CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Long-termin vitromaintenance of plasma cells in a hydrogel-enclosed human bone marrow microphysiological 3D model system.
Long-termin vitromaintenance of plasma cells in a hydrogel-enclosed human bone marrow microphysiological 3D model system.
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骨髓浆细胞参与保护性和致病性体液免疫反应,与多发性骨髓瘤、免疫缺陷和自身免疫病等相关。骨髓特定微环境生态位通过生物力学和可溶性因子支持浆细胞长期存活。研究浆细胞生物学和开发靶向疗法需要可靠模型;传统二维培养难以维持人浆细胞存活和功能,也不能反映骨髓生态位结构。本研究建立基于人股骨活检组织、由水凝胶支架支持的动态三维骨髓微生理培养系统。惰性琼脂糖外壳不能支持浆细胞存活,而光交联胶原-透明质酸水凝胶可保留原生骨髓结构,使浆细胞体外存活最长达两周,并允许淋巴细胞迁入循环。浆细胞长期存活与APRIL、BAFF和IL-6等因子的稳定存在有关,培养液免疫球蛋白持续增加也证实细胞仍具功能。据作者所知,这是首次报告原代非恶性浆细胞可在体外长期维持;该模型适用于深入研究人浆细胞调控及CAR-T 或生物制剂等靶向治疗。
Plasma cells (PCs) in bone marrow (BM) play an important role in both protective and pathogenic humoral immune responses, e. g. in various malignant and non-malignant diseases such as multiple myeloma, primary and secondary immunodeficiencies and autoimmune diseases. Dedicated microenvironmental niches in the BM provide PCs with biomechanical and soluble factors that support their long-term survival.
There is a high need for appropriate and robust model systems to better understand PCs biology, to develop new therapeutic strategies for PCs-related diseases and perform targeted preclinical studies with high predictive value. Most preclinical data have been derived from in vivo studies in mice, as in vitro studies of human PCs are limited due to restricted survival and functionality in conventional 2D cultures that do not reflect the unique niche architecture of the BM.
We have developed a microphysiological, dynamic 3D BM culture system (BM-MPS) based on human primary tissue (femoral biopsies), mechanically supported by a hydrogel scaffold casing. While a bioinert agarose casing did not support PCs survival, a photo-crosslinked collagen-hyaluronic acid (Col-HA) hydrogel preserved the native BM niche architecture and allowed PCs survival in vitro for up to 2 weeks.
Further, the Col-HA hydrogel was permissive to lymphocyte migration into the microphysiological system s circulation. Long-term PCs survival was related to the stable presence in the culture of soluble factors, as APRIL, BAFF, and IL-6. Increasing immunoglobulins concentrations in the medium confirm their functionality over culture time. To the best of our knowledge, this study is the first report of successful long-term maintenance of primary-derived non-malignant PCs in vitro .
Our innovative model system is suitable for in-depth in vitro studies of human PCs regulation and exploration of targeted therapeutic approaches such as CAR-T cell therapy or biologics.
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