About
Dr. Murali Malliga Raman has received his doctoral degree in Biochemistry from University of Madras, India in 2008. After his doctoral degree he entered to pharmaceutical industry where he was involved in research for developing various drugs from natural source for the treatment of inflammatory diseases, osteoarthritis, psoriasis and mucositic disorders. In 2011, he moved to University of Malaya as a postdoctoral researcher where he shifted his focus solely to the field of regenerative medicine and the use of mesenchymal stem cells for the treatment of orthopedic diseases. Later, he was promoted to Associated Professor during 2013. His research interest ranges from identifying the role of growth factors, adipokines and polymeric gels in regenerative medicine, in vitro and in vivo. He serves as a reviewer and editorial board member to a number of academic journals. He is also principal investigator for university (BKP, UMRG) and ministry (FRGS, Sciencefund) grants. Apart for this, he also plays a role as co-investigator for number of research grants and manage various top grants (HIR-MoE) in NOCERAL. He is also involved in academic teaching and research supervision for master and Ph.D students
Employment
Employment history is unavailable.
Education
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University of Madras Ph.D2002 - 2008
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University of Madras M.Sc.,1998 - 2000
Projects & Funding
Projects & funding information is unavailable.
Publications (37)
- In vitro evaluation of novel low-pressure spark plasma sintered HA–BG composite scaffolds for bone tissue engineering Save
- Effect of Chitosan Nanoparticle-Loaded Thymus serpyllum on Hydrogen Peroxide-Induced Bone Marrow Stromal Cell Damage Save
- Synergistic interaction of platelet derived growth factor (PDGF) with the surface of PLLA/Col/HA and PLLA/HA scaffolds produces rapid osteogenic differentiation Save
- Three dimensional alginate-fucoidan composite hydrogel augments the chondrogenic differentiation of mesenchymal stromal cells Save
- Coadministration of alloxan and nicotinamide in rats produces biochemical changes in blood and pathological alterations comparable to the changes in type II diabetes mellitus. Save
- Fabrication and in vitro biological activity of βTCP-Chitosan-Fucoidan composite for bone tissue engineering Save
- Proliferation and osteogenic differentiation of mesenchymal stromal cells in a novel porous hydroxyapatite scaffold Save
- Unmodified medium chain length polyhydroxyalkanoate (uMCL-PHA) as a thin film for tissue engineering application - Characterization and in vitro biocompatibility Save
- Characterization of bovine-derived porous hydroxyapatite scaffold and its potential to support osteogenic differentiation of human bone marrow derived mesenchymal stem cells Save
- Platelet rich concentrate promotes early cellular proliferation and multiple lineage differentiation of human mesenchymal stromal cells in vitro Save