Sayan Deb Dutta
Engineering · Purdue University West Lafayette
Publications
152
Citations
3,842
Est. group size
~1
Recurring co-author estimate
Active years
27
Publishing since 2000
Sayan Deb Dutta works on biomedical engineering approaches that combine 3D printing, hydrogels, and nanomaterials to create tissue-like materials for wound healing, bone repair, cardiac treatment, and cancer modeling. Much of the work focuses on 'smart' materials that respond to electrical, mechanical, or biological signals to guide tissue regeneration or fight infection, often incorporating antibacterial or immune-modulating properties. This research sits at the intersection of materials science, tissue engineering, and biomedicine, aimed at developing wearable sensors, wound dressings, and engineered scaffolds for medical applications.
Publication output grew substantially from 2018 to a peak around 2021-2022, then has gradually declined through 2023-2025, though output remains higher than early-decade levels.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- 3D‐Printed Piezoionic/Bioelectronic Hydrogel for Electro‐Metabolic Regulation of Osteogenic Differentiation
Advanced Healthcare Materials · 2026
- List of contributors
Elsevier eBooks · 2026
- 3D-printed nanoengineered bioadhesive with tunable stiffness for uncovering electromechanotherapy-assisted cardiac microenvironment
Biomaterials · 2026
- Ion channel/Stat6-driven nano-immune programming of tissue-resident macrophages by amide-functionalized nanocellulose
Bioactive Materials · 2026
- Multifunctional Hydrogel-Based Scaffolds: Integrating Conductive Nanomaterials for Smart Wound Healing Applications
Gels · 2026
- Bioinspired 3D Printing of Lignocellulose-Based Multimaterial Composites for Extracellular Matrix-Mimicking Architectures
Biomimetics · 2026
- 3D‐Printable, Biodegradable, and Conductive/Piezoionic Hydrogel ‘ <i>E‐Skin</i> ’ With Robust Antibacterial Properties for Wound Healing and Wireless Human‐Machine Interface Sensing
Advanced Functional Materials · 2026
- Physical stimuli-responsive DNA hydrogels: design, fabrication strategies, and biomedical applications
Journal of Nanobiotechnology · 2025
- Bioinspired Shape Reconfigurable, Printable, and Conductive “E‐Skin” Patch with Robust Antibacterial Properties for Human Health Sensing
Advanced Functional Materials · 2025
- Bioinspired Shape Reconfigurable, Printable, and Conductive “E‐Skin” Patch with Robust Antibacterial Properties for Human Health Sensing (Adv. Funct. Mater. 40/2025)
Advanced Functional Materials · 2025
- Molecular Insight and Antioxidative Therapeutic Potentials of Plant-Derived Compounds in Breast Cancer Treatment
Onco · 2025
- Ultrathin, Stimuli-Responsive, Antimicrobial, Self-Cleaning, Reusable, and Biodegradable, Micro/Nanofibrous Electrospun Mat as an Efficient Face Mask Filter for Airborne Disease Prevention
Nano Letters · 2025
- Physical stimuli-responsive 3D printable hydrogels for scalable manufacturing of bioengineered meat analogs
Trends in Food Science & Technology · 2025
- Targeting Pathways and Mechanisms in Gynecological Cancer with Antioxidant and Anti-Inflammatory Phytochemical Drugs
Onco · 2025
- 3D‐printed magnesium/nanodiamond dual‐doped hydroxyapatite composite hydrogels with antibacterial and in vitro bioactive properties for bone tissue engineering
Journal of the American Ceramic Society · 2025
- Elsevier eBooks×11
- International Journal of Biological Macromolecules×9
- Advanced Healthcare Materials×8
- Carbohydrate Polymers×7
- Bioactive Materials×5
- Akhilesh K. Gaharwar
Engineering · Purdue University West Lafayette
- Taimoor H. Qazi
Engineering · Purdue University West Lafayette
- Karthikeyan Subbiahanadar Chelladurai
Engineering · Purdue University West Lafayette
- Bumsoo Han
Engineering · Purdue University West Lafayette
- Xiang Li
Engineering · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile