不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Human Placenta-Derived Mesenchymal Stem Cells Improve Neurological Function in Rats with Intrauterine Hypoxic-Ischaemic Encephalopathy by Reducing Apoptosis and Inflammatory Reactions.
Human Placenta-Derived Mesenchymal Stem Cells Improve Neurological Function in Rats with Intrauterine Hypoxic-Ischaemic Encephalopathy by Reducing Apoptosis and Inflammatory Reactions.
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我们证明,在大鼠模型中,子宫内 HI 损伤后第 7、14 和 28 天静脉注射 PD-MSC 可改善学习、记忆和运动功能,其机制可能是抑制凋亡和炎症损伤。
缺氧缺血性脑病(HIE)是新生儿残疾和死亡的重要原因。尽管低温治疗可提供一定神经保护,神经功能恢复仍有限,因此需要新的协同疗法改善预后。间充质干细胞疗法正成为 HIE 有前景的治疗选择。本研究在 HIE 大鼠模型中评估人胎盘来源间充质干细胞(PD-MSC)的治疗效果,并分析其潜在机制。
大鼠分为 6 组,每组 n=9:对照组、HIE 模型组、HIE+生理盐水组,以及 HIE 后第 7、14、28 天接受 PD-MSC 移植的三组。移植后通过转棒、牵引和 Morris 水迷宫测试评估神经行为;通过组织学检查和尼氏染色评估脑组织损伤;采用蛋白质印迹和酶联免疫吸附试验定量凋亡相关蛋白和炎症因子;并用免疫荧光研究 PD-MSC 修复缺氧缺血(HI)损伤海马神经元形态和功能的能力。
PD-MSC 移植增强了 HIE 大鼠的运动协调和肌力,也通过修复病理损伤、阻止大脑皮层神经元丢失改善空间记忆。HIE 后第 7 天移植组疗效最佳。与 HIE 组相比,HIE+PD-MSC 组微管相关蛋白-2(MAP-2)、B 细胞淋巴瘤-2(BCL-2)、IL-10 和转化生长因子(TGF-β1)表达显著升高,而 BCL-2 相关 X 蛋白(BAX)、BCL-2 相关促凋亡蛋白(BAD)、IL-1 和肿瘤坏死因子(TNF-α)水平显著降低。
在大鼠宫内缺氧缺血损伤后第 7、14 和 28 天静脉注射 PD-MSC,可改善学习、记忆和运动功能,可能是通过抑制细胞凋亡和炎症损伤实现。这些发现提示自体 PD-MSC 疗法可能用于 HIE。
Hypoxic-ischaemic encephalopathy (HIE) is a major cause of neonatal disability and mortality. Although hypothermia therapy offers some neuroprotection, the recovery of neurological function is limited. Therefore, new synergistic therapies are necessary to improve the prognosis. Mesenchymal stem cell-based therapy is emerging as a promising treatment option for HIE. In this study, we studied the therapeutic efficacy of human placenta-derived mesenchymal stem cells (PD-MSCs) in the HIE rat model and analyzed the underlying therapeutic mechanisms.
Rats were divided into 6 groups (n = 9 for each) as follows: control, HIE model, HIE + normal saline, and HIE + PD-MSC transplantation at days 7, 14 and 28 postpartum. Following PD-MSC transplantation, neurological behavior was evaluated using rotarod tests, traction tests, and the Morris water maze test. The degree of brain tissue damage was assessed by histological examination and Nissl staining. Expression levels of apoptosis-related proteins and inflammatory factors were quantified by Western blotting and enzyme-linked immunosorbent assays. Immunofluorescence was used to investigate the ability of PD-MSCs to repair the morphology and function of hippocampal neurons with hypoxic-ischaemic (HI) injury.
PD-MSC transplantation enhanced motor coordination and muscle strength in HIE rats. This treatment also improved spatial memory ability by repairing pathological damage and preventing the loss of neurons in the cerebral cortex. The most effective treatment was observed in the HIE + PD-MSC transplantation at day 7 group. Expression levels of microtubule-associated protein-2 (MAP-2), B-cell lymphoma-2 (BCL-2), interleukin (IL)-10, and transforming growth factor (TGF - 1) were significantly higher in the HIE + PD-MSC treatment groups compared to the HIE group, whereas the levels of BCL-2-associated X protein (BAX), BCL-2-associated agonist of cell death (BAD), IL-1 and tumour necrosis factor (TNF- ) were significantly lower.
We demonstrated that intravenous injection of PD-MSC at 7, 14 and 28 days after intrauterine HI damage in a rat model could improve learning, memory, and motor function, possibly by inhibiting apoptosis and inflammatory damage. These findings indicate that autologous PD-MSC therapy could have potential application for the treatment of HIE.
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