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通过种间嵌合体增强器官发育的人类、狨猴、小鼠和猪胚胎的阶段匹配。

Stage-Matching of Human, Marmoset, Mouse, and Pig Embryos to Enhance Organ Development Through Interspecies Chimerism.

机构信息

Molecular, Cellular, Developmental Biology, and Genetics Graduate Program, University of Minnesota, Minneapolis, MN, USA.

Bioinformatics and Computational Biology Graduate Program, University of Minnesota, Minneapolis, MN, USA.

出版信息

Cell Transplant. 2023 Jan-Dec;32:9636897231158728. doi: 10.1177/09636897231158728.

Abstract

Currently, there is a significant shortage of transplantable organs for patients in need. Interspecies chimerism and blastocyst complementation are alternatives for generating transplantable human organs in host animals such as pigs to meet this shortage. While successful interspecies chimerism and organ generation have been observed between evolutionarily close species such as rat and mouse, barriers still exist for more distant species pairs such as human-mouse, marmoset-mouse, human-pig, and others. One of the proposed barriers to chimerism is the difference in developmental stages between the donor cells and the host embryo at the time the cells are introduced into the host embryo. Hence, there is a logical effort to stage-match the donor cells with the host embryos for enhancing interspecies chimerism. In this study, we used an approach to simultaneously stage-match the early developing embryos of four species, including human, marmoset, mouse, and pig based on transcriptome similarities. We used an unsupervised clustering algorithm to simultaneously stage-match all four species as well as Spearman's correlation analyses to stage-match pairs of donor-host species. From our stage-matching analyses, we found that the four stages that best matched with each other are the human blastocyst (E6/E7), the gastrulating mouse embryo (E6-E6.75), the marmoset late inner cell mass, and the pig late blastocyst. We further demonstrated that human pluripotent stem cells best matched with the mouse post-implantation stages. We also performed ontology analysis of the genes upregulated and commonly expressed between donor-host species pairs at their best matched stages. The stage-matching results predicted by this study will inform and interspecies chimerism and blastocyst complementation studies and can be used to match donor cells with host embryos between multiple species pairs to enhance chimerism for organogenesis.

摘要

目前,需要器官移植的患者面临着器官严重短缺的问题。种间嵌合体和胚泡互补是在宿主动物(如猪)中产生可移植人类器官的替代方法,以满足这种短缺。虽然在进化上接近的物种(如大鼠和小鼠)之间已经观察到成功的种间嵌合体和器官生成,但在更远的物种对(如人-鼠、狨猴-鼠、人-猪等)之间仍然存在障碍。嵌合体形成的一个障碍是供体细胞和宿主胚胎在将细胞引入宿主胚胎时的发育阶段不同。因此,有逻辑的努力是使供体细胞与宿主胚胎在发育阶段上相匹配,以增强种间嵌合体形成。在这项研究中,我们使用了一种方法,根据转录组相似性,同时对包括人类、狨猴、小鼠和猪在内的四种早期胚胎进行发育阶段匹配。我们使用无监督聚类算法同时对所有四种物种进行发育阶段匹配,以及使用 Spearman 相关分析对供体-宿主物种对进行发育阶段匹配。从我们的发育阶段匹配分析中,我们发现彼此最佳匹配的四个阶段是人类囊胚(E6/E7)、囊胚期小鼠胚胎(E6-E6.75)、狨猴晚期内细胞团和猪晚期囊胚。我们进一步证明,人类多能干细胞与小鼠着床后阶段最佳匹配。我们还对在最佳匹配阶段供体-宿主物种对之间上调和共同表达的基因进行了本体论分析。本研究的发育阶段匹配结果将为种间嵌合体和胚泡互补研究提供信息,并可用于在多个物种对之间匹配供体细胞与宿主胚胎,以增强器官发生的嵌合体形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/377b/10026093/62f38d7ab9e2/10.1177_09636897231158728-fig1.jpg

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