| Literature DB >> 27457305 |
Funmilola C Thomas1,2, Andre M Santana3, Mary Waterston4, Hayley Haining5, Peter David Eckersall6.
Abstract
BACKGROUND: Samples for diagnostic procedures often require some form of pre-analytical preparation for preservation or safe handling during transportation prior to analysis in the laboratory. This is particularly important for milk samples which frequently need preservatives to retain milk composition as close to that found in freshly collected samples as possible.Entities:
Keywords: C-reactive protein; Haptoglobin; Mammary associated serum amyloid A3; Milk preservatives; Thermal stability
Mesh:
Substances:
Year: 2016 PMID: 27457305 PMCID: PMC4960790 DOI: 10.1186/s12917-016-0769-6
Source DB: PubMed Journal: BMC Vet Res ISSN: 1746-6148 Impact factor: 2.741
Effect of heat treatment and preservative use on Hp, M-SAA3 and CRP values in bovine milk
| Protein | Treatment | Significant difference | Regression equation in the form of y = c + mxa | Correlation coefficient |
|---|---|---|---|---|
| Hp | Heat | 0.066 | Heated Hp = 13.05 + 0.76 x unheated Hp | 0.85/ |
| SAA | Heat | 0.000 | Heated SAA = 38.6 + 0.28 unheated SAA | 0.925/ |
| CRP | Heat | 0.007 | Heated CRP = −57.69 + 0.61 unheated CRP | 0.932/ |
| Hp | Potassium dichromate | 0.080 | Treated Hp = −270 + 1.04 non treated Hp | 0.982/ |
| SAA | Potassium dichromate | 0.363 | Treated SAA = −0.30 + 0.99 non treated SAA | 0.642/ |
| CRP | Potassium dichromate | 0.003 | Treated CRP = 5.41 + 1.47 non treated | 0.913/ |
| Hp | Bronopol | 0.155 | Treated Hp = 52.4 + 0.95 non treated Hp | 0.882/ |
| SAA | Bronopol | 0.088 | Treated SAA = 1.10 + 0.0005 non treated | 0.262/ |
| CRP | Bronopol | 0.028 | Treated CRP = 2.15 + 0.96 non treated | 0.765/ |
ay = treated group, x = non treated group, c = y value when x = 0, m = gradient
Fig. 1a Regression plot of Hp concentrations in heated treated versus unheated milk samples (n = 59); (b) Regression plot of Hp concentration in potassium dichromate treated versus untreated milk samples (n = 35); (c): Regression plot of Hp concentrations in bronopol treated versus untreated milk samples (n = 54)
Means and standard deviations of APP concentrations in controls versus treatments with heat, potassium dichromate and bronopol
| Protein | Treatment | Total (n) | Mean ± SD of controls | Mean ± SD of treated |
|---|---|---|---|---|
| Hp (μg/ml) | Heat | 59 | 130.50 ± 311.86 | 112.88 ± 257.95 |
| Hp (μg/ml) | Potassium dichromate | 35 | 1533.94 ± 2144.03 | 1791.14 ± 2483.71 |
| Hp (μg/ml) | Bronopol | 54 | 160.29 ± 245.48 | 204. ± 321.11 |
| MSAA3 (μg/ml) | Heat | 44 | 153.72 ± 270.84 | 94.39 ± 178.48 |
| MSAA3 (μg/ml) | Potassium dichromate | 18 | 17.16 ± 47.40 | 16.76 ± 47.20 |
| MSAA3 (μg/ml) | Bronopol | 21 | 1.94 ± 1.80 | 1.10 ± 2.05 |
| CRP (ng/ml) | Heat | 53 | 939.57 ± 3.69 | 514.86 ± 2.28 |
| CRP (ng/ml) | Potassium dichromate | 20 | 25.88 ± 47.68 | 43.56 ± 77.20 |
| CRP (ng/ml) | Bronopol | 21 | 11.01 ± 7.04 | 12.74 ± 9.03 |