| Literature DB >> 30337953 |
Juan Long1, Xiao Zhao1, Fei Liang1, Nan Liu1, Yuying Sun1, Yongzhi Xi1.
Abstract
BACKGROUND: Fermentation condition optimization and nutrients screening are of equal importance for efficient production of plasmid DNA vaccines. This directly affects the downstream purification and final quality and yield of plasmid DNA vaccines. The present study aimed to optimize the fermentation conditions for high-throughput production of therapeutic DNA vaccine pcDNA-CCOL2A1 by engineered Escherichia coli DH5α, using the response surface method (RSM).Entities:
Keywords: Chicken type II procollagen; Engineered Escherichia coli; Optimizing fermentation conditions; Rheumatoid arthritis; Therapeutic DNA vaccine
Year: 2018 PMID: 30337953 PMCID: PMC6180442 DOI: 10.1186/s13036-018-0110-y
Source DB: PubMed Journal: J Biol Eng ISSN: 1754-1611 Impact factor: 4.355
Fig. 1a, b Single-factor analysis of basal culture medium revealed optimal carbon and nitrogen sources for producing therapeutic DNA vaccine pcDNA-CCOL2A1. a Evaluation of the optimal basal culture medium among LB, 2 × YT, TB, M9 (Glycerol) and M9 (Glucose) in shaking flask culture through One-Way ANOVA. b Screen the optimal carbon and nitrogen sources in shaking flask culture using One-Way ANOVA. *p < 0.05, * * p < 0.001. Data are expressed as the mean ± standard deviation (SD) of 3 independent experiments
Variables and their levels used in Plackett-Burman design for screening of culture conditions affecting the yield of plasmid DNA vaccine pcDNA-CCOL2A1 by the engineered E. coli DH5α
| Symbol code | Factors | Experimental values | |
|---|---|---|---|
| Low level (− 1) | High level (+1) | ||
| A(g/L) | Peptone | 16.00 | 24.00 |
| B(g/L) | Yeast extract | 10.00 | 15.00 |
| C(g/L) | NaCl | 5.00 | 7.50 |
| D(g/L) | Ampicilin | 0.05 | 0.10 |
| E(mL/L) | Microelement | 10.00 | 15.00 |
| F(g/L) | Mannitol | 5.00 | 7.50 |
| G | Initial pH | 6.00 | 8.00 |
| H(RPM) | Rotational speed | 180 | 250 |
| J(°C) | Temperature | 30.00 | 37.00 |
| K(OD) | Inoculum concentration | 0.10 | 0.20 |
| L | Dummy factors | ||
Plackett–Burman design matrix with response value for screening of culture conditions affecting the yield of plasmid DNA vaccine pcDNA-CCOL2A1 by the engineered E. coli DH5α
| Run | Variable levels | Plasmid yield | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| A | B | C | D | E | F | G | H | J | K | L | (mg/L) | |
| 1 | 1 | −1 | 1 | 1 | −1 | 1 | 1 | 1 | − 1 | −1 | − 1 | 258.29 ± 6.44 |
| 2 | −1 | 1 | 1 | −1 | 1 | 1 | 1 | − 1 | − 1 | − 1 | 1 | 202.98 ± 7.37 |
| 3 | 1 | −1 | − 1 | − 1 | 1 | − 1 | 1 | 1 | − 1 | 1 | 1 | 267.36 ± 11.00 |
| 4 | −1 | − 1 | − 1 | −1 | − 1 | −1 | − 1 | −1 | − 1 | −1 | − 1 | 158.51 ± 11.30 |
| 5 | −1 | −1 | − 1 | 1 | − 1 | 1 | 1 | −1 | 1 | 1 | 1 | 234.83 ± 14.17 |
| 6 | 1 | 1 | 1 | −1 | −1 | −1 | 1 | −1 | 1 | 1 | −1 | 279.81 ± 10.27 |
| 7 | 1 | 1 | −1 | 1 | 1 | 1 | −1 | − 1 | − 1 | 1 | − 1 | 312.86 ± 13.69 |
| 8 | −1 | 1 | 1 | 1 | −1 | − 1 | −1 | 1 | − 1 | 1 | 1 | 198.70 ± 11.36 |
| 9 | −1 | −1 | 1 | −1 | 1 | 1 | −1 | 1 | 1 | 1 | −1 | 220.79 ± 8.51 |
| 10 | 1 | 1 | −1 | −1 | − 1 | 1 | − 1 | 1 | 1 | −1 | 1 | 284.63 ± 10.09 |
| 11 | −1 | 1 | −1 | 1 | 1 | −1 | 1 | 1 | 1 | −1 | − 1 | 146.60 ± 15.25 |
| 12 | 1 | −1 | 1 | 1 | 1 | −1 | − 1 | −1 | 1 | −1 | 1 | 181.27 ± 10.67 |
Data are expressed as the mean ± standard deviation (SD) of 3 batches independent experiments for each strain
The regression analysis of variance for Plackett–Burman factorial model for the yield of plasmid DNA vaccine
| Code | Term | Stdized Effects | %Contribution | ||
|---|---|---|---|---|---|
| Model | 734.21 | 0.0287 | |||
| A | Peptone(g/L) | 70.30 | 48.18 | 3538.00 | 0.0107* |
| B | Yeast extract(g/L) | 17.42 | 2.96 | 217.36 | 0.0431* |
| C | NaCl(g/L) | −10.49 | 1.07 | 78.81 | 0.0714 |
| D | Amp(g/L) | −13.59 | 1.80 | 132.16 | 0.0552 |
| E | Microelement(mL/L) | −13.82 | 1.86 | 136.70 | 0.0543 |
| F | Mannitol(g/L) | 47.02 | 21.56 | 1582.96 | 0.0160* |
| G | Initial pH | 5.52 | 0.30 | 21.79 | 0.1344 |
| H | Rotational speed(RPM) | 1.02 | 0.010 | 0.74 | 0.5470 |
| J | Temperature(°C) | −8.46 | 0.70 | 51.27 | 0.0883 |
| K | Inoculum concentration(OD) | 47.01 | 21.55 | 1582.33 | 0.0160* |
R2 = 0.9999, adj-R2 = 0.9985, Adequate precision = 84.831
*Identified variables with a significant effect on the response (p-value <0.05)
Steepest ascent experiments to move the experimental region towards the maximum yield of plasmid DNA vaccine pcDNA-CCOL2A1 by the engineered E. coli DH5α
| Run | Peptone(g/L) | Mannitol | Inoculum concentration | Plasmid yield |
|---|---|---|---|---|
| 1 | 22 | 6 | 0.15 | 296.92 ± 10.00 |
| 2 | 24 | 7 | 0.25 | 313.76 ± 8.01 |
| 3 | 26 | 8 | 0.35 | 338.57 ± 11.92 |
| 4 | 28 | 9 | 0.45 | 326.04 ± 8.65 |
| 5 | 30 | 10 | 0.55 | 303.95 ± 8.46 |
Data are expressed as the mean ± standard deviation (SD) of 3 batches independent experiments for each strain
Through BBD optimizing the screened culture conditions for the yield of plasmid DNA vaccine pcDNA-CCOL2A1 by the engineered Escherichia coli DH5α
| Run | A-Peptone(g/L) | B-Mannitol(g/L) | C-Inoculum concentration(OD) | Plasmid yield | |||
|---|---|---|---|---|---|---|---|
| Code level | Real level | Code level | Real level | Code level | Real level | ||
| 1 | 1 | 28 | −1 | 7 | 0 | 0.35 | 277.80 ± 8.38 |
| 2 | 1 | 28 | 0 | 8 | − 1 | 0.25 | 293.63 ± 5.63 |
| 3 | 1 | 28 | 0 | 8 | 1 | 0.45 | 307.20 ± 6.81 |
| 4 | 0 | 26 | −1 | 7 | 1 | 0.45 | 305.73 ± 9.32 |
| 5 | 0 | 26 | 1 | 9 | −1 | 0.25 | 305.33 ± 11.90 |
| 6 | 0 | 26 | 0 | 8 | 0 | 0.35 | 332.53 ± 14.61 |
| 7 | 0 | 26 | 0 | 8 | 0 | 0.35 | 335.60 ± 10.52 |
| 8 | 0 | 26 | 0 | 8 | 0 | 0.35 | 339.70 ± 10.91 |
| 9 | 0 | 26 | 0 | 8 | 0 | 0.35 | 345.10 ± 13.60 |
| 10 | 0 | 26 | −1 | 7 | −1 | 0.25 | 285.03 ± 8.23 |
| 11 | −1 | 24 | 0 | 8 | 1 | 0.45 | 309.53 ± 9.69 |
| 12 | −1 | 24 | 0 | 8 | −1 | 0.25 | 308.70 ± 10.68 |
| 13 | -1 | 24 | 1 | 9 | 0 | 0.35 | 295.80 ± 10.61 |
| 14 | 0 | 26 | 1 | 9 | 1 | 0.45 | 302.10 ± 14.45 |
| 15 | 1 | 28 | 1 | 9 | 0 | 0.35 | 310.73 ± 10.71 |
| 16 | 0 | 26 | 0 | 8 | 0 | 0.35 | 340.97 ± 13.16 |
| 17 | -1 | 24 | -1 | 7 | 0 | 0.35 | 304.93 ± 8.88 |
Data are expressed as the mean ± standard deviation (SD) of 3 batches independent experiments for each strain
Regression analysis of a full second-order polynomial model for the optimized yield of plasmid DNA vaccine by the engineered E. coli DH5α
| Term | Sum of Squares | df | Mean Square | ||
|---|---|---|---|---|---|
| Model | 6344.09 | 9 | 704.90 | 46.72 | <0.0001* |
| A | 109.52 | 1 | 109.52 | 7.26 | 0.0309* |
| B | 204.70 | 1 | 204.70 | 13.57 | 0.0078* |
| C | 126.94 | 1 | 126.94 | 8.41 | 0.0230* |
| AB | 442.39 | 1 | 442.39 | 29.32 | 0.0010* |
| AC | 40.54 | 1 | 40.54 | 2.69 | 0.1452 |
| BC | 143.20 | 1 | 143.20 | 9.49 | 0.0178* |
| A2 | 1382.96 | 1 | 1382.96 | 91.65 | <0.0001* |
| B2 | 2293.73 | 1 | 2293.73 | 152.01 | <0.0001* |
| C2 | 1063.13 | 1 | 1063.13 | 70.46 | <0.0001* |
| Residual | 105.62 | 7 | 15.09 | ||
| Lack of fit | 10.92 | 3 | 3.64 | 0.15 | 0.9221 |
| Pure Error | 94.71 | 4 | 23.68 | ||
| Cor Total | 6449.71 | 16 |
R2 = 0.9836, adj-R2 = 0.9626, Adequate precision = 20.387, CV = 1.25%, Adequate precision = 20.387
*Identified variables with a significant effect on the response (p-value<0.05)
Fig. 2a, b, c Response surface 3D model (left) and contour plot (right) to assessthe effects of the three variables on the yield of plasmid DNA vaccine pcDNA-CCOL2A1 produced by the engineered E. coli DH5α. a response surface plot showing the mutual effect of peptone and mannitol on the yield of plasmid DNA vaccine pcDNA-CCOL2A1; b response surface plot showing the mutual effect of peptone and inoculum concentration on the yield of plasmid DNA vaccine pcDNA-CCOL2A1; c response surface plot showing the mutual effect of mannitol and inoculum concentration on the yield of plasmid DNA vaccine pcDNA-CCOL2A1