Matches in SemOpenAlex for { <https://semopenalex.org/work/W4306247666> ?p ?o ?g. }
- W4306247666 endingPage "e0275602" @default.
- W4306247666 startingPage "e0275602" @default.
- W4306247666 abstract "A non-thermal atmospheric pressure plasma jet (APPJ) may stimulate cells and tissues or result in cell death depending on the intensity of plasma at the target; therefore, we herein investigated the effects of non-thermal plasma under non-contact conditions on the healing of full-thickness wounds in diabetic mice (DM+ group) and normal mice (DM- group). A hydrogen peroxide colorimetric method and high performance liquid chromatography showed that APPJ produced low amounts of reactive oxygen and nitrogen species. Ten-week-old male C57BL/6j mice with normal blood glucose levels (DM- group) and 10-week-old male C57BLKS/J Iar-+Leprdb/+Leprdb mice (DM+ group) received two full-thickness cutaneous wounds (4 mm in diameter) on both sides of the dorsum. Wounds were treated with or without the plasma jet or argon gas for 1 minute and were then covered with a hydrocolloid dressing (Hydrocolloid), according to which mice were divided into the following groups: DM+Plasma, DM+Argon, DM+Hydrocolloid, DM-Plasma, DM-Argon, and DM-Hydrocolloid. Exudate weights, wound areas, and wound area ratios were recorded every day. Hematoxylin and eosin staining was performed to assess re-epithelialization and α-SMA immunohistological staining to evaluate the formation of new blood vessels. Non-thermal plasma under non-contact conditions reduced the production of exudate. Exudate weights were smaller in the DM+Plasma group than in the DM+Hydrocolloid and DM+Argon groups. The wound area ratio was smaller for plasma-treated wounds, and was also smaller in the DM+Plasma group than in the DM+Hydrocolloid and DM+Argon groups on days 1–21 (p<0.01). Wound areas were smaller in the DM-Plasma group than in the DM-Argon group until day 14 and differences were significant on days 1–5 (p<0.01). The percentage of re-epithelialization was significantly higher in the DM+Plasma group than in the DM+Argon and DM+Hydrocolloid groups (p<0.01). The number of new blood vessels that had formed by day 7 was significantly higher in the DM+Plasma group than in the DM+Hydrocolloid and DM+Argon groups (p<0.05). These results indicate that treatment with the current non-thermal plasma APPJ device under non-contact conditions accelerated wound healing in diabetic mice." @default.
- W4306247666 created "2022-10-15" @default.
- W4306247666 creator A5000227289 @default.
- W4306247666 creator A5005050269 @default.
- W4306247666 creator A5006653596 @default.
- W4306247666 creator A5029126483 @default.
- W4306247666 creator A5031476989 @default.
- W4306247666 creator A5041407669 @default.
- W4306247666 creator A5044540933 @default.
- W4306247666 creator A5078536443 @default.
- W4306247666 creator A5080525095 @default.
- W4306247666 creator A5085725578 @default.
- W4306247666 creator A5091104979 @default.
- W4306247666 date "2022-10-14" @default.
- W4306247666 modified "2023-10-16" @default.
- W4306247666 title "Wound healing in db/db mice with type 2 diabetes using non-contact exposure with an argon non-thermal atmospheric pressure plasma jet device" @default.
- W4306247666 cites W1539189523 @default.
- W4306247666 cites W1573296762 @default.
- W4306247666 cites W1932164140 @default.
- W4306247666 cites W1934463888 @default.
- W4306247666 cites W1967120717 @default.
- W4306247666 cites W1986185314 @default.
- W4306247666 cites W1997458290 @default.
- W4306247666 cites W2000750396 @default.
- W4306247666 cites W2010781374 @default.
- W4306247666 cites W2022397532 @default.
- W4306247666 cites W2039889642 @default.
- W4306247666 cites W2049270721 @default.
- W4306247666 cites W2054536927 @default.
- W4306247666 cites W2092284751 @default.
- W4306247666 cites W2117595314 @default.
- W4306247666 cites W2122741606 @default.
- W4306247666 cites W2144166534 @default.
- W4306247666 cites W2146160170 @default.
- W4306247666 cites W2155292943 @default.
- W4306247666 cites W2325727928 @default.
- W4306247666 cites W2414108570 @default.
- W4306247666 cites W2414866697 @default.
- W4306247666 cites W2522008710 @default.
- W4306247666 cites W2582813880 @default.
- W4306247666 cites W2625702801 @default.
- W4306247666 cites W2784140013 @default.
- W4306247666 cites W2803218250 @default.
- W4306247666 cites W2806025331 @default.
- W4306247666 cites W2885692233 @default.
- W4306247666 cites W2887147563 @default.
- W4306247666 cites W2914632860 @default.
- W4306247666 cites W2917967280 @default.
- W4306247666 cites W2923628800 @default.
- W4306247666 cites W2936727784 @default.
- W4306247666 cites W2944590512 @default.
- W4306247666 cites W2954011306 @default.
- W4306247666 cites W2990465377 @default.
- W4306247666 cites W2995691142 @default.
- W4306247666 cites W3018278469 @default.
- W4306247666 cites W3037181748 @default.
- W4306247666 cites W3042460071 @default.
- W4306247666 cites W3091681886 @default.
- W4306247666 cites W3177354535 @default.
- W4306247666 cites W3196434082 @default.
- W4306247666 doi "https://doi.org/10.1371/journal.pone.0275602" @default.
- W4306247666 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36240146" @default.
- W4306247666 hasPublicationYear "2022" @default.
- W4306247666 type Work @default.
- W4306247666 citedByCount "0" @default.
- W4306247666 crossrefType "journal-article" @default.
- W4306247666 hasAuthorship W4306247666A5000227289 @default.
- W4306247666 hasAuthorship W4306247666A5005050269 @default.
- W4306247666 hasAuthorship W4306247666A5006653596 @default.
- W4306247666 hasAuthorship W4306247666A5029126483 @default.
- W4306247666 hasAuthorship W4306247666A5031476989 @default.
- W4306247666 hasAuthorship W4306247666A5041407669 @default.
- W4306247666 hasAuthorship W4306247666A5044540933 @default.
- W4306247666 hasAuthorship W4306247666A5078536443 @default.
- W4306247666 hasAuthorship W4306247666A5080525095 @default.
- W4306247666 hasAuthorship W4306247666A5085725578 @default.
- W4306247666 hasAuthorship W4306247666A5091104979 @default.
- W4306247666 hasBestOaLocation W43062476661 @default.
- W4306247666 hasConcept C121332964 @default.
- W4306247666 hasConcept C126322002 @default.
- W4306247666 hasConcept C141071460 @default.
- W4306247666 hasConcept C178790620 @default.
- W4306247666 hasConcept C185592680 @default.
- W4306247666 hasConcept C2780269544 @default.
- W4306247666 hasConcept C547737533 @default.
- W4306247666 hasConcept C62520636 @default.
- W4306247666 hasConcept C71924100 @default.
- W4306247666 hasConcept C82706917 @default.
- W4306247666 hasConcept C85344455 @default.
- W4306247666 hasConceptScore W4306247666C121332964 @default.
- W4306247666 hasConceptScore W4306247666C126322002 @default.
- W4306247666 hasConceptScore W4306247666C141071460 @default.
- W4306247666 hasConceptScore W4306247666C178790620 @default.
- W4306247666 hasConceptScore W4306247666C185592680 @default.
- W4306247666 hasConceptScore W4306247666C2780269544 @default.
- W4306247666 hasConceptScore W4306247666C547737533 @default.
- W4306247666 hasConceptScore W4306247666C62520636 @default.
- W4306247666 hasConceptScore W4306247666C71924100 @default.