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淋巴组织切片中氧消耗速率的空间分辨定量。

Spatially resolved quantification of oxygen consumption rate in lymph node slices.

机构信息

Department of Chemistry, University of Virginia College of Arts and, Sciences, Charlottesville, Virginia 22904, USA.

Department of Pathology, University of Virginia, Charlottesville, Virginia 22903, USA.

出版信息

Analyst. 2024 Apr 29;149(9):2609-2620. doi: 10.1039/d4an00028e.

Abstract

Cellular metabolism has been closely linked to activation state in cells of the immune system, and the oxygen consumption rate (OCR) in particular serves as a valuable metric for assessing metabolic activity. Several oxygen sensing assays have been reported for cells in standard culture conditions. However, none have provided a spatially resolved, optical measurement of local oxygen consumption in intact tissue samples, making it challenging to understand regional dynamics of consumption. Therefore, here we established a system to monitor the rates of oxygen consumption in tissue slices, using murine lymphoid tissue as a case study. By integrating an optical oxygen sensor into a sealed perfusion chamber and incorporating appropriate correction for photobleaching of the sensor and of tissue autofluorescence, we were able to visualize and quantify rates of oxygen consumption in tissue. This method revealed for the first time that the rate of oxygen consumption in naïve lymphoid tissue was higher in the T cell region compared to the B cell and cortical regions. To validate the method, we measured OCR in the T cell regions of naïve lymph node slices using the optical assay and estimated the consumption rate per cell. The predictions from the optical assay were similar to reported values and were not significantly different from those of the Seahorse metabolic assay, a gold standard method for measuring OCR in cell suspensions. Finally, we used this method to quantify the rate of onset of tissue hypoxia for lymph node slices cultured in a sealed chamber and showed that continuous perfusion was sufficient to maintain oxygenation. In summary, this work establishes a method to monitor oxygen consumption with regional resolution in intact tissue explants, suitable for future use to compare tissue culture conditions and responses to stimulation.

摘要

细胞代谢与免疫系统细胞的激活状态密切相关,耗氧量(OCR)特别可作为评估代谢活性的有价值的指标。已经有几种用于标准培养条件下细胞的氧传感器检测法被报道。然而,没有一种方法提供了完整组织样本中局部耗氧量的空间分辨光学测量,这使得理解消耗的区域动力学变得具有挑战性。因此,在这里,我们建立了一个监测组织切片耗氧率的系统,以鼠类淋巴组织作为案例研究。我们通过将光学氧传感器整合到密封的灌注室中,并对传感器和组织自发荧光的光漂白进行适当的校正,从而能够可视化和量化组织中的耗氧率。该方法首次揭示,在幼稚淋巴组织中,T 细胞区域的耗氧率高于 B 细胞和皮质区域。为了验证该方法,我们使用光学检测法测量了幼稚淋巴结切片的 T 细胞区域的 OCR,并估计了每个细胞的消耗速率。光学检测法的预测值与报道的值相似,与 Seahorse 代谢检测法(一种测量细胞悬浮液中 OCR 的金标准方法)的测量值没有显著差异。最后,我们使用该方法定量测量了在密封室中培养的淋巴结切片的组织缺氧起始速率,并表明连续灌注足以维持氧合。总之,这项工作建立了一种在完整组织外植体中以区域分辨率监测耗氧量的方法,适合未来用于比较组织培养条件和对刺激的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b7d/11056769/622e99739214/d4an00028e-f1.jpg

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