Dr. Hussin Alwan Rothan
Medical Professional/DoctorUniversity of Malaya, Malaysia
Highest Degree
Ph.D. in Molecular Genetics from University of Malaya, Malaysia
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Selected Publications
- Rothan, H.A., Z. Mohamed, M. Paydar, N.A. Rahman and R. Yusof, 2013. Inhibitory effect of doxycycline against dengue virus replication in vitro. Arch. Virol., 10.1007/s00705-013-1880-7.
CrossRef | - Rothan, H.A., Z. Mohamed, A.M. Suhaeb, N.A. Rahman and R. Yusof, 2013. Antiviral cationic peptides as a strategy for innovation in global health therapeutics for dengue virus: High yield production of the biologically active recombinant plectasin peptide. OMICS, 17: 560-567.
CrossRef | PubMed | - Rothan, H.A., A.M. Suhaeb and T. Kamarul, 2013. Recombinant human adiponectin as a potential protein for treating diabetic tendinopathy promotes tenocyte progenitor cells proliferation and tenogenic differentiation in vitro. Int. J. Med. Sci., 10: 1899-1906.
Direct Link | - Rothan, H.A., S.H. Teh, K. Haron and Z. Mohamed, 2012. A comparative study on the expression, purification and functional characterization of human adiponectin in Pichia pastoris and Escherichia coli. Int. J. Mol. Sci., 13: 3549-3562.
CrossRef | - Rothan, H.A., H.C. Han, T.S. Ramasamy, S. Othman, N.A. Rahman and R. Yusof, 2012. Inhibition of dengue NS2B-NS3 protease and viral replication in Vero cells by recombinant retrocyclin-1. BMC Infect. Dis., Vol. 12. 10.1186/1471-2334-12-314.
CrossRef | - Rothan, H.A., A.Y. Abdulrahman, P.G. Sasikumer, S. Othman, N. Abd Rahman and R. Yusof, 2012. Protegrin-1 inhibits dengue NS2B-NS3 serine protease and viral replication in MK2 cells. J. Biomed. Biotechnol., 10.1155/2012/251482.
CrossRef | - Rothan, H.A. and Z. Mohamed, 2012. An Update on Functional Expression of Human Adiponectin. Lap Lambert Academic Publishing, Germany, ISBN-13: 9783659297373, Pages: 248.
- Dashtdar, H., H.A. Rothan, T. Tay, R.E. Ahmad and R. Ali et al., 2011. A preliminary study comparing the use of allogenic chondrogenic pre‐differentiated and undifferentiated mesenchymal stem cells for the repair of full thickness articular cartilage defects in rabbits. J. Orthopaedic Res., 29: 1336-1342.
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