Modeling and optimization of a continuous bead milling process for bacterial cell lysis using response surface methodology

Author:

Haque Shafiul12345,Khan Saif678910,Wahid Mohd1112131410,Mandal Raju K.1112131410,Tiwari Dileep1516171819,Dar Sajad A.1112131410,Paul Debarati2021225,Areeshi Mohammed Y.1112131410,Jawed Arshad1112131410

Affiliation:

1. Department of Biosciences

2. Jamia Millia Islamia

3. A Central University

4. New Delhi

5. India

6. Department of Clinical Nutrition

7. College of Applied Medical Sciences

8. University of Ha'il

9. Ha'il

10. Saudi Arabia

11. Research and Scientific Studies Unit

12. College of Nursing and Allied Health Sciences

13. Jazan University

14. Jazan

15. Catalysis and Peptide Research Unit

16. School of Health Sciences

17. University of KwaZulu-Natal

18. Durban

19. South Africa

20. Amity Institute of Biotechnology

21. Amity University

22. Noida

Abstract

Schematic representation of the modeling and optimization of continuous bead milling process for efficient bacterial cell lysis.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

Reference31 articles.

1. Construction of an excretion vector and extracellular production of human growth hormone from Escherichia coli

2. Protein release in recombinant Escherichia coli using bacteriocin release protein

3. D. E. Hughes , J. W. T.Wimpenny and D.Lloyd, The disintegration of micro-organisms, in Methods in Microbiology, ed. J. R. Norris and D. W. Ribbons, Academic press, New York, 1971, pp. 1–54

4. Separation of Inner and Outer Membrane Vesicles from Escherichia coli in Self-Generating Percoll Gradients

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