Manipal Institute of Regenerative Medicine (MIRM), Manipal Academy of Higher Education, Bangalore, India; P.D.Patel Institute of Applied Sciences, Charusat University, Changa, Gujarat, India.
Manipal Institute of Regenerative Medicine (MIRM), Manipal Academy of Higher Education, Bangalore, India.
Life Sci. 2021 Jan 1;264:118701. doi: 10.1016/j.lfs.2020.118701. Epub 2020 Oct 30.
Deriving canine-induced pluripotent stem cells (ciPSCs) have paved the way for developing novel cell-based disease models and transplantation therapies in the dog. Though ciPSCs have been derived in the presence of Leukemia inhibitory factor (LIF) as well in the presence of basic fibroblast growth factor (bFGF), the positioning of ciPSCs in the naïve or the primed state of pluripotency remains elusive. This study aims to understand whether canine iPSCs belong to naïve or prime state in comparison to mouse (m) iPSCs and human (h) iPSCs.
In the present study, we derived ciPSCs in presence of LIF and compared their state of pluripotency with that of miPSCs and hiPSCs by culturing them in the presence of LIF, bFGF, and LIF + bFGF. Gene expression level at transcript level was performed by RT-PCR and qRT-PCR and at the protein level was analysed by immunofluorescence. We also attempted to understand the pluripotency state using lipid body analysis by bodipy staining and blue fluorescence emission.
In contrast to miPSCs, the naïve pluripotent stem cells, ciPSCs showed the expression of FGF5 similar to that of primed pluripotent stem cell, hiPSCs. Compared to miPSCs, ciPSCs cultured in presence of LIF showed enhanced expression of primed pluripotent marker FGF5, similar to hiPSCs cultured in presence of bFGF. Upon culturing in hiPSC culture condition, ciPSCs showed enhanced expression of core pluripotency genes compared to miPSCs cultured in similar condition. However, ciPSCs expressed naïve pluripotent marker SSEA1 similar to miPSCs and lacked the expression of primed state marker SSEA4 unlike hiPSCs. Interestingly, for the first time, we demonstrate the ciPSC pluripotency using lipid body analysis wherein ciPSCs showed enhanced bodipy staining and blue fluorescence emission, reflecting the primed state of pluripotency. ciPSCs expressed higher levels of fatty acid synthase (FASN), the enzyme involved in the synthesis of palmitate, similar to that of hiPSCs and higher than that of miPSCs. As ciPSCs exhibit characteristic properties of both naïve and primed pluripotent state, it probably represents a unique intermediary state of pluripotency that is distinct from that of mice and human pluripotent stem cells.
Elucidating the pluripotent state of ciPSCs assists in better understanding of the reprogramming events and development in different species. The study would provide a footprint of species-specific differences involved in reprogramming and the potential implication of iPSCs as a tool to analyse evolution.
犬诱导多能干细胞(ciPSC)的产生为开发新型基于细胞的疾病模型和犬移植治疗铺平了道路。虽然 ciPSC 可以在白血病抑制因子(LIF)的存在下以及碱性成纤维细胞生长因子(bFGF)的存在下产生,但 ciPSC 处于原始或多能性的初始状态仍不清楚。本研究旨在比较犬 iPSC 与鼠(m)iPSC 和人(h)iPSC 相比,是否属于原始或初始状态。
在本研究中,我们在 LIF 的存在下产生了 ciPSC,并通过在 LIF、bFGF 和 LIF+bFGF 的存在下培养它们,来比较它们的多能性状态与 miPSC 和 hiPSC 的多能性状态。通过 RT-PCR 和 qRT-PCR 进行转录水平的基因表达水平分析,并通过免疫荧光进行蛋白质水平分析。我们还尝试通过 bodipy 染色和蓝色荧光发射的脂质体分析来了解多能性状态。
与 miPSC 不同,原始多能干细胞 ciPSC 表现出与初始多能干细胞 hiPSC 相似的 FGF5 表达。与 miPSC 相比,在 LIF 存在下培养的 ciPSC 表现出增强的初始多能标记物 FGF5 的表达,类似于在 bFGF 存在下培养的 hiPSC。在 hiPSC 培养条件下,与在类似条件下培养的 miPSC 相比,ciPSC 表现出核心多能基因的表达增强。然而,ciPSC 表达原始多能标记物 SSEA1 类似于 miPSC,并且缺乏初始状态标记物 SSEA4 的表达,与 hiPSC 不同。有趣的是,我们首次使用脂质体分析证明了 ciPSC 的多能性,其中 ciPSC 表现出增强的 bodipy 染色和蓝色荧光发射,反映了初始多能状态。ciPSC 表达高水平的脂肪酸合酶(FASN),该酶参与棕榈酸的合成,类似于 hiPSC 并高于 miPSC。由于 ciPSC 表现出原始和初始多能状态的特征,因此它可能代表一种独特的中间多能状态,与鼠和人多能干细胞不同。
阐明 ciPSC 的多能状态有助于更好地理解不同物种中的重编程事件和发育。该研究将为在不同物种中分析重编程和 iPSC 作为工具的进化潜力提供一个特征。