Supplementation of conventional freezing medium with a combination of catalase and trehalose results in better protection of surface molecules and functionality of hematopoietic cells.

Lalita M Sasnoor, Vaijayanti P Kale, Lalita S Limaye
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引用次数: 51

Abstract

Our previous studies had shown that a combination of the bio-antioxidant catalase and the membrane stabilizer trehalose in the conventional freezing mixture affords better cryoprotection to hematopoietic cells as judged by clonogenic assays. In the present investigation, we extended these studies using several parameters like responsiveness to growth factors, expression of growth factor receptors, adhesion assays, adhesion molecule expression, and long-term culture-forming ability. Cells were frozen with (test cells) or without additives (control cells) in the conventional medium containing 10% dimethylsulfoxide (DMSO). Experiments were done on mononuclear cells (MNC) from cord blood/fetal liver hematopoietic cells (CB/FL) and CD34(+) cells isolated from frozen MNC. Our results showed that the responsiveness of test cells to the two early-acting cytokines, viz. interleukin-3 (IL-3) and stem cell factor (SCF) in CFU assays was better than control cells as seen by higher colony formation at limiting concentrations of these cytokines. We, therefore, analyzed the expression of these two growth factor receptors by flow cytometry. We found that in cryopreserved test MNC, as well as CD34(+) cells isolated from them, the expression of both cytokine receptors was two- to three-fold higher than control MNC and CD34(+) cells isolated from them. Adhesion assays carried out with CB/FL-derived CD34(+) cells and KG1a cells showed significantly higher adherence of test cells to M210B4 than respective control cells. Cryopreserved test MNC as well as CD34(+) cells isolated from them showed increased expression of adhesion molecules like CD43, CD44, CD49d, and CD49e. On isolated CD34(+) cells and KG1a cells, there was a two- to three-fold increase in a double-positive population expressing CD34/L-selectin in test cells as compared to control cells. Long-term cultures (LTC) were set up with frozen MNC as well as with CD34(+) cells. Clonogenic cells from LTC were enumerated at the end of the fifth week. There was a significantly increased formation of CFU from test cells than from control cells, indicating better preservation of early progenitors in test cells. Our results suggest that use of a combination of catalase and trehalose as a supplement in the conventional freezing medium results in better protection of growth factor receptors, adhesion molecules, and functionality of hematopoietic cells, yielding a better graft quality.

在常规冷冻培养基中加入过氧化氢酶和海藻糖,可以更好地保护表面分子和造血细胞的功能。
我们之前的研究表明,生物抗氧化剂过氧化氢酶和膜稳定剂海藻糖在传统冷冻混合物中的组合,通过克隆实验判断,对造血细胞具有更好的冷冻保护作用。在本研究中,我们使用了对生长因子的反应性、生长因子受体的表达、粘附实验、粘附分子表达和长期培养形成能力等几个参数来扩展这些研究。在含有10%二甲基亚砜(DMSO)的常规培养基中,用(试验细胞)或不加添加剂(对照细胞)冷冻细胞。实验采用脐带血/胎儿肝造血细胞(CB/FL)和冷冻后分离的CD34(+)细胞制备单核细胞(MNC)。我们的研究结果表明,在CFU实验中,测试细胞对两种早期作用的细胞因子,即白细胞介素-3 (IL-3)和干细胞因子(SCF)的反应性优于对照细胞,这可以从这些细胞因子在限制浓度下形成更高的集落中看出。因此,我们用流式细胞术分析了这两种生长因子受体的表达。我们发现,在冷冻保存的MNC以及从它们分离的CD34(+)细胞中,这两种细胞因子受体的表达比对照MNC和从它们分离的CD34(+)细胞高两到三倍。用CB/ fl衍生的CD34(+)细胞和KG1a细胞进行的粘附实验显示,与对照细胞相比,测试细胞对M210B4的粘附率显著提高。冷冻保存实验MNC及其分离的CD34(+)细胞显示CD43、CD44、CD49d、CD49e等粘附分子的表达增加。在分离的CD34(+)细胞和KG1a细胞中,与对照细胞相比,在测试细胞中表达CD34/ l -选择素的双阳性群体增加了两到三倍。冷冻MNC和CD34(+)细胞长期培养(LTC)。第5周末,对LTC的克隆源性细胞进行计数。与对照细胞相比,实验细胞中CFU的形成明显增加,表明实验细胞中早期祖细胞保存得更好。我们的研究结果表明,在传统的冷冻培养基中使用过氧化氢酶和海藻糖作为补充,可以更好地保护生长因子受体、粘附分子和造血细胞的功能,从而产生更好的移植物质量。
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