Smithsonian's National Zoo and Conservation Biology Institute, Washington, D.C., USA.
Fischell Department of Bioengineering, University of Maryland, College Park, MD, USA.
J Assist Reprod Genet. 2023 Aug;40(8):1817-1828. doi: 10.1007/s10815-023-02831-x. Epub 2023 Jun 1.
Trehalose is a non-permeable protectant that is the key to preserve live cells in a dry state for potential storage at ambient temperatures. After intracellular trehalose delivery via cold-responsive nanoparticles (CRNPs), the objective was to characterize the tolerance of cat cumulus-oocyte complexes (COCs) to different levels of microwave-assisted dehydration.
Trehalose was first encapsulated in CRNPs. After exposure to trehalose-laden CRNPs, different water amounts were removed from cat COCs by microwave drying. After each dehydration level, meiotic and developmental competences were evaluated via in vitro maturation, fertilization, and embryo culture. In addition, expressions of critical genes were assessed by quantitative RT-PCR.
CRNPs effectively transported trehalose into COCs within 4 h of co-incubation at 38.5 °C followed by a cold-triggered release at 4 °C for 15 min. Intracellular presence of trehalose enabled the maintenance of developmental competence (formation of blastocysts) as well as normal gene expression levels of HSP70 and DNMT1 at dehydration levels reaching up to 63% of water loss.
Intracellular trehalose delivery through CRNPs improves dehydration tolerance of COCs, which opens new options for oocyte storage and fertility preservation at ambient temperatures.
海藻糖是一种不可渗透的保护剂,是将活细胞在干燥状态下保存以在环境温度下进行潜在储存的关键。通过冷响应纳米颗粒(CRNP)将细胞内海藻糖递送至细胞内后,目标是研究猫卵丘-卵母细胞复合物(COC)对不同水平微波辅助脱水的耐受能力。
首先将海藻糖包封在 CRNP 中。在暴露于负载海藻糖的 CRNP 后,通过微波干燥从猫 COC 中去除不同量的水。在每个脱水水平后,通过体外成熟、受精和胚胎培养来评估减数分裂和发育能力。此外,通过定量 RT-PCR 评估关键基因的表达。
CRNP 在 38.5°C 共孵育 4 小时内有效将海藻糖运送到 COC 内,随后在 4°C 下冷触发释放 15 分钟。细胞内存在海藻糖能够维持发育能力(形成囊胚)以及 HSP70 和 DNMT1 基因的正常表达水平,在脱水水平达到 63%的水分损失时仍能保持正常。
通过 CRNP 进行细胞内海藻糖传递可提高 COC 的脱水耐受能力,为在环境温度下进行卵母细胞储存和生育力保存开辟了新的选择。