4.7 Article

Cytotoxicity assessment of porous silicon microparticles for ocular drug delivery

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ejpb.2015.11.020

关键词

Eye; Cell culture; Porous silicon; Microparticle; Cytotoxicity

资金

  1. Alfred Kordelin Foundation
  2. Finnish Cultural Foundation
  3. Kuopio University Hospital
  4. Academy of Finland [138151]
  5. University of Eastern Finland through the NAMBER spearhead project
  6. Paivikki and Sakari Sohlberg Foundation
  7. Silma- ja Kudospankkisaatio
  8. Silmasaatio
  9. Sokeain Ystavat ry
  10. Academy of Finland (AKA) [138151, 138151] Funding Source: Academy of Finland (AKA)

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Porous silicon (PSi) is a promising material for the delivery and sustained release of therapeutic molecules in various tissues. Due to the constant rinsing of cornea by tear solution as well as the short half-life of intravitreal drugs, the eye is an attractive target for controlled drug delivery systems, such as PSi microparticles. Inherent barriers ensure that PSi particles are retained in the eye, releasing drugs at the desired speed until they slowly break down into harmless silicic acid. Here, we have examined the in vitro cytotoxicity of positively and negatively charged thermally oxidized (TOPSi) and thermally carbonized (TCPSi) porous silicon microparticles on human corneal epithelial (HCE) and retinal pigment epithelial (ARPE-19) cells. In addition to ocular assessment under an inverted microscope, cellular viability was evaluated using the CellTiter Blue (TM), CellTiter Fluor (TM), and lactate dehydrogenase (LDH) assays. CellTiter Fluor proved to be a suitable assay but due to non-specific and interfering responses, neither CellTiter Blue nor LDH assays should be used when evaluating PSi particles. Our results suggest that the toxicity of PSi particles is concentration-dependent, but at least at concentrations less than 200 mu g/ml, both positively and negatively charged PSi particles are well tolerated by human corneal and retinal epithelial cells and therefore applicable for delivering drug molecules into ocular tissues. (C) 2015 Elsevier B.V. All rights reserved.

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