Optimizing phenol-modified hyaluronic acid for designing shape-maintaining biofabricated hydrogel scaffolds in soft tissue engineering

J Simińska-Stanny, F Hachemi, G Dodi… - International journal of …, 2023 - Elsevier
In this study, we developed a well-printable biomaterial ink for 3D printing of shape-
maintaining hydrogel scaffolds. The hydrogel base comprised tyramine-modified hyaluronic …

Composite of bacterial cellulose and gelatin: A versatile biocompatible scaffold for tissue engineering

I Rzhepakovsky, S Piskov, S Avanesyan… - International Journal of …, 2024 - Elsevier
Abstract Synthesis of 0.4±0.03 g/L per day of pure and porous bacterial cellulose (BC)
scaffolds (scaffBC) and BC scaffolds modified with gelatin (scaffBC/Gel) was carried out …

Reverse pharmacology approach to validate the diabetic wound-healing activity of Jatyadi thailam formulations in vitro on diabetic mimic environment

K Swathi, S Sumathi, K Somit… - Archives of Physiology …, 2023 - Taylor & Francis
Abstract Objective: Jatyadi thailam, an Ayurvedic preparation, is renowned for its efficacy in
diabetic wound healing and inflammation. This study aimed to validate and compare the …

[HTML][HTML] Potential benefits of adipose–derived SVF and MSCs to regenerate damaged tissues from alloplastic synthetic materials

ML Zocchi, L Prantl, D Oliinyk, L Knoedler… - European Journal of …, 2024 - Springer
Abstract Recent advancements in Plastic Surgery and Regenerative MedicineQuery have
revolutionized tissue repair, remodeling, and regeneration. A promising approach involves …

[HTML][HTML] Partial Decellularization as a Method to Improve the Biocompatibility of Heart Tissue Implants

M Meșină, I Mîndrilă, MI Meșină-Botoran… - Current Health …, 2023 - ncbi.nlm.nih.gov
Increasing the biocompatibility of some biological implants through tissue engineering is
important for regenerative medicine, which recently has a rapid development dynamic. In …