4.8 Article

Accelerating the clearance of mutant huntingtin protein aggregates through autophagy induction by europium hydroxide nanorods

Journal

BIOMATERIALS
Volume 35, Issue 3, Pages 899-907

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2013.10.024

Keywords

Europium hydroxide [Eu-III(OH)(3)] nanorods; Autophagy; Huntingtin aggregation; Chloroquine (CQ); Nanomedicine

Funding

  1. National Basic Research Program of China [2013CB933900]
  2. National Natural Science Foundation of China [30721002, 31071211, 30830036, 31170966, 31101020, 81170698]
  3. Innovation Program of the Chinese Academy of Sciences [KSCX2-YW-R-139]
  4. Fundamental Research Funds for the Central Universities [WK2070000008]
  5. Clinical Key Subjects Program of the Ministry of Public Health
  6. DST, Government of India, New Delhi [SR/S2/RJN-04/2010, GAP0305]
  7. CSIR, New Delhi for 'CSIR-Mayo Clinic Collaboration for Innovation and Translational Research' [CMPP 09, MLP0020]
  8. UGC, New Delhi

Ask authors/readers for more resources

Autophagy is one of the well-known pathways to accelerate the clearance of protein aggregates, which contributes to the therapy of neurodegenerative diseases. Although there are numerous reports that demonstrate the induction of autophagy with small molecules including rapamycin, trehalose and lithium, however, there are few reports mentioning the clearance of aggregate-prone proteins through autophagy induction by nanoparticles. In the present article, we have demonstrated that europium hydroxide [Eu-III(OH)(3)] nanorods can reduce huntingtin protein aggregation (EGFP-tagged huntingtin protein with 74 polyQ repeats), responsible for neurodegenerative diseases. Again, we have found that these nanorods induce authentic autophagy flux in different cell lines (Neuro 2a, PC12 and HeLa cells) through the expression of higher levels of characteristic autophagy marker protein LC3-II and degradation of selective autophagy substrate/cargo receptor p62/SQSTM1. Furthermore, depression of protein aggregation clearance through the autophagy blockade has also been observed by using specific inhibitors (wortmannin and chloroquine), indicating that autophagy is involved in the degradation of huntingtin protein aggregation. Since [Eu-III(OH)(3)] nanorods can enhance the degradation of huntingtin protein aggregation via autophagy induction, we strongly believe that these nanorods would be useful for the development of therapeutic treatment strategies for various neurodegenerative diseases in near future using nanomedicine approach. (C) 2013 Elsevier Ltd. All rights reserved.

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