Tissue Biology Research Unit, Department of Pediatric Surgery, University Children's Hospital Zurich, 8032, Zurich, Switzerland; Children's Research Center, University Children's Hospital Zurich, 8032, Zurich, Switzerland.
microphotonX GmbH, 82327, Tutzing, Germany.
Exp Cell Res. 2024 Jun 1;439(1):114048. doi: 10.1016/j.yexcr.2024.114048. Epub 2024 May 1.
Prenatal surgery for the treatment of spina bifida (myelomeningocele, MMC) significantly enhances the neurological prognosis of the patient. To ensure better protection of the spinal cord by large defects, the application of skin grafts produced with cells gained from the amniotic fluid is presently studied. In order to determine the most appropriate cells for this purpose, we tried to shed light on the extremely complex amniotic fluid cellular composition in healthy and MMC pregnancies. We exploited the potential of micro-Raman spectroscopy to analyse and characterize human amniotic fluid cells in total and putative (cKit/CD117-positive) stem cells of fetuses with MMC in comparison with amniotic fluid cells from healthy individuals, human fetal dermal fibroblasts and adult adipose derived stem cells. We found that (i) the differences between healthy and MMC amniocytes can be attributed to specific spectral regions involving collagen, lipids, sugars, tryptophan, aspartate, glutamate, and carotenoids, (ii) MMC amniotic fluid contains two particular cell populations which are absent or reduced in normal pregnancies, (iii) the cKit-negative healthy amniocyte subpopulation shares molecular features with human fetal fibroblasts. On the one hand we demonstrate a different amniotic fluid cellular composition in healthy and MMC pregnancies, on the other our work confirms micro-Raman spectroscopy to be a valuable tool for discriminating cell populations in unknown mixtures of cells.
产前手术治疗脊柱裂(脊髓脊膜膨出,MMC)显著改善了患者的神经预后。为了确保通过大缺陷更好地保护脊髓,目前正在研究应用从羊水获得的细胞制成的皮肤移植物。为了确定最适合的细胞,我们试图阐明健康和 MMC 妊娠羊水中极其复杂的细胞组成。我们利用微拉曼光谱的潜力来分析和表征总羊水细胞和来自 MMC 胎儿的假定(cKit/CD117 阳性)干细胞,并将其与来自健康个体、人胎儿真皮成纤维细胞和成人脂肪来源的干细胞的羊水细胞进行比较。我们发现:(i)健康和 MMC 羊膜细胞之间的差异可归因于涉及胶原蛋白、脂质、糖、色氨酸、天冬氨酸、谷氨酸和类胡萝卜素的特定光谱区域,(ii)MMC 羊水含有两种在正常妊娠中不存在或减少的特殊细胞群,(iii)cKit 阴性健康羊膜细胞亚群与人类胎儿成纤维细胞具有相似的分子特征。一方面,我们证明了健康和 MMC 妊娠羊水中的细胞组成不同,另一方面,我们的工作证实微拉曼光谱是区分未知细胞混合物中细胞群体的有效工具。