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首页> 外文期刊>Nature reviews neuroscience >Oxygen-Releasing Microparticles for Cell Survival and Differentiation Ability under Hypoxia for Effective Bone Regeneration
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Oxygen-Releasing Microparticles for Cell Survival and Differentiation Ability under Hypoxia for Effective Bone Regeneration

机译:用于细胞存活和缺氧下的分化能力的氧气释放微粒,用于有效骨再生

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摘要

Sufficient oxygen delivery into tissue-engineered three-dimensional (3D) scaffolds to produce clinically applicable tissues/organs remains a challenge for researchers and clinicians. One potential strategy to overcome this limitation is the use of an oxygen releasing scaffold. In the present study, we prepared hollow microparticles (HPs) loaded with an emulsion of the oxygen carrier perfluorooctane (PFO; PFO-HPs) for the timely supply of oxygen to surrounding cells. These PFO-HPs prolonged the survival and preserved the osteogenic differentiation potency of human periosteal-derived cells (hPDCs) under hypoxia. hPDCs seeded onto PFO-HPs formed new bone at a faster rate and with a higher bone density than hPDCs seeded onto phosphate buffered saline-loaded control HPs. These findings suggest that PFO-HPs provide a suitable environment for the survival and maintenance of differentiation ability of hPDCs at bony defects without vascular networks until new blood vessel ingrowth occurs, thus enhancing bone regeneration. PFO-HPs are a promising system for effective delivery of various functional cells, including stem cells and progenitor cells, to regenerate damaged tissues/organs.
机译:足够的氧气输送到组织工程的三维(3D)支架中产生临床应用组织/器官仍然是研究人员和临床医生的挑战。克服这种限制的一个潜在策略是使用释放支架。在本研究中,我们制备了负载的中空微粒(HPS),其具有氧载体全氟辛烷(PFO; PFO-HPS)的乳液,以便及时供应氧气到周围细胞。这些PFO-HPS延长了缺氧下人骨膜衍生细胞(HPDC)的骨质发生分化效力。 HPDC以更快的速率形成新的骨,比培养盐水加载的对照HPS更快的速率和较高的骨密度较高,骨密度高于HPDC。这些研究结果表明,PFO-HPS提供了适当的环境,用于在没有血管网络的情况下在没有血管网络的骨质缺陷处存在的生存和维持能力的生存和维持能力,直到新的血管内血管产生,从而提高骨再生。 PFO-HPS是有助于有效地递送各种功能细胞,包括干细胞和祖细胞,以再生受损的组织/器官。

著录项

  • 来源
    《Nature reviews neuroscience》 |2019年第2期|共11页
  • 作者单位

    Dankook Univ Dept Nanobiomed Sci Cheonan 31116 South Korea;

    Dankook Univ Dept Nanobiomed Sci Cheonan 31116 South Korea;

    Dankook Univ Dept Nanobiomed Sci Cheonan 31116 South Korea;

    Hannam Univ Dept Adv Mat &

    Chem Engn Daejeon 34054 South Korea;

    Gyeongsang Natl Univ Coll Vet Med Dept Theriogenol &

    Biotechnol Jinju 52727 South Korea;

    Gyeongsang Natl Univ Coll Vet Med Dept Theriogenol &

    Biotechnol Jinju 52727 South Korea;

    Gyeongsang Natl Univ Coll Vet Med Dept Vet Med Imaging Jinju 52727 South Korea;

    Gyeongsang Natl Univ Gyeongsang Natl Univ Hosp Sch Med Inst Hlth Sci Dept Oral &

    Maxillofacial;

    Dankook Univ Dept Nanobiomed Sci Cheonan 31116 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经生理学;
  • 关键词

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