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Correction to: Tea polyphenol modified, photothermal responsive and ROS generative black phosphorus quantum dots as nanoplatforms for promoting MRSA infected wounds healing in diabetic rats

The Original Article was published on 10 November 2021

Correction to: J Nanobiotechnol (2021) 19:362 https://doi.org/10.1186/s12951-021-01106-w

Following the publication of the original article [1], the authors reported that Fig. 8A was incorrect. The corrected Fig. 8 and the figure caption are given. The corrections do not affect the results and conclusions. All authors agree to these corrections and apologize for this error.

Fig. 8
figure 8

Evaluation on the healing-promoting effect of the nanoplatforms on infected burns rats. A H&E staining of wound sites with different treatments, the red arrow indicates intact epidermis, bar = 200 μm. B Masson staining of the wound tissues, dotted line indicates collagen at the wound, bar = 200 μm. C Western blot analysis. D Quantification for the molecules involved in the signaling pathways for burn wound healing. E Scheme diagram showing nanomaterials direct cell proliferation and enhanced fibrinogen expression to accelerate wound healing

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  1. Xu S, Chang L, Hu Y, Zhao X, Huang S, Chen Z, Ren X, Mei X. Tea polyphenol modified, photothermal responsive and ROS generative black phosphorus quantum dots as nanoplatforms for promoting MRSA infected wounds healing in diabetic rats. J Nanobiotechnol. 2021;19(1):362. https://doi.org/10.1186/s12951-021-01106-w.

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Correspondence to Zhenhua Chen, Xiuli Ren or Xifan Mei.

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Xu, S., Chang, L., Hu, Y. et al. Correction to: Tea polyphenol modified, photothermal responsive and ROS generative black phosphorus quantum dots as nanoplatforms for promoting MRSA infected wounds healing in diabetic rats. J Nanobiotechnol 20, 192 (2022). https://doi.org/10.1186/s12951-022-01408-7

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  • DOI: https://doi.org/10.1186/s12951-022-01408-7