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重新审视氧气在伤口愈合中的重要作用。

Revisiting the essential role of oxygen in wound healing.

作者信息

Gordillo Gayle M, Sen Chandan K

机构信息

Department of Surgery, Laboratory of Molecular Medicine, 512 Davis Heart and Lung Research Institute, Ohio State University, 473 West 12th Ave., Columbus, OH 43210, USA.

出版信息

Am J Surg. 2003 Sep;186(3):259-63. doi: 10.1016/s0002-9610(03)00211-3.


DOI:10.1016/s0002-9610(03)00211-3
PMID:12946829
Abstract

Hypoxemia, caused by disrupted vasculature, is a key factor that limits wound healing. Correcting hypoxemia through the administration of supplemental oxygen (O(2)) can have significant beneficial impact on wound healing in the perioperative and outpatient settings. Beyond its role as a nutrient and antibiotic, O(2) may support vital processes such as angiogenesis, cell motility, and extracellular matrix formation. Recent discoveries highlight a novel aspect, addressing the role of O(2) in wound healing via the production of reactive oxygen species (ROS). Almost all wound-related cells possess specialized enzymes that generate ROS (including free radicals and H(2)O(2)) from O(2). Defect in these enzymes is associated with impaired healing. Low wound pO(2) is expected to compromise the function of these enzymes. At low concentrations, ROS serve as cellular messengers to support wound healing. The use of systemic hyperbaric O(2) therapy presents potential advantages, as well as risks. There is evidence to suspect that the use of pressure and systemic pure O(2) may not be essential in wound care. Elimination of these factors by using sub-pure systemic O(2) under normobaric conditions may significantly minimize the risk of O(2) toxicity. Furthermore, opportunities to treat dermal wounds using topical O(2) therapy warrant further investigation. Given that many growth factors require ROS for their function, it is reasonable to assume that approaches to correct wound pO(2) will serve as an effective adjunct in treating chronic wounds.

摘要

由血管系统紊乱引起的低氧血症是限制伤口愈合的关键因素。在围手术期和门诊环境中,通过补充氧气(O₂)纠正低氧血症对伤口愈合可产生显著的有益影响。除了作为营养物质和抗生素的作用外,O₂还可能支持血管生成、细胞运动和细胞外基质形成等重要过程。最近的发现突出了一个新的方面,即通过活性氧(ROS)的产生来探讨O₂在伤口愈合中的作用。几乎所有与伤口相关的细胞都拥有专门的酶,这些酶可将O₂转化为ROS(包括自由基和H₂O₂)。这些酶的缺陷与愈合受损有关。伤口低pO₂预计会损害这些酶的功能。在低浓度下,ROS作为细胞信使支持伤口愈合。全身高压氧治疗具有潜在的优势,但也存在风险。有证据怀疑在伤口护理中使用压力和全身纯O₂可能并非必要。在常压条件下使用亚纯全身O₂消除这些因素可能会显著降低O₂毒性的风险。此外,使用局部O₂疗法治疗皮肤伤口的机会值得进一步研究。鉴于许多生长因子的功能需要ROS,合理的假设是纠正伤口pO₂的方法将成为治疗慢性伤口的有效辅助手段。

相似文献

[1]
Revisiting the essential role of oxygen in wound healing.

Am J Surg. 2003-9

[2]
Oxygen in wound healing--more than a nutrient.

World J Surg. 2004-3

[3]
Topical oxygen therapy induces vascular endothelial growth factor expression and improves closure of clinically presented chronic wounds.

Clin Exp Pharmacol Physiol. 2008-8

[4]
Dermal excisional wound healing in pigs following treatment with topically applied pure oxygen.

Mutat Res. 2005-11-11

[5]
Oxygen in wound healing: nutrient, antibiotic, signaling molecule, and therapeutic agent.

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[6]
Oxygen in acute and chronic wound healing.

Br J Dermatol. 2010-4-15

[7]
UHMS position statement: topical oxygen for chronic wounds.

Undersea Hyperb Med. 2005

[8]
Reactive Oxygen Species and NOX Enzymes Are Emerging as Key Players in Cutaneous Wound Repair.

Int J Mol Sci. 2017-10-15

[9]
Clinical hyperbaric oxygen therapy, wound perfusion, and transcutaneous oximetry.

World J Surg. 2004-3

[10]
In vivo effect of hyperbaric oxygen on wound angiogenesis and epithelialization.

Wound Repair Regen. 2009

引用本文的文献

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Adv Wound Care (New Rochelle). 2025-7-28

[2]
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Bioact Mater. 2025-7-8

[3]
Advances in oxygen-releasing matrices for regenerative engineering applications.

Med Biol Eng Comput. 2025-4-4

[4]
Early short-term hypoxia promotes epidermal cell migration by activating the CCL2-ERK1/2 pathway and epithelial-mesenchymal transition during wound healing.

Burns Trauma. 2024-6-17

[5]
Surgical site infection following cesarean section and its predictors in Ethiopia: A systematic review and meta-analysis.

PLoS One. 2024

[6]
Exploring the Antioxidant Potential of Gellan and Guar Gums in Wound Healing.

Pharmaceutics. 2023-8-17

[7]
Oxygen-releasing biomaterials for chronic wounds breathing: From theoretical mechanism to application prospect.

Mater Today Bio. 2023-6-2

[8]
Impact of timing to initiate adjuvant therapy on survival of elderly glioblastoma patients using the SEER-Medicare and national cancer databases.

Sci Rep. 2023-2-25

[9]
The Effect of High Altitude on Short-Term Outcomes of Post-hemorrhoidectomy.

Cureus. 2023-1-17

[10]
Hyperbaric oxygen in children with cerebral palsy: A systematic review of effectiveness and safety.

PLoS One. 2022

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