How a mammalian fertilized egg acquires totipotency and develops into a full-term offspring is a fundamental scientific question.Human embryonic development is difficult to study due to limited resources,technical cha...How a mammalian fertilized egg acquires totipotency and develops into a full-term offspring is a fundamental scientific question.Human embryonic development is difficult to study due to limited resources,technical challenges and ethics.Moreover,the precise regulatory mechanism underlying early human embryonic development remains unknown.In recent years,the emergence of stem cell-based embryo models(SCBEM)provides the opportunity to reconstitute pre-to post-implantation development in vitro.These models to some extent mimic the embryo morphologically and transcriptionally,and thus may be used to study key events in mammalian pre-and post-implantation development.Many groups have successfully generated SCBEM of the mouse and human.Here,we provide a comparative review of the mouse and human SCBEM,discuss the capability of these models to mimic natural embryos and give a perspective on their potential future applications.展开更多
Studying human development remains difficult due to limited accessibility to human embryonic tissues.Prompted by the availability of human stem cells that share molecular and cellular similarities with embryonic and e...Studying human development remains difficult due to limited accessibility to human embryonic tissues.Prompted by the availability of human stem cells that share molecular and cellular similarities with embryonic and extraembryonic cells in peri-implantation human embryos,researchers have now successfully developed stem cellbased human embryo models that are promising as experimental tools for studying early human development.In this Perspective,we discuss the current progress in mouse and human stem cell-derived embryo models and highlight their promising applications in advancing the fundamental understanding of mammalian development.展开更多
To regenerate three-dimensional endometrium in vitro as a novel model for studying the mechanism of implantation of embryos, the luminal epithelial cells and stromal cells of the rabbit uterus were separated and cultu...To regenerate three-dimensional endometrium in vitro as a novel model for studying the mechanism of implantation of embryos, the luminal epithelial cells and stromal cells of the rabbit uterus were separated and cultured in vitro. The type Ⅰ mouse tail collagen was used as scaffolding material. The stromal cells were inoculated in the type I mouse tail collagen, and the luminal epithelial cells were inoculated on the type i mouse tall collagen to regenerate the endometrium in vitro. The regenerated endometrium was cultured in DMEM-F/12 media containing 100 nmol L^-1 progesterone, 10 nM β-estradiol, and 10% fetal bovine serum (FBS) for 3 d. The media were then replaced with CZB containing 100 nM progesterone, 10 nmol L-1 β-estradiol, and 10% FBS, and the mouse blastulas were co-cultured with it. The results of scanning electronic micrography showed that the epithelial cells on the surface of the reconstructed endometrium were covered with numerous slender microvilli and some epithelial cells protruded pinopodes. After culturing for 12 h with the mouse blastula, the shedding, attachment, and implantation of the blastula were observed. The blastula can escape from zona pellucida and attach to the three-dimensional endometrium and is then implanted into it. This study showed that the reconstructed three-dimensional endometrium can serve as a robust embryo implantation model in vitro.展开更多
This study was to find the regularity in the hereditary variation for the main culturing characters of the immature embryo culture in maize. Two kinds of inbred-line, R18-599 (red) with very excellent embryo culturi...This study was to find the regularity in the hereditary variation for the main culturing characters of the immature embryo culture in maize. Two kinds of inbred-line, R18-599 (red) with very excellent embryo culturing capacity and R15 with very poor embryo culturing capacity, were used as P1 and P2 for obtaining six generations. By culturing immature embryos of the six generations, four culturing characters, namely embryonic callus induction efficiency, nonembryonic callus induction efficiency, cloning ability of the embryonic callus, and number of regenerating plants, were analyzed using the general mean analysis and generation joint analysis. Results showed that the embryonic callus induction efficiency accorded with two major additive-dominance-epistatic genes and polygene-mixed additive-dominance-epistatic inheritance model. The induction efficiency of the nonembryonic callus accorded with two major additive-dominance-epistatic genes. The number of regenerating plants accorded with one major gene and polygene-mixed additive-dominance inheritance model. The cloning ability of the embryo callus accorded with two major genes and polygene-mixed inheritance model, whereas the effect of epistatic gene on this character was identified results of the two methods, generation joint analysis may genetic information. to be different using the two methods. By comparison of the not only raise experimental precision but also provide more展开更多
目的:比较决策树和Logistic回归模型对体外受精-胚胎移植(in vitro fertilization and embryo transfer,IVF-ET)患者妊娠结局的预测价值。方法:纳入2021年1月至2022年10月在长治医学院附属和平医院接受IVF-ET的患者350例为研究对象,根...目的:比较决策树和Logistic回归模型对体外受精-胚胎移植(in vitro fertilization and embryo transfer,IVF-ET)患者妊娠结局的预测价值。方法:纳入2021年1月至2022年10月在长治医学院附属和平医院接受IVF-ET的患者350例为研究对象,根据妊娠结局分为妊娠成功组(215例)和妊娠失败组(135例)。收集患者临床资料,建立IVF-ET患者妊娠结局Logistic回归和决策树预测模型,并在是否基于Logistic回归结果条件下建立决策树分析模型(决策树1和决策树2),采用受试者工作特征(receiver operating characteristic,ROC)曲线对模型预测效果进行评价。结果:350例患者中,妊娠成功患者占61.43%,妊娠失败者占38.57%。妊娠失败组年龄≥35岁、不孕年限≥5年、周期次数≥1次、有心理精神障碍的患者比例及HCG日血清孕酮水平均高于妊娠成功组,获卵数≥10枚、受精率≥75%的患者比例及HCG日子宫内膜厚度、优质胚胎数小于妊娠成功组(P<0.05)。多因素Logistic回归分析结果显示,年龄、HCG日血清孕酮水平、优质胚胎数及心理精神障碍均是IVF-ET患者妊娠结局的影响因素(P<0.05)。决策树模型显示,年龄、HCG日血清孕酮水平、优质胚胎数为IVF-ET患者妊娠结局的影响因素。Logistic回归模型曲线下面积(area under curve,AUC)为0.832,预测敏感度、特异度和准确度分别为87.3%、71.4%、83.5%;决策树1的AUC为0.859,预测敏感度、特异度和准确度分别为85.1%、76.8%、85.6%;决策树2的AUC为0.820,预测敏感度、特异度和准确度分别为83.7%、73.2%、82.4%。决策树1的AUC大于决策树2(P<0.05),但与Logistic回归模型的AUC比较差异无统计学意义(P>0.05)。结论:Logistic回归模型和决策树模型对于IVF-ET患者妊娠结局均有一定的预测价值。展开更多
基金supported by the National Science and Technology Major Project(2023ZD0405001)the National Natural Science Foundation of China(32460837 and 32060176)+3 种基金the Program for Young Talents of Science and Technology in Universities of Inner Mongolia Autonomous Region(NJYT23091)the National Key Research and Development Program of China(2022YFD1302202)the Program of“JIE BANG GUA SHUAI”of Inner Mongolia(2022JBGS0021)the Program of Higher-Level Talents of Inner Mongolia University(10000-21311201/058)。
文摘How a mammalian fertilized egg acquires totipotency and develops into a full-term offspring is a fundamental scientific question.Human embryonic development is difficult to study due to limited resources,technical challenges and ethics.Moreover,the precise regulatory mechanism underlying early human embryonic development remains unknown.In recent years,the emergence of stem cell-based embryo models(SCBEM)provides the opportunity to reconstitute pre-to post-implantation development in vitro.These models to some extent mimic the embryo morphologically and transcriptionally,and thus may be used to study key events in mammalian pre-and post-implantation development.Many groups have successfully generated SCBEM of the mouse and human.Here,we provide a comparative review of the mouse and human SCBEM,discuss the capability of these models to mimic natural embryos and give a perspective on their potential future applications.
基金supported by the International Medical Research Foundation,Chugai Foundation for Innovative Drug Discovery Science:C-FINDs,the Uehara Memorial Foundation,the Mother and Child Health Foundation,and the Cell Science Research Foundation(to N.K.).
文摘Studying human development remains difficult due to limited accessibility to human embryonic tissues.Prompted by the availability of human stem cells that share molecular and cellular similarities with embryonic and extraembryonic cells in peri-implantation human embryos,researchers have now successfully developed stem cellbased human embryo models that are promising as experimental tools for studying early human development.In this Perspective,we discuss the current progress in mouse and human stem cell-derived embryo models and highlight their promising applications in advancing the fundamental understanding of mammalian development.
文摘To regenerate three-dimensional endometrium in vitro as a novel model for studying the mechanism of implantation of embryos, the luminal epithelial cells and stromal cells of the rabbit uterus were separated and cultured in vitro. The type Ⅰ mouse tail collagen was used as scaffolding material. The stromal cells were inoculated in the type I mouse tail collagen, and the luminal epithelial cells were inoculated on the type i mouse tall collagen to regenerate the endometrium in vitro. The regenerated endometrium was cultured in DMEM-F/12 media containing 100 nmol L^-1 progesterone, 10 nM β-estradiol, and 10% fetal bovine serum (FBS) for 3 d. The media were then replaced with CZB containing 100 nM progesterone, 10 nmol L-1 β-estradiol, and 10% FBS, and the mouse blastulas were co-cultured with it. The results of scanning electronic micrography showed that the epithelial cells on the surface of the reconstructed endometrium were covered with numerous slender microvilli and some epithelial cells protruded pinopodes. After culturing for 12 h with the mouse blastula, the shedding, attachment, and implantation of the blastula were observed. The blastula can escape from zona pellucida and attach to the three-dimensional endometrium and is then implanted into it. This study showed that the reconstructed three-dimensional endometrium can serve as a robust embryo implantation model in vitro.
文摘This study was to find the regularity in the hereditary variation for the main culturing characters of the immature embryo culture in maize. Two kinds of inbred-line, R18-599 (red) with very excellent embryo culturing capacity and R15 with very poor embryo culturing capacity, were used as P1 and P2 for obtaining six generations. By culturing immature embryos of the six generations, four culturing characters, namely embryonic callus induction efficiency, nonembryonic callus induction efficiency, cloning ability of the embryonic callus, and number of regenerating plants, were analyzed using the general mean analysis and generation joint analysis. Results showed that the embryonic callus induction efficiency accorded with two major additive-dominance-epistatic genes and polygene-mixed additive-dominance-epistatic inheritance model. The induction efficiency of the nonembryonic callus accorded with two major additive-dominance-epistatic genes. The number of regenerating plants accorded with one major gene and polygene-mixed additive-dominance inheritance model. The cloning ability of the embryo callus accorded with two major genes and polygene-mixed inheritance model, whereas the effect of epistatic gene on this character was identified results of the two methods, generation joint analysis may genetic information. to be different using the two methods. By comparison of the not only raise experimental precision but also provide more
文摘目的:比较决策树和Logistic回归模型对体外受精-胚胎移植(in vitro fertilization and embryo transfer,IVF-ET)患者妊娠结局的预测价值。方法:纳入2021年1月至2022年10月在长治医学院附属和平医院接受IVF-ET的患者350例为研究对象,根据妊娠结局分为妊娠成功组(215例)和妊娠失败组(135例)。收集患者临床资料,建立IVF-ET患者妊娠结局Logistic回归和决策树预测模型,并在是否基于Logistic回归结果条件下建立决策树分析模型(决策树1和决策树2),采用受试者工作特征(receiver operating characteristic,ROC)曲线对模型预测效果进行评价。结果:350例患者中,妊娠成功患者占61.43%,妊娠失败者占38.57%。妊娠失败组年龄≥35岁、不孕年限≥5年、周期次数≥1次、有心理精神障碍的患者比例及HCG日血清孕酮水平均高于妊娠成功组,获卵数≥10枚、受精率≥75%的患者比例及HCG日子宫内膜厚度、优质胚胎数小于妊娠成功组(P<0.05)。多因素Logistic回归分析结果显示,年龄、HCG日血清孕酮水平、优质胚胎数及心理精神障碍均是IVF-ET患者妊娠结局的影响因素(P<0.05)。决策树模型显示,年龄、HCG日血清孕酮水平、优质胚胎数为IVF-ET患者妊娠结局的影响因素。Logistic回归模型曲线下面积(area under curve,AUC)为0.832,预测敏感度、特异度和准确度分别为87.3%、71.4%、83.5%;决策树1的AUC为0.859,预测敏感度、特异度和准确度分别为85.1%、76.8%、85.6%;决策树2的AUC为0.820,预测敏感度、特异度和准确度分别为83.7%、73.2%、82.4%。决策树1的AUC大于决策树2(P<0.05),但与Logistic回归模型的AUC比较差异无统计学意义(P>0.05)。结论:Logistic回归模型和决策树模型对于IVF-ET患者妊娠结局均有一定的预测价值。