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The development of laminin-alginate microspheres encapsulated with Ginsenoside Rg1 and ADSCs for breast reconstruction after lumpectomy

机译:用人参皂苷RG1包封的薄膜藻酸盐微球和乳房重建乳腺重建的开发

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摘要

Many technologies have been developed for breast reconstruction after lumpectomy. Although the technologies achieved promising success in clinical, there are still many shortages hanging over and trouble the researchers. Tissue engineering technology was introduced to plastic surgery that gave a light to lumpectomy patients in breast reconstruction. The unexpected absorption rate, resulting from limited vascularization and low cell survival rate, is a major factor that leads to unsatisfactory results for the previous studies in our lab. In the study, the laminin-modified alginate synthesized by a new method of low concertation of sodium periodate would be mixed with ADSCs and Rg1 in the medium; and then sprayed into a calcium chloride (CaCl2) solution to prepare into microsphere (abbreviated as ADSC–G-LAMS) by bio-electrospray with a power syringe for the mass production and smaller bead size. The developed ADSC–G-LAMS microspheres had the diameter of 232 ± 42 μm. Sustained-release of the Rg1 retained its biological activity. WST-1, live/dead staining, and chromosome aberration assay were evaluated to confirm the safety of the microspheres. In in vivo study, ADSC–G-LAMS microspheres combined with autologous adipocytes were transplanted into the dorsum of rats by subcutaneous injection. The efficacy was investigated by H&E and immunofluorescence staining. The results showed that the bioactive ADSC–G-LAMS microspheres could integrate well into the host adipose tissue with an adequate rate of angiogenesis by constantly releasing Rg1 to enhance the ADSC or adipocyte survival rate to join tissue growth and repair with adipogenesis for breast reconstruction after lumpectomy.
机译:在肿块切除术后,已经为乳腺重建开发了许多技术。虽然技术在临床上取得了很大的成功,但仍有许多短缺悬挂并困扰着研究人员。将组织工程技术引入整形手术,给予乳房重建乳腺切除术患者。由于血管化和低细胞存活率所产生的意外吸收率是导致我们实验室前一项研究的效果不令人满意的主要因素。在该研究中,通过新的钠术术方法合成的层蛋白改性的藻酸盐将与培养基中的ADSC和RG1混合;然后喷洒到氯化钙(CaCl 2)溶液中,通过Bio-Electrospray用电力注射器制备微球(缩写为AdSC-G-LAM),用于批量生产和较小的珠粒尺寸。开发的ADSC-G-LAMS微球的直径为232±42μm。 RG1的持续释放保留其生物活性。评估WST-1,Live / Dead染色和染色体畸变测定以确认微球的安全性。在体内研究中,ADSC-G-LAMS微球与自体脂肪细胞联合通过皮下注射移植到大鼠背体中。通过H&E和免疫荧光染色研究了疗效。结果表明,生物活性AdSC-G-LAMS微球可以通过不断释放RG1将血管生成率与血管生成速率相容,以增强ADSC或脂肪细胞存活率,以加入组织生长和修复脂肪重建的脂肪发生肿块切除术。

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