孔径和机械性能对 F98 胶质母细胞瘤细胞在大孔水凝胶中的聚集、滞留和分布的作用。

Lisa Delattre, Sahar Naasri, Angela Giraldo Solano, Hélène Therriault, Simon Bergeron-Fortier, Vaiana Moreau, Benoît Liberelle, Gregory De Crescenzo, Marc-Antoine Lauzon, Nathalie Faucheux, Benoit Paquette, Nick Virgilio
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引用次数: 0

摘要

胶质母细胞瘤(GBM)占所有中枢神经系统肿瘤的一半。一旦肿瘤被切除,许多 GBM 细胞仍然存在于手术腔附近,并浸润大脑达 20 至 30 毫米,导致几个月后复发。由于血脑屏障以及健康脑组织对化疗和放疗的敏感性,GBM 目前的治疗效果有限,因此仍无法治愈。目前正在开发的一种治疗 GBM 的新疗法范例是,在切除肿瘤后将癌细胞捕获器插入手术腔内,吸引和积聚 GBM 细胞。在这项工作中,使用多孔聚乳酸模具制备了多孔凝胶,这些模具由聚苯乙烯和聚乳酸的共连续聚合物混合物熔融加工而成,平均孔径从 5 μm 到 500 μm 以上不等。为了在大孔海藻酸钠水凝胶捕集器中有效地聚集和保留胶质母细胞瘤脑癌细胞,孔的平均尺寸必须大于 100 微米,其中 225 微米的效果最佳。在这种情况下,F98胶质母细胞瘤细胞的聚集和滞留更为均匀,尤其是在使用 RGD 黏附肽功能化时。藻酸盐浓度为 1% w/v 时,压缩模量达到 15 kPa,接近已报道的脑组织平均值 1-2 kPa,同时粘附性和保留性也优于 2% w/v 凝胶。总之,具有 225 μm 孔隙并用 RGD 肽功能化的 1% w/v 凝胶表现最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of pore size and mechanical properties on the accumulation, retention and distribution of F98 glioblastoma cells in macroporous hydrogels.

Glioblastoma (GBM) accounts for half of all central nervous system tumors. Once the tumor is removed, many GBM cells remain present near the surgical cavity and infiltrate the brain up to a distance of 20-30 mm, resulting in recurrence a few months later. GBM remains incurable due to the limited efficiency of current treatments, a result of the blood-brain barrier and sensitivity of healthy brain tissues to chemotherapy and radiation. A new therapeutic paradigm under development to treat GBM is to attract and accumulate GBM cells in a cancer cell trap inserted in the surgical cavity after tumor resection. In this work, porous gels were prepared using porous polylactide molds obtained from melt-processed co-continuous polymer blends of polystyrene and polylactide, with an average pore size ranging from 5 μm to over 500 μm. In order to efficiently accumulate and retain GBM brain cancer cells within a macroporous sodium alginate-based hydrogel trap, the pores must have an average diameter superior to 100 μm, with the best results obtained at 225 μm. In that case, the accumulation and retention of F98 GBM cells were more homogeneous, especially when functionalized with RGD adhesion peptides. At an alginate concentration of 1% w/v, the compression modulus reaches 15 kPa, close to the average value of 1-2 kPa reported for brain tissues, while adhesion and retention were also superior compared to 2% w/v gels. Overall, 1% w/v gels with 225 μm pores functionalized with the RGD peptide display the best performances.

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