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Polymer Scaffolds for Small-Diameter Vascular Tissue Engineering

机译:用于小直径血管组织工程的聚合物支架

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摘要

To better engineer small-diameter blood vessels, a few types of novel scaffolds are fabricated from biodegradable poly(L-lactic acid) (PLLA) by means of thermally induced phase-separation (TIPS) techniques. By utilizing the differences in thermal conductivities of the mold materials and using benzene as the solvent scaffolds with oriented gradient microtubular structures in the axial or radial direction can be created. The porosity, tubular size, and the orientational direction of the microtubules can be controlled by the polymer concentration, the TIPS temperature, and by utilizing materials of different thermal conductivities. These gradient microtubular structures facilitate cell seeding and mass transfer for cell growth and function. Nanofibrous scaffolds with an oriented and interconnected microtubular pore network are also developed by a one-step TIPS method using a benzene/tetrahydrofuran mixture as the solvent without the need for porogen materials. The structural features of such scaffolds can be conveniently adjusted by varying the solvent ratio, phase-separation temperature, and polymer concentration to mimic the nanofibrous features of an extracellular matrix. These scaffolds were fabricated for the tissue engineering of small-diameter blood vessels by utilizing their advantageous structural features to facilitate blood-vessel regeneration.
机译:为了更好地工程化小直径血管,通过热诱导相分离(TIPS)技术由可生物降解的聚(L-乳酸)(PLLA)制造了几种新型支架。通过利用模具材料的热导率的差异,并使用苯作为溶剂支架,可以在轴向或径向上形成定向的梯度微管结构。微管的孔隙率,管状尺寸和取向方向可以通过聚合物浓度,TIPS温度以及利用不同热导率的材料来控制。这些梯度微管结构有助于细胞播种和传质,以促进细胞生长和功能。具有定向和相互连接的微管孔网络的纳米纤维支架也通过一步法TIPS方法开发,使用苯/四氢呋喃混合物作为溶剂,而无需使用致孔剂。可以通过改变溶剂比例,相分离温度和聚合物浓度以模拟细胞外基质的纳米纤维特征来方便地调节此类支架的结构特征。这些支架通过利用其有利的结构特征来促进血管再生而被制造用于小直径血管的组织工程。

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  • 来源
    《Advanced Functional Materials》 |2010年第17期|P.2833-2841|共9页
  • 作者

    Haiyun Ma; Jiang Hu; Peter X. Ma;

  • 作者单位

    Department of Biologic and Materials Sciences 1011 North University Ave., Room 2211 The University of Michigan Ann Arbor, MI 48109-1078 (USA);

    rnDepartment of Biologic and Materials Sciences 1011 North University Ave., Room 2211 The University of Michigan Ann Arbor, MI 48109-1078 (USA);

    rnDepartment of Biologic and Materials Sciences 1011 North University Ave., Room 2211 The University of Michigan Ann Arbor, MI 48109-1078 (USA) Department of Biomedical Engineering University of Michigan Ann Arbor, MI, 48109 (USA) Macromolecular Science and Engineering Center University of Michigan Ann Arbor, MI, 48109 (USA);

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