| Literature DB >> 30841927 |
Junjie Xu1,2,3, Lingzi Liu1, Jinxin He4, Shijiao Ma1,3, Shuli Li1,3, Zhanhui Wang5, Ting Xu4, Wei Jiang1, Ying Wen1,3, Ying Li1,3, Jiesheng Tian6,7, Feng Li8.
Abstract
BACKGROUND: Magnetosomes (also called bacterial magnetic nanoparticles; BMPs) are biomembrane-coated nanoparticles synthesized by magnetotactic bacteria (MTB). Engineered BMPs fused to protein A (termed ∆F-BMP-FA) bind antibodies (Abs) automatically, and thus provide a series of potential advantages. However, no report so far has systematically evaluated functional applicability of genetically engineered BMPs.Entities:
Keywords: Bacterial magnetic nanoparticles; Gentamicin sulfate; Protein A; Surface display technique; Vibrio parahaemolyticus
Mesh:
Substances:
Year: 2019 PMID: 30841927 PMCID: PMC6402170 DOI: 10.1186/s12951-019-0469-z
Source DB: PubMed Journal: J Nanobiotechnology ISSN: 1477-3155 Impact factor: 10.435
Fig. 2Purification of engineered magnetosomes (∆F-BMP-FA). a Magnetic rack containing purified ∆F-BMP-FA (arrow). b Protein concentration in supernatant following various numbers of wash cycles. Protein concentration fell below 0.1 following seven wash cycles, and no further protein was dropped as number of wash cycles increased. c Electron micrograph of purified ∆F-BMP-FA after seven wash cycles. Photo background reveals no stain; i.e., ∆F-BMP-FA was well purified. d Schematic diagram of BMP-A-Ab complex
Fig. 1Submerged culture of M. gryphiswaldense ∆F-FA in 42-L fermentor: Cmag, dO2, and cell growth. a Cmag and dO2 values as a function of time. Cmag began rising above zero only after dO2 fell below 1%. b Growth curve. Cell density is estimated by OD565. Maximal Cmag value was 0.68. Maximal OD565 was 7.91. Total dry weight of collected cells was 67.8 g
Particle (hydrated radius) size, zeta potential, and polydispersity of ∆F-BMP-FA following various numbers of wash cycles
| Number of wash cycles | Hydrated radius | Zeta potential | Polydispersity |
|---|---|---|---|
| 5 | 674 ± 1.2 | − 38.41 ± 0.05 | 0.279 |
| 6 | 783.7 ± 5.8 | − 38.38 ± 0.56 | 0.307 |
| 7 | 789.1 ± 2.6 | − 38.36 ± 0.43 | 0.282 |
| 8 | 820 ± 3.9 | − 38.4 ± 0.32 | 0.261 |
One sample was prepared for each wash cycles and each sample was run 10 cycles (n = 10)
Fig. 3Optimization of conditions for conjugation of Ab to ∆F-BMP-FA. a Optimization of wash cycle number. Amount of linked Ab was maximal for ∆F-BMP-FA from seven wash cycles. b Optimization of ∆F-BMP-FA weight used for linkage to 300 µg Ab. Optimal weight ratio was 1:3. c Optimization of linkage temperature and time. Maximal linkage rate was observed for linking for 2 h at 30 °C. d Optimization of coupling buffer used for linkage of BMP to Ab. 1: 10 mmol/L PBS, pH 7.4. 2: 10 mmol/L Tris–HCl, pH 7.4. 3: 10 mmol/L HEPES, pH 7.4. 4: 10 mmol/L Na2HPO3-C6H8O7, pH 7.4. 5: 10 mmol/L KH2PO3-NaOH, pH 7.4. Buffer #2 (10 mmol/L Tris–HCl, pH 7.4) was selected for use in subsequent experiments
Fig. 4Detection of V. parahaemolyticus (Vp) by BMP-A-Ab in comparison with commercial immunomagnetic bead/Ab complex (MB-A-Ab). a Detection of Vp using ∆F-BMP-FA (schematic). Step I: ∆F-BMP-FA is coupled to anti-Vp Ab to construct BMP-A-Ab. Step II: BMP-A-Ab captures Vp. Step III: capture by magnetic rack. Step IV: captured Vp is resuspended and spread on plate. b Comparison of Vp capture rates for BMP-A-Ab vs. MB-A-Ab with three concentrations of Vp. Capture rate was consistently greater for BMP-A-Ab. Maximal capture rate was 93%, for Vp number 630 ± 25 per mL
OD450 values from dilution gradient of gentamicin sulfate standard solution, determined by double Ab sandwich ELISA
| Concentration (ng/mL) | 1000 | 333.33 | 111.11 | 55.56 | 37.04 | 27.78 | 12.35 | 4.12 | 1.37 | 0.46 |
|---|---|---|---|---|---|---|---|---|---|---|
| OD450 | 2.154 | 1.959 | 1.644 | 1.2 | 0.761 | 0.612 | 0.352 | 0.185 | 0.186 | 0.179 |
| OD450 blank | 0.178 | 0.178 | 0.178 | 0.178 | 0.178 | 0.178 | 0.178 | 0.178 | 0.178 | 0.178 |
| OD450-OD450 blank | 1.976 | 1.781 | 1.466 | 1.022 | 0.583 | 0.434 | 0.174 | 0.007 | 0.008 | 0.001 |
| SD | 0.024 | 0.064 | 0.14 | 0.057 | 0.099 | 0.093 | 0.030 | 0.011 | 0.008 | 0.006 |
Fig. 5Gentamicin sulfate standard curve determined by double Ab sandwich ELISA
Recovery of gentamicin sulfate by BMP-A-Ab
| Initial gentamicin sulfate (ng) | OD450 of extracted gentamicin sulfate (ng/mL) | Extracted gentamicin sulfate (ng) | Recovery rate of gentamicin sulfate (%) | RSD (%) |
|---|---|---|---|---|
| 2.5 | 0.2295 (6.64) | 0.664 | 26.56 | 2.8 |
| 1.25 | 0.2065 (4.66) | 0.406 | 32.48 | 4.7 |
| 0.5 | 0.2005 (4.06) | 0.466 | 93.2 | 8.3 |
| 0.25 | 0.1825 (0.00417) | 0.0004 | 0.61 | 4.3 |
Three samples were prepared for each concentration level (n = 3)