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定制工具用于研究鹿角生物学。

Custom-built tools for the study of deer antler biology.

机构信息

Institute of Special Wild Economic Animals and Plants, Chinese Academy of Agricultural Sciences, State Key Lab for Molecular Science of Special AnimalsChangchun, Beijing, China.

National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, China.

出版信息

Front Biosci (Landmark Ed). 2017 Jun 1;22(10):1622-1633. doi: 10.2741/4561.

Abstract

Deer antlers can be developed into multiple novel models to study growth and development of tissues for biomedical research. To facilitate this process, we have invented and further refined five custom-built tools through three decades of antler research. These are: 1. Pedicle growth detector to pinpoint the timing when pedicle growth is initiated, thus stimuli for pedicle and first antler formation can be investigated and identified. 2. Thin periosteum slice cutter to thinly slice (0.2mm or 0.7 mm thick) a whole piece of antlerogenic periosteum (AP) or pedicle periosteum (PP), which facilitates gene delivery into cells resident in these tissues, thus making transgenic antlers possible. 3. The porous periosteum multi-needle punch to effectively loosen the dense AP or PP tissue. This allows most cells of the periosteum to come into direct contact with treating solutions, thus making artificial manipulation of antler development possible. 4. The intra-dermal pocket maker to cut the thin dermal tissue (less than 2 mm in thickness) of a male deer calf horizontally into two layers to make an intra-dermal pocket. This allows loading of AP tissue intra-dermally to test the theory of "antler stem cell niche" . 5. The sterile periosteum sampling system to allow aseptic collection of the AP, PP or the antler growth centre tissue on farm, thus allowing antler generation, regeneration or rapid growth to be investigated . Overall, we believe the application of contemporary cellular and molecular biological techniques coupled with these custom-built tools would greatly promote the establishment of this unique and novel model for the benefits of biomedical research, and hence human health.

摘要

鹿茸可以被开发成多种新型模型,用于研究组织的生长和发育,以用于生物医学研究。为了促进这一过程,我们在三十年的鹿茸研究中发明并进一步完善了五种定制工具。它们是:1. 茸角生长探测器,用于精确定位茸角生长开始的时间,从而可以研究和鉴定刺激茸角和第一茸角形成的因素。2. 薄骨膜切片刀,用于将整块的鹿茸骨膜(AP)或茸角骨膜(PP)切成薄片(0.2mm 或 0.7mm 厚),便于将基因递送到这些组织中的细胞中,从而使转基因鹿茸成为可能。3. 多孔骨膜多针打孔器,有效地疏松致密的 AP 或 PP 组织。这使得骨膜的大多数细胞能够直接与处理溶液接触,从而使鹿茸发育的人工操作成为可能。4. 真皮口袋制造器,将雄性鹿犊的薄真皮组织(厚度小于 2 毫米)水平切成两层,形成真皮口袋。这允许将 AP 组织加载到真皮内,以测试“鹿茸干细胞龛”理论。5. 无菌骨膜取样系统,允许在农场无菌收集 AP、PP 或鹿茸生长中心组织,从而可以研究鹿茸的生成、再生或快速生长。总之,我们相信将现代细胞和分子生物学技术与这些定制工具相结合的应用,将极大地促进这一独特而新颖模型的建立,从而有益于生物医学研究,进而有益于人类健康。

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