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,
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,
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,
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,
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,
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,
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,
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,
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,
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,
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,
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,
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,
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,
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82 citations
,
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81 citations
,
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,
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80 citations
,
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,
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76 citations
,
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70 citations
,
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,
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67 citations
,
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,
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61 citations
,
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61 citations
,
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,
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,
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,
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,
February 2022 in “Nanomaterials” Nanomaterials show promise in improving wound healing but require more research on their potential toxicity.