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In situ 3D-bioprinting MoS2 accelerated gelling hydrogel scaffold for promoting chronic diabetic wound healing. Xiaoya Ding et al.

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doi.org2025-03-22 收录
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In this submission, we share the data about the paper "In situ 3D-bioprinting MoS2 accelerated gelling hydrogel scaffold for promoting chronic diabetic wound healing". Our primary objectives were to characterize the generation of the MoS2 accelerated gelling hydrogel scaffold via in situ 3D-bioprinting technology. And, the antioxidant and photothermal antimicrobial functions of the scaffold were also detailedly characterized. Furthermore, we used the scaffold for chronic diabetic wounds healing and proved that the MoS2 accelerated gelling hydrogel scaffold is significantly valuable for chronic wound management.

在本提交中,我们分享了关于论文《原位3D生物打印MoS2加速凝胶水凝胶支架促进慢性糖尿病伤口愈合》的数据。我们的主要目标是对通过原位3D生物打印技术生成的MoS2加速凝胶水凝胶支架进行表征。此外,该支架的抗氧化和光热抗菌功能也得到了详细的描述。进一步地,我们利用该支架进行慢性糖尿病伤口愈合治疗,并证明MoS2加速凝胶水凝胶支架对于慢性伤口管理具有显著价值。

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