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Hepatic Cellular Distribution of Silica Nanoparticles by Surface Energy Modification.

A-Rang LeeKibeom NamByeong Jun LeeSeoung-Woo LeeSu-Min BaekJun-Sun BangSeong-Kyoon ChoiSang-Joon ParkTae-Hwan KimKyu-Shik JeongDong Yun LeeJin-Kyu Park
Published in: International journal of molecular sciences (2019)
The cellular distribution of silica nanoparticles (NPs) in the liver is not well understood. Targeting specific cells is one of the most important issues in NP-based drug delivery to improve delivery efficacy. In this context, the present study analyzed the relative cellular distribution pattern of silica NPs in the liver, and the effect of surface energy modification on NPs. Hydrophobic NP surface modification enhanced NP delivery to the liver and liver sinusoid fFendothelial cells (LSECs). Conversely, hydrophilic NP surface modification was commensurate with targeting hepatic stellate cells (HSCs) rather than other cell types. There was no notable difference in NP delivery to Kupffer cells or hepatocytes, regardless of hydrophilic or hydrophobic NP surface modification, suggesting that both the targeting of hepatocytes and evasion of phagocytosis by Kupffer cells are not associated with surface energy modification of silica NPs. This study provides useful information to target specific cell types using silica NPs, as well as to understand the relationship between NP surface energy and the NP distribution pattern in the liver, thereby helping to establish strategies for cell targeting using various NPs.
Keyphrases
  • induced apoptosis
  • cell cycle arrest
  • drug delivery
  • cancer therapy
  • single cell
  • endoplasmic reticulum stress
  • stem cells
  • cell death
  • cell proliferation
  • mass spectrometry
  • social media
  • pi k akt
  • oxide nanoparticles