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本文引用的文献

1
Properties of Nanostructured Hydroxyapatite Prepared by a Spray Drying Technique.喷雾干燥技术制备的纳米结构羟基磷灰石的性能
J Res Natl Inst Stand Technol. 2004 Dec 1;109(6):543-51. doi: 10.6028/jres.109.041. Print 2004 Nov-Dec.
2
Augmented repair of acute tendo Achilles ruptures with gastrosoleus turn down flap.应用腓肠肌翻转皮瓣加强修复急性跟腱断裂
Indian J Orthop. 2011 Jan;45(1):45-52. doi: 10.4103/0019-5413.73654.
3
Combinatorial screening of osteoblast response to 3D calcium phosphate/poly(ε-caprolactone) scaffolds using gradients and arrays.采用梯度和阵列组合筛选法研究骨细胞对 3D 磷酸钙/聚(ε-己内酯)支架的反应。
Biomaterials. 2011 Feb;32(5):1361-9. doi: 10.1016/j.biomaterials.2010.10.043. Epub 2010 Nov 12.
4
Anatomically shaped tooth and periodontal regeneration by cell homing.通过细胞归巢实现解剖形态牙和牙周组织再生。
J Dent Res. 2010 Aug;89(8):842-7. doi: 10.1177/0022034510370803. Epub 2010 May 6.
5
Incorporating protein gradient into electrospun nanofibers as scaffolds for tissue engineering.将蛋白质梯度纳入静电纺丝纳米纤维中作为组织工程支架。
ACS Appl Mater Interfaces. 2010 Apr;2(4):1025-30. doi: 10.1021/am9007962.
6
The effect of 3D hydrogel scaffold modulus on osteoblast differentiation and mineralization revealed by combinatorial screening.组合筛选揭示 3D 水凝胶支架模量对成骨细胞分化和矿化的影响。
Biomaterials. 2010 Jul;31(19):5051-62. doi: 10.1016/j.biomaterials.2010.03.024. Epub 2010 Apr 7.
7
Calcium phosphate coated electrospun fiber matrices as scaffolds for bone tissue engineering.钙磷酸盐涂覆的静电纺丝纤维基质作为骨组织工程支架。
Langmuir. 2010 May 18;26(10):7380-7. doi: 10.1021/la904406b.
8
Nanofiber scaffolds with gradations in mineral content for mimicking the tendon-to-bone insertion site.具有矿物质含量梯度的纳米纤维支架,用于模拟肌腱与骨的插入部位。
Nano Lett. 2009 Jul;9(7):2763-8. doi: 10.1021/nl901582f.
9
Magnetically induced protein gradients on electrospun nanofibers.静电纺纳米纤维上的磁诱导蛋白质梯度
Comb Chem High Throughput Screen. 2009 Aug;12(7):656-63. doi: 10.2174/138620709788923683. Epub 2009 Aug 1.
10
Ligament reconstruction with tendon interposition using an acellular dermal allograft for thumb carpometacarpal arthritis.使用脱细胞真皮同种异体移植物进行肌腱置入的韧带重建术治疗拇指腕掌关节关节炎。
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纳米纤维支架梯度用于界面组织工程。

Nanofiber scaffold gradients for interfacial tissue engineering.

机构信息

Polymers Division, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.

出版信息

J Biomater Appl. 2013 Feb;27(6):695-705. doi: 10.1177/0885328211423783. Epub 2012 Jan 27.

DOI:10.1177/0885328211423783
PMID:22286209
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3508378/
Abstract

We have designed a 2-spinnerette device that can directly electrospin nanofiber scaffolds containing a gradient in composition that can be used to engineer interfacial tissues such as ligament and tendon. Two types of nanofibers are simultaneously electrospun in an overlapping pattern to create a nonwoven mat of nanofibers containing a composition gradient. The approach is an advance over previous methods due to its versatility - gradients can be formed from any materials that can be electrospun. A dye was used to characterize the 2-spinnerette approach and applicability to tissue engineering was demonstrated by fabricating nanofibers with gradients in amorphous calcium phosphate nanoparticles (nACP). Adhesion and proliferation of osteogenic cells (MC3T3-E1 murine pre-osteoblasts) on gradients was enhanced on the regions of the gradients that contained higher nACP content yielding a graded osteoblast response. Since increases in soluble calcium and phosphate ions stimulate osteoblast function, we measured their release and observed significant release from nanofibers containing nACP. The nanofiber-nACP gradients fabricated herein can be applied to generate tissues with osteoblast gradients such as ligaments or tendons. In conclusion, these results introduce a versatile approach for fabricating nanofiber gradients that can have application for engineering graded tissues.

摘要

我们设计了一种双喷丝头装置,可直接电纺出含有成分梯度的纳米纤维支架,用于构建韧带和肌腱等界面组织。两种类型的纳米纤维以重叠图案同时电纺,形成含有成分梯度的无纺纳米纤维垫。与以前的方法相比,该方法具有通用性,可用于形成任何可电纺材料的梯度,是一种进步。染料用于表征双喷丝头方法,通过在无定形磷酸钙纳米颗粒 (nACP) 梯度上制造纳米纤维,证明了其在组织工程中的适用性。在含有较高 nACP 含量的梯度区域,成骨细胞(MC3T3-E1 鼠前成骨细胞)的黏附和增殖增强,从而产生成骨细胞的梯度响应。由于可溶性钙和磷酸盐离子的增加会刺激成骨细胞的功能,我们测量了它们的释放,并观察到含有 nACP 的纳米纤维中有显著的释放。本文中制造的纳米纤维-nACP 梯度可用于生成具有成骨细胞梯度的组织,如韧带或肌腱。总之,这些结果介绍了一种通用的制造纳米纤维梯度的方法,可用于工程分级组织。