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Sivashanmugam Amirthalingam

Explore the profile of Sivashanmugam Amirthalingam including associated specialties, affiliations and a list of published articles. Areas
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Articles 16
Citations 342
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Recent Articles
11.
Amirthalingam S, Lee S, Pandian M, Ramu J, Iyer S, Hwang N, et al.
Biomater Sci . 2021 Jan; 9(7):2439-2453. PMID: 33464240
Functional regeneration of bone defects, especially critical-sized, in the craniofacial region remains a major clinical challenge that needs intervention. To address this, the present work focuses on the development of...
12.
Kim H, Park J, Amirthalingam S, Jayakumar R, Hwang N
Biomater Sci . 2020 Apr; 8(9):2627-2637. PMID: 32242197
Various strategies have been explored to stimulate new bone formation. These strategies include using angiogenic stimulants in combination with inorganic biomaterials. Neovascularization during the neo-bone formation provides nutrients along with...
13.
Sundaram M, Amirthalingam S, Mony U, Varma P, Jayakumar R
Int J Biol Macromol . 2019 Feb; 129:936-943. PMID: 30738162
Effective bleeding control is a major concern in trauma and major surgeries. Chitosan (Ch) as hemostatic agent has been widely used and when applied at the site of injury it...
14.
Yegappan R, Selvaprithiviraj V, Amirthalingam S, Mohandas A, Hwang N, Jayakumar R
Int J Biol Macromol . 2018 Nov; 122:320-328. PMID: 30401650
Functional biomaterials that couple angiogenesis and osteogenesis processes are vital for bone tissue engineering and bone remodeling. Herein we developed an injectable carrageenan nanocomposite hydrogel incorporated with whitlockite nanoparticles and...
15.
Yegappan R, Selvaprithiviraj V, Amirthalingam S, Jayakumar R
Carbohydr Polym . 2018 Aug; 198:385-400. PMID: 30093014
Carrageenan is a class of naturally occurring sulphated polysaccharides, which is currently a promising candidate in tissue engineering and regenerative medicine as it resemblances native glycosaminoglycans. From pharmaceutical drug formulations...
16.
Kim H, Amirthalingam S, Kim S, Lee S, Rangasamy J, Hwang N
Adv Healthc Mater . 2017 Nov; 6(23). PMID: 29171714
Various strategies have been explored to overcome critically sized bone defects via bone tissue engineering approaches that incorporate biomimetic scaffolds. Biomimetic scaffolds may provide a novel platform for phenotypically stable...