 % are considered as safe materials for biological applications . Here, the synthesized CQDs show better biocompatible nature, and it can be used for various biological applications.…”
Section: Resultsmentioning
confidence: 84%