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Subham Banerjee

Explore the profile of Subham Banerjee including associated specialties, affiliations and a list of published articles. Areas
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Articles 61
Citations 312
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Recent Articles
1.
Palit N, Suryavanshi P, Banerjee S
Biotechnol Bioeng . 2025 Mar; PMID: 40071508
The use of self-healing mineralized hydrogels in 3D printing has demonstrated significant advantages, including enhanced printing accuracy and the ability to maintain high shape fidelity throughout the printing process. After...
2.
Pandav G, Karanwad T, Banerjee S
J Biomater Sci Polym Ed . 2025 Feb; :1-18. PMID: 39898585
The development of gastroretentive drug delivery systems is one such instance, which was developed to improve the oral bioavailability and effectiveness of drugs, which has a poor absorption window in...
3.
Karanwad T, Jorvekar S, Mandal S, Borkar R, Banerjee S
Mol Pharm . 2024 Aug; 21(10):5272-5284. PMID: 39190777
The selection of appropriate materials and compatibility of selected materials with drugs and formulations are limiting steps in three-dimensional printing technology. In this study, SmartEx QD 100 (SM QD 100)...
4.
Pawar A, Karanwad T, Banerjee S
Eur J Pharm Biopharm . 2024 Aug; 203:114471. PMID: 39186960
This study investigates the feasibility of fabrication of poly(1-vinyl-2-pyrrolidone) (Kollidon®25)-mediated filaments for producing tinidazole (TNZ)-loaded, customizable, child-friendly tablets (with varying shapes and sizes) using hot melt extrusion (HME) coupled with...
5.
Lekurwale S, Mahajan S, Banerjee S, Banerjee S
Int J Biol Macromol . 2024 Aug; 277(Pt 3):134332. PMID: 39089563
It is becoming increasingly important to have starch sources with different physicochemical properties to meet the needs of new applications in food, packaging, bioplastic, and pharmaceutical industries. The first part...
6.
Suryavanshi P, Mahajan S, Banerjee S, Seth K, Banerjee S
J Mater Chem B . 2024 May; 12(21):5098-5110. PMID: 38700289
The tunable properties of stimuli-responsive copolymers or hydrogels enable their application in different fields such as biomedical engineering, tissue engineering, or even drug release. Here we introduce a new PNIPAM-based...
7.
Pandav G, Karanwad T, Banerjee S
J Mech Behav Biomed Mater . 2024 Jan; 151:106393. PMID: 38224646
Additive manufacturing (AM) is widely used to fabricate 3D printed objects from Computer-aided Design (CAD) prepared using the SolidWorks CAD modelling software. Different printing techniques are used to fabricate desired...
8.
Juneja P, Ruhina Rahman S, Jakhar D, Mourya A, Tripathi D, Kaur I, et al.
JHEP Rep . 2023 Sep; 5(10):100816. PMID: 37663117
Background & Aims: Lymphatic vessels (LVs) are crucial for maintaining abdominal fluid homoeostasis and immunity. In cirrhosis, mesenteric LVs (mLVs) are dilated and dysfunctional. Given the established role of vascular...
9.
Kaity S, Sah S, Karanwad T, Banerjee S
Mol Pharm . 2023 Jul; 20(8):3791-3803. PMID: 37459158
Disintegration time (DT) and rate of drug dissolution in different media are among the most widely studied crucial parameters for various types of drug products. In the ever-evolving landscape of...
10.
Sharma P, Choudhury D, Karanwad T, Mohapatra P, Murty U, Banerjee S
Biomater Adv . 2023 Jul; 153:213527. PMID: 37418935
Light-based three-dimensional (3D) printing has been under use extensively to fabricate complex geometrical constructs which find a vast application in the fields of drug delivery and tissue engineering fields due...