Rapid derivation of cloning-competent cells from peripheral blood advances conservation biobanking.

IF 2.2 2区 生物学 Q2 EVOLUTIONARY BIOLOGY
Laura Knecht, Anthony Mastracci Iv, Riley Harbert, Fatima Charles, Laura L Kuperman-Yao, Tyler Miyawaki, Gregory L Gedman, Kathleen M Pirovich, Jason Herrick, Linda Lay, Alba Ledesma, Steve Metzler, Dennis Milutinovitch, James B Papizan, Parker Pennington, Lexie Russell, Kerry Ryan, Kanokwan Srirattana, Kaitlin Steiger, Darya A Tourzani, Kelcey Walker, Rafael V Sampaio, Sven Bocklandt, Ben Lamm, Matt James, Shawn Walker, Beth Shapiro, James Kehler
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引用次数: 0

Abstract

Establishing viable cell lines from endangered species is essential for conservation, yet traditional fibroblast derivation from skin biopsies faces challenges including contamination risk and extended culture timelines. Here, we demonstrate that endothelial progenitor cells (EPCs) and pericytes isolated from peripheral blood represent robust alternatives to fibroblasts for biobanking. Compared to canid fibroblasts, canid blood-derived cells exhibit 2- to 3-fold faster doubling rates (15 to 20 h vs. ~35 h for fibroblasts) and reduced time to banked cell lines (1.5 to 2 wks vs. 3 to 4 wks for fibroblasts). Proteomic profiling of 32 canonical markers confirmed EPCs and pericytes represent distinct populations with lineage-specific molecular signatures. Optical genome mapping demonstrated equivalent genomic stability across cell types with no detectable structural variants or aneuploidies. Finally, interspecific somatic cell nuclear transfer (iSCNT) experiments confirmed both EPCs and pericytes generate viable canid embryos with efficiency meeting or exceeding fibroblasts. As a proof of concept for conservation cloning, iSCNT embryos made with gray wolf blood-derived cells had a 15% implantation rate following embryo transfer and resulted in six viable fetuses. These findings support integrating blood-derived cell banking into conservation programs, which enables opportunistic genetic preservation during standard management activities and expands options for genetic rescue through assisted reproductive technologies.

外周血可克隆细胞的快速衍生——保护生物库的进展。
从濒危物种中建立有活力的细胞系对于保护至关重要,然而传统的皮肤活检成纤维细胞衍生面临着包括污染风险和延长培养时间在内的挑战。在这里,我们证明了从外周血中分离的内皮祖细胞(EPCs)和周细胞是生物银行中成纤维细胞的强大替代品。与犬类成纤维细胞相比,犬类血源性细胞的倍增率快2-3倍(成纤维细胞为15-20小时,成纤维细胞为~35小时),形成细胞系所需时间缩短(成纤维细胞为1.5-2周,成纤维细胞为3-4周)。32个典型标记的蛋白质组学分析证实EPCs和周细胞代表具有谱系特异性分子特征的不同群体。光学基因组图谱显示,不同细胞类型的基因组稳定性相当,没有可检测到的结构变异或非整倍体。最后,种间体细胞核移植(iSCNT)实验证实EPCs和周细胞都能产生活的犬科动物胚胎,其效率达到或超过成纤维细胞。作为保守克隆概念的证明,用灰狼血源性细胞制成的iSCNT胚胎在胚胎移植后的着床率为15%,并产生了6个可存活的胎儿。这些发现支持将血源性细胞库纳入保护计划,从而在标准管理活动中实现机会性基因保存,并通过辅助生殖技术扩大基因拯救的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Heredity
Journal of Heredity 生物-遗传学
CiteScore
5.20
自引率
6.50%
发文量
63
审稿时长
6-12 weeks
期刊介绍: Over the last 100 years, the Journal of Heredity has established and maintained a tradition of scholarly excellence in the publication of genetics research. Virtually every major figure in the field has contributed to the journal. Established in 1903, Journal of Heredity covers organismal genetics across a wide range of disciplines and taxa. Articles include such rapidly advancing fields as conservation genetics of endangered species, population structure and phylogeography, molecular evolution and speciation, molecular genetics of disease resistance in plants and animals, genetic biodiversity and relevant computer programs.
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