
Dr. Prerak Gupta
Assistant Professor
Google Scholar: https://scholar.google.com/citations?user=29TVBm8AAAAJ&hl=en
Scopus: https://www.scopus.com/authid/detail.uri?authorId=56089833200
ORCID: https://orcid.org/0000-0001-8849-2879
Vidwan: https://vidwan.inflibnet.ac.in/profile/693987/NjkzOTg3
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VOL. NO., PAGE NO |
YEAR |
SCI/ Scopus |
IMPACT FACTOR |
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Cho, Ik Sung, Amal Yaghmour, Akshay Joshi, Prerak Gupta, Mark A. Sanborn, Maria Paula Zappia, Sing Wan Wong et al. |
Innate immune‐cloaked microgel‐coated mesenchymal stromal cells reverse persistent pulmonary fibrosis via reparative macrophages |
Advanced Materials |
38, E04590 |
2026 |
SCI |
26.8 |
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Katherine L. Lorentz, Ande X. Marini, Liza A. Bruk, Prerak Gupta, Biman B. Mandal, Morgan V. DiLeo, Justin S. Weinbaum, Steven R. Little, David A. Vorp
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Mesenchymal stem cell-conditioned media-loaded microparticles enhance acute patency in silk-based vascular grafts |
Bioengineering |
11(9):947 |
2024 |
SCI |
3.7 |
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Na Yoon Paik, Jacob Neethling, Mumtaz Anwar, Prerak Gupta, Mark A. Sanborn, Zekun Shen, Thilinie Bandara, James Hyun, L. A. Naiche, Jan K. Kitajewski, Jalees Rehman, Jae-Won Shin, Dolly Mehta, and Kostandin V. Pajcini
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Notch Transcriptional Target Tmtc1 Maintains Vascular Homeostasis |
Cellular and Molecular Life Sciences |
81, 370
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2024 |
SCI |
6.2 |
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Prerak Gupta, Omar Alheib, and Jae-Won Shin |
Towards Single Cell Encapsulation for Precision Biology and Medicine |
Advanced Drug Delivery Reviews |
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2023 |
SCI |
17.6 |
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Ik Sung Cho, Prerak Gupta, Nima Mostafazadeh, Sing Wan Wong, Saiumamaheswari Saichellappa, Stephen Lenzini, Zhangli Peng, and Jae‐Won Shin
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Deterministic Single Cell Encapsulation in Asymmetric Microenvironments to Direct Cell Polarity |
Advanced Science |
10, 2206014
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2023 |
SCI |
14.1 |
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Prerak Gupta, and Biman B Mandal |
Tissue‐Engineered Vascular Grafts: Emerging Trends and Technologies |
Advanced Functional Materials |
31, 2100027.
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2021 |
SCI |
19 |
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Prerak Gupta, and Biman B Mandal |
Silk Biomaterials for Vascular Tissue Engineering Applications |
Acta Biomaterialia |
134, 79-106 |
2021 |
SCI |
9.6 |
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Prerak Gupta#, Gaurab Ranjan Chaudhuri#, G Janani, Manoj Agarwala, Debaki Ghosh, Samit K Nandi, and Biman B Mandal (#co-first authors)
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Functionalized Silk Vascular Grafts with Decellularized Human Wharton's Jelly Improves Remodeling Via Immunomodulation in Rabbit Jugular Vein |
Advanced Healthcare Materials |
10, 2100750 |
2021 |
SCI |
9.6 |
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Katherine L Lorentz#, Prerak Gupta#, Mostafa S Shehabeldin, Eoghan M Cunnane, Aneesh K Ramaswamy, Konstantinos Verdelis, Morgan V DiLeo, Steven R Little, Justin S Weinbaum, Charles S Sfeir, Biman B. Mandal, and David A. Vorp (#co-first authors)
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CCL2 Loaded Microparticles Promote Acute Patency in Silk-Based Vascular Grafts Implanted in Rat Aortae |
Acta Biomaterialia |
135, 126-38 |
2021 |
SCI |
9.6 |
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Charanya Ramachandran, Prerak Gupta, Swatilekha Hazra, and Biman B Mandal |
In Vitro Culture of Human Corneal Endothelium on Non-Mulberry Silk Fibroin Films for Tissue Regeneration |
Translational Vision Science & Technology |
9, 12-12
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2020 |
SCI |
2.6 |
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Eoghan M Cunnane, Katherine L Lorentz, Aneesh K Ramaswamy, Prerak Gupta, Biman B Mandal, Fergal J O’Brien, Justin S Weinbaum, and David A Vorp
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Extracellular Vesicles Enhance the Remodeling of Cell-Free Silk Vascular Scaffolds in Rat Aortae |
ACS applied materials & interfaces |
12, 26955-65 |
2020 |
SCI |
8.2 |
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Prerak Gupta, Katherine L Lorentz, Darren G Haskett, Eoghan M Cunnane, Aneesh K Ramaswamy, Justin S Weinbaum, David A Vorp, and Biman B Mandal
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Bioresorbable Silk Grafts for Small Diameter Vascular Tissue Engineering Applications: In Vitro and in Vivo Functional Analysis |
Acta Biomaterialia, |
105, 146-58
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2020 |
SCI |
9.6 |
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Prerak Gupta, Joseph Christakiran Moses, and Biman B Mandal |
Surface Patterning and Innate Physicochemical Attributes of Silk Films Concomitantly Govern Vascular Cell Dynamics |
ACS Biomaterials Science & Engineering |
5, 933-49 |
2018 |
SCI |
5.5 |
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Rituparna Duarah, Yogendra P Singh, Prerak Gupta, Biman B Mandal, and Niranjan Karak |
Smart Self-Tightening Surgical Suture from a Tough Bio-Based Hyperbranched Polyurethane/Reduced Carbon Dot Nanocomposite |
Biomedical Materials |
13, 045004 |
2018 |
SCI |
3.7 |
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Nabanita Saha, Rushita Shah, Prerak Gupta, Biman B Mandal, Radostina Alexandrova, Maja Dutour Sikiric, and Petr Saha |
PVP-CMC Hydrogel: An Excellent Bioinspired and Biocompatible Scaffold for Osseointegration |
Materials Science and Engineering: C |
95, 440-49 |
2019 |
SCI |
6.0 |
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Manishekhar Kumar, Prerak Gupta, Sohenii Bhattacharjee, Samit K Nandi, and Biman B Mandal |
Immunomodulatory Injectable Silk Hydrogels Maintaining Functional Islets and Promoting Anti-Inflammatory M2 Macrophage Polarization |
Biomaterials |
187, 1-17
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2018 |
SCI |
12.9 |
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Sourav Bhowmick, Achintya Jana, Subba R Marri, Prerak Gupta, JN Behera, Biman B Mandal, and Neeladri Das
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Pyrazine Based Pt (Ii) Bis‐Alkynyl Organometallic Complexes: Synthesis, Characterization, and Cytotoxic Effect on A549 Human Lung Carcinoma Cells |
Applied Organometallic Chemistry |
31, e3824 |
2017 |
SCI |
3.5 |
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Sourav Bhowmick, Achintya Jana, Khushwant Singh, Prerak Gupta, Ankit Gangrade, Biman B Mandal, and Neeladri Das |
Coordination-Driven Self-Assembly of Ionic Irregular Hexagonal Metallamacrocycles Via an Organometallic Clip and Their Cytotoxicity Potency |
Inorganic Chemistry |
57, 3615-25
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2017 |
SCI |
4.7 |
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Prerak Gupta, Gautham Hari Narayana SN, Uvanesh Kasiviswanathan, Tarun Agarwal, K Senthilguru, Devdeep Mukhopadhyay, Kunal Pal, Supratim Giri, Tapas K Maiti, and Indranil Banerjee
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Substrate Stiffness Does Affect the Fate of Human Keratinocytes |
RSC Advances |
6, 3539-51.
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2016 |
SCI |
4.6 |
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Rocktotpal Konwarh, Prerak Gupta, and Biman B Mandal |
Silk-Microfluidics for Advanced Biotechnological Applications: A Progressive Review |
Biotechnology Advances |
34, 845-58
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2016 |
SCI |
12.5 |
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Manishekhar Kumar, Deepak Jain, Nandana Bhardwaj, Prerak Gupta, Samit K Nandi, and Biman B Mandal, |
Native Honeybee Silk Membrane: A Potential Matrix for Tissue Engineering and Regenerative Medicine |
RSC Advances |
6, 54394-403.
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2016 |
SCI |
4.6 |
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Prerak Gupta, Manishekhar Kumar, Nandana Bhardwaj, Jadi Praveen Kumar, CS Krishnamurthy, Samit Kumar Nandi, and Biman B Mandal
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Mimicking Form and Function of Native Small Diameter Vascular Conduits Using Mulberry and Non-Mulberry Patterned Silk Films |
ACS applied materials & interfaces |
8, 15874-88
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2016 |
SCI |
8.2 |
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Rituparna Duarah, Yogendra P Singh, Prerak Gupta, Biman B Mandal, and Niranjan Karak |
High Performance Bio-Based Hyperbranched Polyurethane/Carbon Dot-Silver Nanocomposite: A Rapid Self-Expandable Stent |
Biofabrication |
8, 045013
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2016 |
SCI |
8.0 |
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Prerak Gupta, Mimi Adhikary, Manishekhar Kumar, Nandana Bhardwaj, and Biman B Mandal
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Biomimetic, Osteoconductive Non-Mulberry Silk Fiber Reinforced Tricomposite Scaffolds for Bone Tissue Engineering |
ACS applied materials & interfaces |
8 (2016), 30797-810. |
2016 |
SCI |
8.2 |
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Prerak Gupta, and Biman B Mandal
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Fabrication of Small-Diameter Tubular Grafts for Vascular Tissue Engineering Applications Using Mulberry and Non-Mulberry Silk Proteins |
Vascular Tissue Engineering: Methods and Protocols |
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2022 |
Book Chapter |
NA |
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Promita Bhattacharjee, Prerak Gupta, M Joseph Christakiran, Samit K Nandi, and Biman B Mandal
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Silk-Based Matrices for Bone Tissue Engineering Applications |
Nanostructures for the Engineering of Cells, Tissues and Organs (Elsevier) |
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2018 |
Book Chapter |
NA |
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Title |
Year |
Agency |
Co-Investigator(if any) |
Published/Granted |
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Patterned silk film based vascular graft construct and its use thereof. |
2015 | Indian Patent | Prerak Gupta and Biman B. Mandal | Indian Patent granted: 420608 |
| Bi-layered Porous Silk Vascular Grafts and their Uses Thereof. | 2019 | Indian Patent | Prerak Gupta and Biman B. Mandal |
Indian Patent granted: 537706 |
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Notch functionalized nanovesicles. |
2025 | US Provisional Patent | Prerak Gupta, Koushik Debnath, Kostandin Pajcini and Jae-Won Shin | US provisional patent application no. 63/649,999 |
