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高压氧促进指(趾)再生过程中的近端骨再生和有序胶原组成。

Hyperbaric Oxygen Promotes Proximal Bone Regeneration and Organized Collagen Composition during Digit Regeneration.

作者信息

Sammarco Mimi C, Simkin Jennifer, Cammack Alexander J, Fassler Danielle, Gossmann Alexej, Marrero Luis, Lacey Michelle, Van Meter Keith, Muneoka Ken

机构信息

Department of Cell and Molecular Biology, Tulane University, New Orleans, Louisiana, United States of America.

Department of Mathematics, Tulane University, New Orleans, Louisiana, United States of America.

出版信息

PLoS One. 2015 Oct 9;10(10):e0140156. doi: 10.1371/journal.pone.0140156. eCollection 2015.

Abstract

Oxygen is critical for optimal bone regeneration. While axolotls and salamanders have retained the ability to regenerate whole limbs, mammalian regeneration is restricted to the distal tip of the digit (P3) in mice, primates, and humans. Our previous study revealed the oxygen microenvironment during regeneration is dynamic and temporally influential in building and degrading bone. Given that regeneration is dependent on a dynamic and changing oxygen environment, a better understanding of the effects of oxygen during wounding, scarring, and regeneration, and better ways to artificially generate both hypoxic and oxygen replete microenvironments are essential to promote regeneration beyond wounding or scarring. To explore the influence of increased oxygen on digit regeneration in vivo daily treatments of hyperbaric oxygen were administered to mice during all phases of the entire regenerative process. Micro-Computed Tomography (μCT) and histological analysis showed that the daily application of hyperbaric oxygen elicited the same enhanced bone degradation response as two individual pulses of oxygen applied during the blastema phase. We expand past these findings to show histologically that the continuous application of hyperbaric oxygen during digit regeneration results in delayed blastema formation at a much more proximal location after amputation, and the deposition of better organized collagen fibers during bone formation. The application of sustained hyperbaric oxygen also delays wound closure and enhances bone degradation after digit amputation. Thus, hyperbaric oxygen shows the potential for positive influential control on the various phases of an epimorphic regenerative response.

摘要

氧气对于最佳的骨再生至关重要。虽然蝾螈和蝾螈保留了再生整个肢体的能力,但哺乳动物的再生仅限于小鼠、灵长类动物和人类手指的远端(P3)。我们之前的研究表明,再生过程中的氧微环境是动态的,并且在骨骼的构建和降解过程中具有时间上的影响。鉴于再生依赖于动态变化的氧环境,更好地了解氧气在伤口愈合、瘢痕形成和再生过程中的作用,以及更好地人工产生低氧和富氧微环境的方法,对于促进伤口愈合或瘢痕形成后的再生至关重要。为了探讨增加氧气对体内手指再生的影响,在整个再生过程的所有阶段,每天对小鼠进行高压氧治疗。微计算机断层扫描(μCT)和组织学分析表明,每天应用高压氧引发的骨降解反应与在芽基期应用的两个单独的氧脉冲相同。我们扩展了这些发现,从组织学上表明,在手指再生过程中持续应用高压氧会导致截肢后在更近端的位置延迟芽基形成,并在骨形成过程中沉积组织更有序的胶原纤维。持续应用高压氧还会延迟伤口闭合,并增强手指截肢后的骨降解。因此,高压氧显示出对形态再生反应的各个阶段具有积极影响控制的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/836c/4599941/ab631ae85cf0/pone.0140156.g001.jpg

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