Bhattacharjee, Brinta ; Mukherjee, Riya ; Haldar, Jayanta (2022) Biocompatible hemostatic sponge exhibiting broad-spectrum antibacterial activity ACS Biomaterials Science & Engineering, 8 (8). pp. 3596-3607. ISSN 2373-9878
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Official URL: https://doi.org/10.1021/acsbiomaterials.2c00410
Related URL: http://dx.doi.org/10.1021/acsbiomaterials.2c00410
Abstract
Hemorrhage during accidents or surgery is a significant challenge that can contribute to mortality. This is further aggravated due to bacterial infections at the injured site. Therefore, rapid application of a hemostatic and antibacterial material is highly necessary as a pretreatment for patients’ survival. Herein, we have developed a hemostatic sponge (Hemobac) through amide crosslinking of gelatin and an N-(2-hydroxy) propyl-3-trimethylammonium chitosan (HTCC)-silver chloride nanocomposite (QAm1-Ag0.1) to mitigate bacterial infections, while aiding hemostasis. This Hemobac sponge completely eradicated (∼4–5 log) a wide range of Gram-positive and Gram-negative bacteria encompassing various clinical isolates within 6 h. The antihemorrhagic ability of Hemobac was ascertained through SEM images, which exhibited the presence of agglomerated blood cells onto the sponge with a significantly low blood-clotting index value (∼23 ± 1). Notably, Hemobac reduced the blood loss by ∼70–80% in the liver puncture model and femoral vein injury model in mice, displaying its improved hemostatic ability over a marketed gelatin-based sponge. Negligible hemolytic activity (∼6%) and retained healthy morphology of mammalian cells were observed upon exposure to the Hemobac sponge. Minimal immune response was noticed at the Hemobac-treated wound in mice through histopathology analysis. Collectively, these findings indicate that this biocompatible Hemobac sponge can stop the bleeding instantaneously and combat bacterial infections.
Item Type: | Article |
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Source: | Copyright of this article belongs to American Chemical Society. |
Keywords: | Antibacterial Sponge; Hemostatic; Antibacterial Polymer Nanocomposite; Blood Clotting; Antimicrobial Resistance |
ID Code: | 137550 |
Deposited On: | 05 Sep 2025 06:01 |
Last Modified: | 05 Sep 2025 06:01 |
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