| Literature DB >> 31667112 |
Mariana J Oviedo1, Katrin Quester1, Gustavo A Hirata1, Rafael Vazquez-Duhalt1.
Abstract
A new accurate spectrophotometric method for protein determination on nanoparticles is described. The method is based on the Coomassie blue dye that binds to the basic and aromatic amino acid residues of proteins, especially arginine and lysine. A known amount of reagent dye was mixed with a variety of protein-loaded nanoparticles. Thereafter the unconjugated reagent was mixed with excess protein (bovine serum albumin) and titrated. In this method, the reacted dye on the protein coating of nanoparticle is directly determined, in opposite to the conventional method, in which the conjugated protein is determined as the difference between the non-conjugated protein found in the supernatant after centrifugation, and the total amount of protein originally used. This method is able to measure amounts of coated protein lower than 1 ppm. •Simple and accurate method especially adapted for protein-coated nanoparticles.•The amino acid residues of protein in the nanoparticle surface react with Coomassie brilliant blue dye.•The unreacted dye is titrated with an excess of a standard protein.Entities:
Keywords: Determination of protein coating on nanoparticles; Nanobiotechnology; Nanoparticle; Protein coating; Protein determination
Year: 2019 PMID: 31667112 PMCID: PMC6812394 DOI: 10.1016/j.mex.2019.09.015
Source DB: PubMed Journal: MethodsX ISSN: 2215-0161
Estimated values of conjugated protein in different materials.
| Nanoparticle (NP) | Nanoparticle size (average, nm) | Protein load (μg protein/g NP) |
|---|---|---|
| HA:Eu3+ | 50 | 79.3 (±0.9) |
| BGO | 6–12 | 134.9 (±62.3) |
| Y2O3:Eu3+ with SiO2 | 50–80 | 65.8 (±0.6) |
| MWCNT-COOH | Nd | 126.1 (±10.3) |
| LDH | 20 | 119.8 (±2.7) |
| ZHCl Gly | 10 | 124.6 (±10.2) |
| ZHCl Asp | 10 | 94.1 (±0.9) |
| MOR | 8–12 | 116.5 (±9.2) |
Fig. 1Different nanoparticle preparations after protein reagent treatment and later centrifugation. 1) HA:Eu3+ nanoparticles treated with BSA in the presence of EDC in 10 mM Tris HCL. 2) HA:Eu3+ nanoparticles treated with BSA in the absence of EDC in 10 mM Tris HCL. 3) HA:Eu3+ nanoparticles treated with EDC and without BSA in 10 mM Tris HCL. 4) HA:Eu3+ nanoparticles in 10 mM Tris HCL without BSA and EDC.
Determination of protein content of ZnO nanoparticles covalently coated with different proteins.
| Protein | Protein load (μg protein/g NP) |
|---|---|
| Bovine serum albumin (BSA) | 146.8 |
| Cytochrome c (Cyt C) | 58.1 |
| Catalase (Cat) | 58.3 |
| Laccase (Lac) | 65.0 |
| Versatile peroxidase (VP) | 106.5 |
Fig. 2Extent of protein conjugation on the nanoparticle surface with different amounts of protein in the reaction mixture.
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