共 39 条
Amphiphilically engineered sodium deoxycholate based nanocomposite hydrogels with strong bactericidal and water absorption characteristics
被引:2
作者:
Dey, Abira
[1
,6
,7
]
Khan, Finaz
[1
]
Mukhopadhyay, Madhumita
[2
]
Mukhopadhyay, Jayanta
[3
]
Mukherjee, Monalisa
[4
]
Dutta, Kajari
[5
]
Das, Susmita
[1
]
机构:
[1] Amity Univ Kolkata, Amity Inst Appl Sci, Dept Chem, Kolkata 700135, W Bengal, India
[2] Maulana Abul Kalam Azad Univ Technol MAKAUT, Dept Mat Sci & Technol, Kolkata, W Bengal, India
[3] CSIR, Cent Glass & Ceram Res Inst, Acad Sci & Innovat Res AcSIR, Energy Mat & Devices Div, Kolkata, W Bengal, India
[4] Amity Univ Uttar Pradesh, Amity Inst Click Chem Res & Studies, Sect 125, Noida 201303, Uttar Pradesh, India
[5] Amity Univ Kolkata, Amity Inst Appl Sci, Dept Phys, Kolkata 700135, W Bengal, India
[6] Indian Sci & Technol Fdn, New Delhi, India
[7] Moldoc Biotech Pvt Ltd, New Delhi 110053, India
关键词:
Hydrogels;
Sodium deoxycholate;
Water absorbing;
Antibacterial;
ANTIBACTERIAL HYDROGELS;
RELEASE;
GELS;
D O I:
10.1016/j.mtcomm.2023.105353
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Soft naturally occurring biodegradable low molecular weight (LMW) gels with high water absorption capacity and inherent antibacterial properties are significant for applications in wound healing patches, personal hygiene products and soft tissue regeneration. Herein, we report novel naturally occurring bile acid based nanocomposite hydrogels derived from sodium deoxycholate (NaDC) and reduced graphene oxide (rGO) as well as amphiphilic sodium dodecylsulfate (SDS) modified rGO. Introduction of rGO and SDS-rGO in the NaDC hydrogel induces 7L-7L stacking in the nanocomposite hydrogels as well as enhances H-bonding interactions significantly yielding long range order as reflected by FTIR, sol-gel transition temperature, XRD, rheology and SEM studies. Among pure NaDC, rGO-NaDC and SDS-rGO NaDC xerogels, the latter is found to exhibit more than 10 times increased water absorption capacity compared to the pure NaDC gels which is attributed to the amphiphilic modification imparting increased H-bonding in the corresponding gel. Highest viscosity of SDS-rGO-NaDC hydrogels followed by rGO-NaDC and pure NaDC hydrogels further confirm the improved interactions. The emergence of antibac-terial activity in SDS-rGO gel unlike its precursors as well as pure NaDC and rGO-NaDC gels is assigned to the dehydration induced bacterial cell death resulting from its high water absorption capacity imparted by its enhanced H-bonding. Thus, SDS-rGO NaDC gel obtained through a facile alteration of physical forces exhibiting antibacterial activity along with appreciable water absorption capacity and stability under applied stress in-dicates its strong applicability in biodegradable and biocompatible antibacterial wound healing patches.
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页数:9
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