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  1. Home
  2. Browse by Author

Browsing by Author "Anugya, Bhatt"

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    3D printing of liver constructs for in vitro hepatotoxicity testing ( Project - 8141 )
    (SCTIMST, 2021-08-15) Anil Kumar, PR; Shiny, Velayudhan; Roy, Joseph; Kalliyna Krishnan; Kumary, TV; Anugya, Bhatt; Lynda V, Thomas; Sarath S, Nair; Ramesh Babu, V; Sivaram, S; Praveen, KS
  • Item
    Do platelets in patients with type II diabetes release proteins that can activate aortic endothelial cells ( Project - 8089 )
    (SCTIMST, 2017-12-31) Anugya, Bhatt; Harikrishnan, S
  • Item
    Formulation and Characterization of Alginate Dialdehyde, Gelatin and Platelet Rich Plasma Based Bioink for Bioprinting
    (Applications. Bioengineering, 2020-09) Lakshmi T., Somasekharan; Naresh, Kasoju; Riya, Raju; Anugya, Bhatt
    Layer-by-layer additive manufacturing process has evolved into three-dimensional (3D) “bio-printing” as a means of constructing cell-laden functional tissue equivalents. The process typically involves the mixing of cells of interest with an appropriate hydrogel, termed as “bioink”, followed by printing and tissue maturation. An ideal bioink should have adequate mechanical, rheological, and biological features of the target tissues. However, native extracellular matrix (ECM) is made of an intricate milieu of soluble and non-soluble extracellular factors, and mimicking such a composition is challenging. To this end, here we report the formulation of a multi-component bioink composed of gelatin and alginate -based scaffolding material, as well as a platelet-rich plasma (PRP) suspension, which mimics the insoluble and soluble factors of native ECM respectively. Briefly, sodium alginate was subjected to controlled oxidation to yield alginate dialdehyde (ADA), and was mixed with gelatin and PRP in various volume ratios in the presence of borax. The formulation was systematically characterized for its gelation time, swelling, and water uptake, as well as its morphological, chemical, and rheological properties; furthermore, blood- and cytocompatibility were assessed as per ISO 10993 (International Organization for Standardization). Printability, shape fidelity, and cell-laden printing was evaluated using the RegenHU 3D Discovery bioprinter. The results indicated the successful development of ADA–gelatin–PRP based bioink for 3D bioprinting and biofabrication applications
  • Item
    Preparation and standardization of a batch of Reference Biomaterials (RM) for biological evaluations ( Project - 8169 )
    (SCTIMST, 2020-11-27) Leena, Joseph; Ramesh, P; Remya, NS; Ramesh Babu, V; Anil Kumar, PR; Anugya, Bhatt; Sabareeswaran, A
  • Item
    Rapid detection kit for IgG/IgM ( Project - 8235 )
    (SCTIMST, 2020-10-31) Manoj, G; Anugya, Bhatt; Renjith P, Nair; Dinoop, KP; Jyothi, EK; Priyanka, S; Ranjith S, Kartha; Anil Kumar, V
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