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对肿瘤患者新鲜和冻融人卵巢组织的生物能量潜力和氧化应激的共焦激光扫描显微镜分析。

Confocal laser scanning microscopy analysis of bioenergetic potential and oxidative stress in fresh and frozen-thawed human ovarian tissue from oncologic patients.

机构信息

Gynaecology and Pathophysiology of Human Reproduction Unit, Sant'Orsola-Malpighi Hospital, DIMEC, University of Bologna, Bologna, Italy.

Gynaecology and Pathophysiology of Human Reproduction Unit, Sant'Orsola-Malpighi Hospital, DIMEC, University of Bologna, Bologna, Italy.

出版信息

Fertil Steril. 2014 Mar;101(3):795-804. doi: 10.1016/j.fertnstert.2013.11.032. Epub 2014 Jan 11.

Abstract

OBJECTIVE

To evaluate the effectiveness of a bioenergy/oxidative stress assessment based on confocal laser scanning microscopy (CLSM) in association with morphology and ultrastructure analyses based on light microscopy (LM) and transmission electron microscopy (TEM), to monitor the preservation status of cryopreserved human ovarian tissue from cancer patients.

DESIGN

Prospective study.

SETTING

University hospital.

PATIENT(S): Fourteen young cancer patients.

INTERVENTION(S): Human ovarian tissue biopsy, slow freezing/rapid thawing, LM, TEM, CLSM assessment of mitochondrial distribution and activity, and intracellular reactive oxygen species (ROS) localization and levels.

MAIN OUTCOME MEASURE(S): In tissue examined before and after slow freezing/rapid thawing, follicular and stromal LM-based score of morphologic damage, ultrastructure, mitochondrial distribution pattern, reactive oxygen species (ROS) localization; mean ± standard deviation of stromal mitochondrial activity and ROS levels.

RESULT(S): Severe (n = 6 patients), slight (n = 6 patients), or no (n = 2 patients) LM/TEM-based damage was found in fresh tissue. After freezing/thawing, no further morphologic/ultrastructural alterations were found; however, statistically significant reductions, increases, or no changes in mitochondrial activity and ROS levels were found in severely, slightly, and undamaged tissue, respectively.

CONCLUSION(S): Bioenergy/oxidative functional damage was found in tissue with severe LM/TEM-assessed damage. In tissue with slight LM/TEM-assessed damage, the CLSM-based bioenergy/oxidative stress assessment was the only test that allowed discrimination between tissue that had been better (low/no difference) or worse preserved (significant differences).

摘要

目的

评估基于共聚焦激光扫描显微镜(CLSM)的生物能量/氧化应激评估与基于光镜(LM)和透射电子显微镜(TEM)的形态和超微结构分析相结合,以监测来自癌症患者的冷冻保存人卵巢组织的保存状态的有效性。

设计

前瞻性研究。

设置

大学医院。

患者

十四位年轻癌症患者。

干预措施

人卵巢组织活检、慢速冻/快速解冻、LM、TEM、CLSM 评估线粒体分布和活性以及细胞内活性氧(ROS)定位和水平。

主要观察指标

在慢速冻/快速解冻前后检查的组织中,卵泡和基质 LM 基于形态损伤的评分、超微结构、线粒体分布模式、活性氧(ROS)定位;基质线粒体活性和 ROS 水平的平均值±标准差。

结果

新鲜组织中发现严重(n = 6 例)、轻微(n = 6 例)或无(n = 2 例)LM/TEM 基于损伤。冷冻/解冻后,未发现进一步的形态/超微结构改变;然而,在严重、轻微和未受损组织中,线粒体活性和 ROS 水平分别存在统计学显著降低、增加或无变化。

结论

在严重 LM/TEM 评估损伤的组织中发现生物能量/氧化功能损伤。在轻微 LM/TEM 评估损伤的组织中,基于 CLSM 的生物能量/氧化应激评估是唯一允许区分保存更好(低/无差异)或更差(显著差异)的组织的测试。

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