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家蚕中生物活性人神经营养因子3的生物合成及其生物医学应用。

Biosynthesis of Bioactive Human Neurotrophic Factor 3 in Silkworms and Its Biomedical Applications.

作者信息

Geng Wenjing, Lu Liang, Li Tangmin, Zhou Mingyi, Chen Wei, Tan Hao, Zhong Debin, Shen Guanwang, Lin Ping, Xia Qingyou, Zhao Ping, Li Zhiqing

机构信息

Integrative Science Center of Germplasm Creation in Western China (CHONGQING) Science City & Southwest University, Biological Science Research Center, Southwest University, Chongqing 400715, China.

Key Laboratory for Germplasm Creation in Upper Reaches of the Yangtze River, Ministry of Agriculture and Rural Affairs, Chongqing 400715, China.

出版信息

Insects. 2025 Jun 27;16(7):676. doi: 10.3390/insects16070676.

Abstract

Neurotrophic factor 3 (NT-3), a potent neurotrophin, promotes neuronal survival and axonal regeneration while demonstrating a unique capacity to induce lineage-specific differentiation of pluripotent stem cells into functional neurons, underscoring its therapeutic potential in neural repair. Despite these advantages, the large-scale production of recombinant human NT-3 with preserved structure integrity and functional bioactivity remains a critical challenge. This study takes advantage of the silk gland bioreactor of silkworms for the recombinant expression of human NT-3 protein on a large scale. Our findings reveal that NT-3 was successfully expressed in the middle silk gland of silkworms and secreted into the silk fibers, achieving a yield of up to 0.5 mg of bioactive NT-3 per gram of cocoon weight. The engineered NT-3-functionalized silk material demonstrates no cytotoxicity and significantly enhanced the proliferation, migration, and differentiation of neural cells compared to natural silk protein. Importantly, this functionalized material also promotes neurite outgrowth in HT-22 cells. These results collectively underscore the high bioactivity of the recombinant human NT-3 protein produced in the silkworm silk gland. The ongoing fabrication of NT-3-incorporated silk-based materials holds considerable promise for advancing tissue engineering and nerve regeneration applications.

摘要

神经营养因子3(NT-3)是一种强效神经营养蛋白,可促进神经元存活和轴突再生,同时展现出独特的能力,能诱导多能干细胞向功能性神经元进行谱系特异性分化,这突出了其在神经修复中的治疗潜力。尽管有这些优势,但大规模生产具有保留结构完整性和功能生物活性的重组人NT-3仍然是一项严峻挑战。本研究利用家蚕的丝腺生物反应器大规模重组表达人NT-3蛋白。我们的研究结果表明,NT-3在蚕的中部丝腺中成功表达并分泌到丝纤维中,每克茧重可获得高达0.5毫克的生物活性NT-3。与天然丝蛋白相比,工程化的NT-3功能化丝材料无细胞毒性,并显著增强了神经细胞的增殖、迁移和分化。重要的是,这种功能化材料还促进了HT-22细胞中的神经突生长。这些结果共同强调了在蚕丝腺中产生的重组人NT-3蛋白具有高生物活性。正在制造的含NT-3的丝基材料在推进组织工程和神经再生应用方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62a5/12295520/5474ae36a263/insects-16-00676-g001.jpg

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