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Large‐scale purification of high purity α1‐antitrypsin from Cohn Fraction IV with virus inactivation by solvent/detergent and dry‐heat treatment
Biotechnology and Applied Biochemistry
◽
10.1002/bab.1623
◽
2017
◽
Vol 65
(3)
◽
pp. 446-454
◽
Cited By ~ 3
Author(s):
Chaoji Huangfu
◽
Jinchao Zhang
◽
Yuyuan Ma
◽
Junting Jia
◽
Jingxuan Li
◽
...
Keyword(s):
Heat Treatment
◽
High Purity
◽
Large Scale
◽
Virus Inactivation
◽
Dry Heat
◽
Dry Heat Treatment
Download Full-text
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References
Effect of manufacturing process parameters on virus inactivation by dry heat treatment at 80 °C in factor VIII
Vox Sanguinis
◽
10.1111/j.1423-0410.2006.00845.x
◽
2006
◽
Vol 92
(1)
◽
pp. 56-63
◽
Cited By ~ 13
Author(s):
P. L. Roberts
◽
C. Dunkerley
◽
A. McAuley
◽
L. Winkelman
Keyword(s):
Heat Treatment
◽
Factor Viii
◽
Process Parameters
◽
Manufacturing Process
◽
Virus Inactivation
◽
Dry Heat
◽
Dry Heat Treatment
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No Detectable Alterations in Immunogenicity following Terminal Severe Dry-Heat Treatment of High-Purity Factor VIII (Liberate) and Factor IX (HP9) Concentrates
Vox Sanguinis
◽
10.1111/j.1423-0410.1995.tb00367.x
◽
1995
◽
Vol 69
(4)
◽
pp. 319-327
◽
Cited By ~ 5
Author(s):
I. R. MacGregor
◽
L. E. McLaughlin
◽
M. C. MacGregor
◽
C. V. Prowse
◽
D. S. Pepper
Keyword(s):
Heat Treatment
◽
Factor Viii
◽
High Purity
◽
Factor Ix
◽
Dry Heat
◽
Dry Heat Treatment
Download Full-text
Comparison of the Inactivation of Canine and Bovine Parvovirus by Freeze-drying and Dry-heat Treatment in Two High Purity Factor VIII Concentrates
Biologicals
◽
10.1006/biol.2000.0256
◽
2000
◽
Vol 28
(3)
◽
pp. 185-188
◽
Cited By ~ 17
Author(s):
Peter L. Roberts
◽
Helena Hart
Keyword(s):
Heat Treatment
◽
Factor Viii
◽
High Purity
◽
Freeze Drying
◽
Dry Heat
◽
Factor Viii Concentrates
◽
Dry Heat Treatment
◽
Bovine Parvovirus
Download Full-text
No Detectable Alterations in Immunogenicity following Terminal Severe Dry-Heat Treatment of High-Purity Factor VIII (Liberate) and Factor IX (HP9) Concentrates
Vox Sanguinis
◽
10.1159/000462863
◽
1995
◽
Vol 69
(4)
◽
pp. 319-327
Author(s):
I.R. MacGregor
◽
L.F. McLaughlin
◽
M.C. MacGregor
◽
C.V. Prowse
◽
D.S. Pepper
Keyword(s):
Heat Treatment
◽
Factor Viii
◽
High Purity
◽
Factor Ix
◽
Dry Heat
◽
Dry Heat Treatment
Download Full-text
No evidence for neoantigen formation following terminal severe dry heat treatment of high purity clotting factor concentrates
Blood Coagulation & Fibrinolysis
◽
10.1097/00001721-199504000-00080
◽
1995
◽
Vol 6
(2)
◽
pp. 179
Author(s):
Ian MacGregor
◽
Moira MacGregor
◽
Linda McLaughlin
◽
Duncan Pepper
◽
Christopher Prowse
Keyword(s):
Heat Treatment
◽
High Purity
◽
Clotting Factor
◽
Dry Heat
◽
Clotting Factor Concentrates
◽
Dry Heat Treatment
Download Full-text
Inhibitory Effect of Dry-Heat Treatment and Chemical Sanitizers against Foodborne Pathogens Contaminated on the Surfaces of Materials
Journal of the Korean Society of Food Science and Nutrition
◽
10.3746/jkfn.2009.38.9.1265
◽
2009
◽
Vol 38
(9)
◽
pp. 1265-1270
◽
Cited By ~ 11
Author(s):
Young-Min Bae
◽
Sun-Gi Heu
◽
Sun-Young Lee
Keyword(s):
Heat Treatment
◽
Foodborne Pathogens
◽
Inhibitory Effect
◽
Dry Heat
◽
Dry Heat Treatment
Download Full-text
Effect of moist and dry-heat treatment processes on the structure, physicochemical properties, and in vitro digestibility of wheat starch-lauric acid complexes
Food Chemistry
◽
10.1016/j.foodchem.2021.129303
◽
2021
◽
Vol 351
◽
pp. 129303
Author(s):
Xuemin Kang
◽
Wei Gao
◽
Bin Wang
◽
Bin Yu
◽
Li Guo
◽
...
Keyword(s):
Heat Treatment
◽
Physicochemical Properties
◽
Lauric Acid
◽
Wheat Starch
◽
In Vitro Digestibility
◽
Dry Heat
◽
Treatment Processes
◽
Dry Heat Treatment
Download Full-text
Kinetics of inactivating human parvovirus B19 and porcine parvovirus by dry-heat treatment
Transfusion
◽
10.1111/j.1537-2995.2008.01677.x
◽
2008
◽
Vol 48
(4)
◽
pp. 790-790
◽
Cited By ~ 11
Author(s):
Johannes Blümel
◽
Albert Stühler
◽
Herbert Dichtelmüller
Keyword(s):
Heat Treatment
◽
Parvovirus B19
◽
Porcine Parvovirus
◽
Human Parvovirus B19
◽
Dry Heat
◽
Dry Heat Treatment
◽
Kinetics Of
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Effect of dry heat treatment along with some dormancy breaking chemicals on oil palm seed germination
South African Journal of Botany
◽
10.1016/j.sajb.2017.06.023
◽
2017
◽
Vol 112
◽
pp. 489-493
Author(s):
K.M. Tabi
◽
G.F. Ngando Ebongue
◽
G.N. Ntsomboh
◽
E. Youmbi
Keyword(s):
Heat Treatment
◽
Seed Germination
◽
Oil Palm
◽
Dormancy Breaking
◽
Dry Heat
◽
Dry Heat Treatment
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Improved heat stability of whey protein isolate stabilized emulsions via dry heat treatment of WPI and low methoxyl pectin: Effect of pectin concentration, pH, and ionic strength
Food Hydrocolloids
◽
10.1016/j.foodhyd.2016.10.025
◽
2017
◽
Vol 63
◽
pp. 716-726
◽
Cited By ~ 32
Author(s):
Arima Diah Setiowati
◽
Serveh Saeedi
◽
Wahyu Wijaya
◽
Paul Van der Meeren
Keyword(s):
Heat Treatment
◽
Ionic Strength
◽
Whey Protein
◽
Heat Stability
◽
Whey Protein Isolate
◽
Protein Isolate
◽
Dry Heat
◽
Dry Heat Treatment
Download Full-text
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