4.7 Article

Nanoencapsulation of Gla-Rich Protein (GRP) as a Novel Approach to Target Inflammation

期刊

出版社

MDPI
DOI: 10.3390/ijms23094813

关键词

nanoparticles; Gla-rich protein (GRP); chronic inflammatory diseases (CIDs); inflammation; vitamin K-dependent protein (VKDP)

资金

  1. Portuguese National Funds from FCT-Foundation for Science and Technology [DL57/2016/CP1361/CT0006, EXPL/BTM-TEC/0990/2021, UIDB/04326/2020, UIDP/04326/2020, LA/P/0101/2020]
  2. Research Unit on Applied Molecular Biosciences-UCIBIO [UIDP/04378/2020, UIDB/04378/2020]
  3. Associate Laboratory Institute for Health and Bioeconomy-i4HB [LA/P/0140/2020]
  4. AAC [41/ALG/2020, 072583]
  5. Portuguese Science and Technology Foundation (FCT) [SFRH/BD/111824/2015, PD/BD/137064/2018]
  6. Fundação para a Ciência e a Tecnologia [PD/BD/137064/2018, EXPL/BTM-TEC/0990/2021, SFRH/BD/111824/2015] Funding Source: FCT

向作者/读者索取更多资源

In this study, nanoparticles were produced to enhance the bioavailability, stability, and anti-inflammatory potential of Gla-rich protein. The results showed that the nanoparticles had suitable characteristics for biomedical applications and exhibited anti-inflammatory activity in vitro, indicating their potential therapeutic application.
Chronic inflammation is a major driver of chronic inflammatory diseases (CIDs), with a tremendous impact worldwide. Besides its function as a pathological calcification inhibitor, vitamin K-dependent protein Gla-rich protein (GRP) was shown to act as an anti-inflammatory agent independently of its gamma-carboxylation status. Although GRP's therapeutic potential has been highlighted, its low solubility at physiological pH still constitutes a major challenge for its biomedical application. In this work, we produced fluorescein-labeled chitosan-tripolyphosphate nanoparticles containing non-carboxylated GRP (ucGRP) (FCNG) via ionotropic gelation, increasing its bioavailability, stability, and anti-inflammatory potential. The results indicate the nanosized nature of FCNG with PDI and a zeta potential suitable for biomedical applications. FCNG's anti-inflammatory activity was studied in macrophage-differentiated THP1 cells, and in primary vascular smooth muscle cells and chondrocytes, inflamed with LPS, TNF alpha and IL-1 beta, respectively. In all these in vitro human cell systems, FCNG treatments resulted in increased intra and extracellular GRP levels, and decreased pro-inflammatory responses of target cells, by decreasing pro-inflammatory cytokines and inflammation mediators. These results suggest the retained anti-inflammatory bioactivity of ucGRP in FCNG, strengthening the potential use of ucGRP as an anti-inflammatory agent with a wide spectrum of application, and opening up perspectives for its therapeutic application in CIDs.

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