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Journal ArticleDOI

Antibacterial adhesive injectable hydrogels with rapid self-healing, extensibility and compressibility as wound dressing for joints skin wound healing.

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TLDR
In vivo experiments indicated that curcumin loaded hydrogels significantly accelerated wound healing rate with higher granulation tissue thickness and collagen disposition and upregulated vascular endothelial growth factor (VEGF) in a full-thickness skin defect model.
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This article is published in Biomaterials.The article was published on 2018-11-01. It has received 1102 citations till now. The article focuses on the topics: Self-healing hydrogels & Granulation tissue.

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Self-Crosslinkable Oxidized Alginate-Carboxymethyl Chitosan Hydrogels as an Injectable Cell Carrier for In Vitro Dental Enamel Regeneration

TL;DR: Evidence is provided that the oxidized alginate-carboxymethyl chitosan hydrogels could be used as an injectable cell carrier for dental enamel tissue engineering applications.
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Multifunctional Clay/PNIPAM Hydrogel Incorporating HxMoO3 Plasmonic Quantum Dot

TL;DR: Li et al. as mentioned in this paper developed a facile method to fabricate ultra-tough hydrogel by the doping of plasmonic quantum dots in the hydrogramel system, which could induce the multifunctionalization of PNIPAM hydrogels, including excellent photothermal conversion.
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A self-healing hydrogel based on oxidized microcrystalline cellulose and carboxymethyl chitosan as wound dressing material.

TL;DR: In this article , a composite self-healing hydrogel with pH sensitivity for drug delivery system based on the Schiff-base reaction was fabricated, where aldehyde group of oxidized microcrystalline cellulose (OMCC) from PP were crosslinked with amino group of carboxymethyl chitosan (CMCS) from HER via Schiffbase reaction for structuring hydrogels.
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Hemostatic wound dressings: Predicting their effects by in vitro tests:

TL;DR: A range of tests for desired and undesired effects of materials need to be combined to gain some degree of predictability of the in vivo situation.
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Nanostructured Lipid Carriers-Hydrogels System for Drug Delivery: Nanohybrid Technology Perspective

TL;DR: The purpose of this paper is to review important nanohybrid perspectives in drug delivery between nanostructured lipid carriers (NLC) and hydrogel systems, with an emphasis on their preparation, potential applications, advantages, and underlying issues associated with these exciting materials.
References
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Journal ArticleDOI

Cutaneous wound healing.

TL;DR: The primary goals of the treatment of wounds are rapid wound closure and a functional and aesthetically satisfactory scar.
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Highly stretchable and tough hydrogels

TL;DR: The synthesis of hydrogels from polymers forming ionically and covalently crosslinked networks is reported, finding that these gels’ toughness is attributed to the synergy of two mechanisms: crack bridging by the network of covalent crosslinks, and hysteresis by unzipping thenetwork of ionic crosslinks.
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Multiple biological activities of curcumin: a short review.

TL;DR: This review summarizes the most interesting in vitro and in vivo studies on the biological effects of curcumin, the constituent of turmeric, which has been widely studied for its anti-inflammatory, anti-angiogenic,Anti-oxidant, wound healing and anti-cancer effects.
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Antibacterial anti-oxidant electroactive injectable hydrogel as self-healing wound dressing with hemostasis and adhesiveness for cutaneous wound healing

TL;DR: The antibacterial electroactive injectable hydrogel dressing prolonged the lifespan of dressing relying on self-healing ability and significantly promoted the in vivo wound healing process attributed to its multifunctional properties, meaning that they are excellent candidates for full-thickness skin wound healing.
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Influence of pH on wound-healing: a new perspective for wound-therapy?

TL;DR: The conclusion to be drawn at present is that the wound pH indeed proves to be a potent influential factor for the healing process and that different pH ranges are required for certain distinct phases of wound healing.
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