利用矿化 PCL 薄膜在骨膜下输送转化生长因子 beta 1 和人体生长激素。

IF 3.9 3区 医学 Q2 ENGINEERING, BIOMEDICAL Journal of biomedical materials research. Part A Pub Date : 2024-03-26 DOI:10.1002/jbm.a.37684
Matthew B. Parlato, Jae Sung Lee, David G. Belair, Gianluca Fontana, Ellen Leiferman, Rewais Hanna, Connie Chamberlain, Erik A. Ranheim, William L. Murphy, Matthew A. Halanski
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引用次数: 0

摘要

向骨骼的不同区域局部输送生物活性分子的能力可为改善骨折愈合、治疗肿瘤或感染或调节生长提供一种新方法。在这项研究中,我们构建了能够结合和释放转化生长因子β1(TGF-β1)和人类生长激素(hGH)的单面矿物涂层聚-ε-己内酯膜。这些生物可吸收薄膜在体外证明了其生物活性,并对其释放特性进行了分析,然后通过手术将其植入未成熟的兔子模型中。薄膜被环绕包裹在骨膜下,从而与近端骨骺直接接触,以评估其在体内的生物活性。通过射线照相术和组织学评估了膜对干骺端骨、骨髓和上覆骨膜的直接影响。通过趾骨高度、胫骨生长速度(脉冲荧光标记)和胫骨长度来评估膜放置在胫骨生长板的影响。在骨膜下放置矿化膜比在普通矿物质和TGF-β1样本中放置hGH诱导了更多的局部软骨生成。经 TGF-β1 处理的胫骨中出现了更多的周缘骨化。TGF-β1膜还能诱导骨髓细胞减少,并具有其他组所没有的凝胶状变性特征。虽然经 hGH 处理的胫骨近端生长板要比经 TGF-β1 处理的高,但在生长速度或胫骨总长度方面未发现差异。总之,这些数据证明了使用生物可吸收矿物涂层膜在骨膜下持续输送生物活性化合物以影响插入部位、骨髓甚至生长板细胞的可行性。
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Subperiosteal delivery of transforming growth factor beta 1 and human growth hormone from mineralized PCL films

The ability to locally deliver bioactive molecules to distinct regions of the skeleton may provide a novel means by which to improve fracture healing, treat neoplasms or infections, or modulate growth. In this study, we constructed single-sided mineral-coated poly-ε-caprolactone membranes capable of binding and releasing transforming growth factor beta 1 (TGF-β1) and human growth hormone (hGH). After demonstrating biological activity in vitro and characterization of their release, these thin bioabsorbable membranes were surgically implanted using an immature rabbit model. Membranes were circumferentially wrapped under the periosteum, thus placed in direct contact with the proximal metaphysis to assess its bioactivity in vivo. The direct effects on the metaphyseal bone, bone marrow, and overlying periosteum were assessed using radiography and histology. Effects of membrane placement at the tibial growth plate were assessed via physeal heights, tibial growth rates (pulsed fluorochrome labeling), and tibial lengths. Subperiosteal placement of the mineralized membranes induced greater local chondrogenesis in the plain mineral and TGF-β1 samples than the hGH. More exuberant and circumferential ossification was seen in the TGF-β1 treated tibiae. The TGF-β1 membranes also induced hypocellularity of the bone marrow with characteristics of gelatinous degeneration not seen in the other groups. While the proximal tibial growth plates were taller in the hGH treated than TGF-β1, no differences in growth rates or overall tibial lengths were found. In conclusion, these data demonstrate the feasibility of using bioabsorbable mineral coated membranes to deliver biologically active compounds subperiosteally in a sustained fashion to affect cells at the insertion site, bone marrow, and even growth plate.

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来源期刊
Journal of biomedical materials research. Part A
Journal of biomedical materials research. Part A 工程技术-材料科学:生物材料
CiteScore
10.40
自引率
2.00%
发文量
135
审稿时长
3.6 months
期刊介绍: The Journal of Biomedical Materials Research Part A is an international, interdisciplinary, English-language publication of original contributions concerning studies of the preparation, performance, and evaluation of biomaterials; the chemical, physical, toxicological, and mechanical behavior of materials in physiological environments; and the response of blood and tissues to biomaterials. The Journal publishes peer-reviewed articles on all relevant biomaterial topics including the science and technology of alloys,polymers, ceramics, and reprocessed animal and human tissues in surgery,dentistry, artificial organs, and other medical devices. The Journal also publishes articles in interdisciplinary areas such as tissue engineering and controlled release technology where biomaterials play a significant role in the performance of the medical device. The Journal of Biomedical Materials Research is the official journal of the Society for Biomaterials (USA), the Japanese Society for Biomaterials, the Australasian Society for Biomaterials, and the Korean Society for Biomaterials. Articles are welcomed from all scientists. Membership in the Society for Biomaterials is not a prerequisite for submission.
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