Regenerative Biomaterials and Theranostics Laboratory

Research Projects

The Regenerative Biomaterials and Theranostics Laboratory develops clinically translation-ready biomaterials and nanomedicines. Our projects span image-guided bone implants, cancer theranostics, cellular scaffolds, and antimicrobial formulations, with grants from key national funding agencies.

Research in the lab ranges from fundamental materials design to applications validated through animal models and regulated translation.

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Early Osteogenic, X-ray visible, and 3D Printable Fixators for diabetic Orthopedic and Craniomaxillofacial repair with Tunable Biodegradability, Modulus and High Bone Regenerative Index

orthopedic osteogenesis 3d-printing radiopaque ongoing

Development of early-osteogenic, intrinsically radiopaque bone fixators engineered for diabetic orthopedic and craniomaxillofacial repair. The fixatives couple tunable biodegradability and mechanical modulus with a high bone-regenerative index, and are processable by 3D printing for patient-matched geometries.

Funders: AICTE · 2026-2029

Early Osteogenic, X-ray visible, and 3D Printable Fixators for diabetic Orthopedic and Craniomaxillofacial repair with Tunable Biodegradability, Modulus and High Bone Regenerative Index
AICTE

Development of an inherently radiopaque, biodegradable and cost-effective TACE system with liver regeneration potential for the treatment of Hepatocellular carcinoma

chemoembolization liver-cancer radiopaque nanomedicine ongoing

Development of a transarterial chemoembolization (TACE) system that is inherently radiopaque and biodegradable, combining chemoembolization of hepatocellular carcinoma with promotion of liver regeneration in a cost-effective manner.

Funders: RUSA · 2023-2025

Development of an inherently radiopaque, biodegradable and cost-effective TACE system with liver regeneration potential for the treatment of Hepatocellular carcinoma
RUSA

Biocompatible 3D Scaffolding through Femtosecond Laser Photo-polymerization for Tissue Engineering and Regenerative Medicine

3d-printing femtosecond-laser tissue-engineering scaffolds ongoing

Fabrication of biocompatible three-dimensional scaffolds via femtosecond laser photo-polymerization, delivering high-resolution architectures for tissue engineering and regenerative medicine applications.

Funders: Chancellor's Award · 2020-2024

Biocompatible 3D Scaffolding through Femtosecond Laser Photo-polymerization for Tissue Engineering and Regenerative Medicine
Chancellor's Award

Development of Cerium Oxide Nanoparticle Approach for Enhancing Radio Iodide Avidity in Papillary Thyroid Carcinoma by Augmenting the Expression of the Sodium Iodide Symporter

thyroid-carcinoma nanomaterials radioiodine nanomedicine ongoing

A cerium oxide nanoparticle strategy to heighten radioiodine avidity in papillary thyroid carcinoma by upregulating sodium-iodide symporter expression, seeking to improve theranostic outcomes of radioiodine therapy.

Funders: RUSA · 2023-2025

Development of Cerium Oxide Nanoparticle Approach for Enhancing Radio Iodide Avidity in Papillary Thyroid Carcinoma by Augmenting the Expression of the Sodium Iodide Symporter
RUSA

Optimization and Transplantation of Rat Blood-Derived Stem Cells Using a Novel Biodegradable Scaffold for Treating Parkinsons Disease (PD)

stem-cells parkinsons-disease scaffolds regenerative-medicine ongoing

Optimization and transplantation of blood-derived stem cells within a novel biodegradable scaffold for the treatment of Parkinson’s disease, targeting glial-scar-bred, cell-based neuroregeneration.

Funders: RUSA · 2023-2025

Optimization and Transplantation of Rat Blood-Derived Stem Cells Using a Novel Biodegradable Scaffold for Treating Parkinsons Disease (PD)
RUSA

Development of antibacterial formulations for preventing nosocomial infections from therapeutically modulated natural rubber latex formulations

antibacterial latex nosocomial-infections completed

Antibacterial formulations derived from therapeutically modulated natural rubber latex, engineered to prevent nosocomial (hospital-acquired) infections.

Funders: DBT · 2017-2021

Development of antibacterial formulations for preventing nosocomial infections from therapeutically modulated natural rubber latex formulations
DBT

Development of Magnetically modulated therapeutically active layered double hydroxide as a nanomedicine with hyperthermia potential for cancer theranostics

nanomedicine hyperthermia cancer-theranostics layered-double-hydroxide completed

Magnetically modulated, therapeutically active layered double hydroxide (LDH) engineered as a nanomedicine with magnetic hyperthermia potential for combined cancer imaging and therapy.

Funders: DST · 2016-2019

Development of Magnetically modulated therapeutically active layered double hydroxide as a nanomedicine with hyperthermia potential for cancer theranostics
DST

Preparation and characterization of Cissus Quandrangularis Linn plant extract incorporated chitosan collagen scaffold for bone regeneration

bone-regeneration scaffolds cissus-quandrangularis completed

Preparation and characterization of a Cissus quadrangularis plant extract-incorporated hydroxyapatite-chitosan-collagen scaffold for bone regeneration.

Funders: KSCSTE · 2017-2020

Preparation and characterization of Cissus Quandrangularis Linn plant extract incorporated chitosan collagen scaffold for bone regeneration
KSCSTE

For a list of recent research outputs, visit our publications page.