4.7 Article

Magnetic nanoparticles coated with carboxylate-terminated carbosilane dendrons as a reusable and green approach to extract/ purify proteins

期刊

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
卷 414, 期 4, 页码 1677-1689

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-021-03794-7

关键词

Carbosilane dendron magnetic nanoparticles; Protein; Sustainability; Purification; Extraction

资金

  1. CRUE-CSIC
  2. Springer Nature
  3. Spanish Ministry of Science and Innovation [PID2020-114891RBI00]
  4. Comunidad of Madrid
  5. FSE program [S2018/BAA-4393]
  6. FEDER program [S2018/BAA-4393]
  7. MINECO [CTQ2017-86224-P]
  8. VI National RAMP
  9. DAMP
  10. I Plan 2008-2011
  11. Iniciativa Ingenio 2010
  12. Consolider Program
  13. CIBER Actions
  14. Instituto de Salud Carlos III
  15. European Regional Development Fund

向作者/读者索取更多资源

This study proposes a more sustainable alternative for protein extraction using magnetic nanoparticles coated with carboxylate-terminated carbosilane dendrons. It investigates the interaction of proteins with MNPs under different conditions and the suitable disruption of interactions post-extraction. Additionally, the method was successfully applied to the recovery/purification of proteins from food byproducts.
Extraction/purification of proteins, at both analytical and industrial levels, is a limiting step that usually requires the use of organic solvents and involves tedious work and a high cost. This work proposes a more sustainable alternative based on the use of magnetic nanoparticles (MNPs) coated with carboxylate-terminated carbosilane dendrons. MNPs coated with first- and second-generation carbosilane dendrons and bare MNPs were employed for the extraction of proteins with different molecular weights and charges. Interaction of proteins with MNPs significantly varied with the pH, the protein, and the dendron generation (different sizes and number of charges in the periphery). Optimal dendron:protein molar ratios and suitable conditions for disrupting interactions after protein extraction were also researched. Second-generation dendron-coated MNPs showed 100% retention capability for all proteins when using acidic conditions. They were reused without losing magnetism or interaction capacity after a disruption of protein-dendron interactions with 0.2% SDS at 100 degrees C for 10 min. The capacity of dendron-coated MNPs was successfully applied to the recovery/purification of proteins from two food byproducts, olive seeds and cheese whey.

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