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In vivo transplantation of 3D encapsulated ovarian constructs in rats corrects abnormalities of ovarian failure

机译:大鼠体内3D封装的卵巢构建体的体内移植可纠正卵巢衰竭的异常

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摘要

Safe clinical hormone replacement (HR) will likely become increasingly important in the growing populations of aged women and cancer patients undergoing treatments that ablate the ovaries. Cell-based HRT (cHRT) is an alternative approach that may allow certain physiological outcomes to be achieved with lower circulating hormone levels than pharmacological means due to participation of cells in the hypothalamus-pituitary-ovary feedback control loop. Here we describe the in vivo performance of 3D bioengineered ovarian constructs that recapitulate native cell–cell interactions between ovarian granulosa and theca cells as an approach to cHRT. The constructs are fabricated using either Ca++ or Sr++ to crosslink alginate. Following implantation in ovariectomized (ovx) rats, the Sr++-cross-linked constructs achieve stable secretion of hormones during 90 days of study. Further, we show these constructs with isogeneic cells to be effective in ameliorating adverse effects of hormone deficiency, including bone health, uterine health, and body composition in this rat model.
机译:在越来越多的老年妇女和接受消融卵巢治疗的癌症患者中,安全的临床激素替代(HR)可能会变得越来越重要。基于细胞的HRT(cHRT)是一种替代方法,由于细胞参与下丘脑-垂体-卵巢反馈控制回路,因此可以使某些循环激素水平低于药理学手段而达到某些生理结果。在这里,我们描述了3D生物工程卵巢构建体的体内性能,该构建体概括了卵巢颗粒与theca细胞之间的天然细胞间相互作用,以此作为cHRT的方法。使用Ca ++ 或Sr ++ 来使藻酸盐交联来制造构建体。植入卵巢切除(ovx)大鼠后,Sr ++ 交联的构建体在90天的研究过程中实现了激素的稳定分泌。此外,我们在这些大鼠模型中显示了这些具有同基因细胞的构建体可有效改善激素缺乏的不良影响,包括骨骼健康,子宫健康和身体组成。

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