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Oxygen, pH, Lactate, and Metabolism-How Old Knowledge and New Insights

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dc.contributor.author Haller, HL
dc.contributor.author Sander, F
dc.contributor.author Popp, D
dc.contributor.author Rapp, M
dc.contributor.author Hartmann, B
dc.contributor.author Demircan, M
dc.contributor.author Nischwitz, SP
dc.contributor.author Kamolz, LP
dc.date.accessioned 2022-10-05T13:20:12Z
dc.date.available 2022-10-05T13:20:12Z
dc.date.issued 2021
dc.identifier.uri http://hdl.handle.net/11616/62718
dc.description.abstract Over time, we have come to recognize a very complex network of physiological changes enabling wound healing. An immunological process enables the body to distinguish damaged cells and begin a cleaning mechanism by separating damaged proteins and cells with matrix metalloproteinases, a complement reaction, and free radicals. A wide variety of cell functions help to rebuild new tissue, dependent on energy provision and oxygen supply. Like in an optimized "bio-reactor, " disturbance can lead to prolonged healing. One of the earliest investigated local factors is the pH of wounds, studied in close relation to the local perfusion, oxygen tension, and lactate concentration. Granulation tissue with the wrong pH can hinder fibroblast and keratinocyte division and proliferation, as well as skin graft takes. Methods for influencing the pH have been tested, such as occlusion and acidification by the topical application of acidic media. In most trials, this has not changed the wound's pH to an acidic one, but it has reduced the strong alkalinity of deeper or chronic wounds. Energy provision is essential for all repair processes. New insights into the metabolism of cells have changed the definition of lactate from a waste product to an indispensable energy provider in normoxic and hypoxic conditions. Neovascularization depends on oxygen provision and lactate, signaling hypoxic conditions even under normoxic conditions. An appropriate pH is necessary for successful skin grafting; hypoxia can change the pH of wounds. This review describes the close interconnections between the local lactate levels, metabolism, healing mechanisms, and pH. Furthermore, it analyzes and evaluates the different possible ways to support metabolism, such as lactate enhancement and pH adjustment. The aim of wound treatment must be the optimization of all these components. Therefore, the role of lactate and its influence on wound healing in acute and chronic wounds will be assessed.
dc.description.abstract C1 [Haller, Herbert Leopold] HLMedConsult, UKH Linz AUVA, Zehetlandweg 7, A-4060 Leonding, Austria.
dc.description.abstract [Sander, Frank; Hartmann, Bernd] Plast Surg Trauma Hosp Berlin, Burn Ctr, Warener Str 7, D-12683 Berlin, Germany.
dc.description.abstract [Popp, Daniel; Nischwitz, Sebastian Philipp; Kamolz, Lars Peter] Med Univ Graz, Div Plast Aesthet & Reconstruct Surg, Dept Surg, Auenbruggerpl 29, A-8036 Graz, Austria.
dc.description.abstract [Rapp, Matthias] Marienhosp Stuttgart, Burn Ctr, Clin Orthoped Trauma Surg & Sports Traumatol, D-70199 Stuttgart, Germany.
dc.description.abstract [Demircan, Mehmet] Inonu Univ, Dept Pediat Surg, Pediat Intens Burn Care Unit, Fac Med, TR-44315 Malatya, Turkey.
dc.description.abstract [Nischwitz, Sebastian Philipp; Kamolz, Lars Peter] JOANNEUM RES Forsch Gesell mbH, COREMED Cooperat Ctr Regenerat Med, A-8036 Graz, Austria.
dc.source MEDICINA-LITHUANIA
dc.title Oxygen, pH, Lactate, and Metabolism-How Old Knowledge and New Insights
dc.title Might Be Combined for New Wound Treatment


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