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支架介导的培养中淋巴瘤代谢转换

Scaffold-mediated switching of lymphoma metabolism in culture.

作者信息

Bhatt Rachana, Ravi Dashnamoorthy, Evens Andrew M, Parekkadan Biju

机构信息

Department of Biomedical Engineering, Rutgers, The State University of New Jersey, New Brunswick, NJ, USA.

Division of Blood Disorders, Rutgers Cancer Institute of New Jersey, New Brunswick, NJ, USA.

出版信息

Cancer Metab. 2022 Oct 12;10(1):15. doi: 10.1186/s40170-022-00291-y.

Abstract

BACKGROUND

Diffuse large B cell lymphoma (DLBCL) is an aggressive subtype of non-Hodgkin lymphoma (NHL) and accounts for about a third of all NHL cases. A significant proportion (~40%) of treated DLBCL patients develop refractory or relapsed disease due to drug resistance which can be attributed to metabolomic and genetic variations amongst diverse DLBCL subtypes. An assay platform that reproduces metabolic patterns of DLBCL in vivo could serve as a useful model for DLBCL.

METHODS

This report investigated metabolic functions in 2D and 3D cell cultures using parental and drug-resistant DLBCL cell lines as compared to patient biopsy tissue.

RESULTS

A 3D culture model controlled the proliferation of parental and drug-resistant DLBCL cell lines, SUDHL-10, SUDHL-10 RR (rituximab resistant), and SUDHL-10 OR (obinutuzumab resistant), as well as retained differential sensitivity to CHOP. The results from metabolic profiling and isotope tracer studies with D-glucose-C indicated metabolic switching in 3D culture when compared with a 2D environment. Analysis of DLBCL patient tumor tissue revealed that the metabolic changes in 3D grown cells were shifted towards that of clinical specimens.

CONCLUSION

3D culture restrained DLBCL cell line growth and modulated metabolic pathways that trend towards the biological characteristics of patient tumors. Counter-intuitively, this research thereby contends that 3D matrices can be a tool to control tumor function towards a slower growing and metabolically dormant state that better reflects in vivo tumor physiology.

摘要

背景

弥漫性大B细胞淋巴瘤(DLBCL)是非霍奇金淋巴瘤(NHL)的一种侵袭性亚型,约占所有NHL病例的三分之一。相当一部分(约40%)接受治疗的DLBCL患者会因耐药性而出现难治性或复发性疾病,这可归因于不同DLBCL亚型之间的代谢组学和基因变异。一种能够在体内重现DLBCL代谢模式的检测平台可作为DLBCL的有用模型。

方法

本报告使用亲代和耐药性DLBCL细胞系,与患者活检组织相比,研究了二维和三维细胞培养中的代谢功能。

结果

三维培养模型控制了亲代和耐药性DLBCL细胞系SUDHL-10、SUDHL-10 RR(利妥昔单抗耐药)和SUDHL-10 OR(奥妥珠单抗耐药)的增殖,并保留了对CHOP的差异敏感性。用D-葡萄糖-C进行的代谢谱分析和同位素示踪研究结果表明,与二维环境相比,三维培养中存在代谢转换。对DLBCL患者肿瘤组织的分析显示,三维培养细胞中的代谢变化向临床标本的代谢变化转变。

结论

三维培养抑制了DLBCL细胞系的生长,并调节了趋向于患者肿瘤生物学特征的代谢途径。与直觉相反,本研究因此认为三维基质可以作为一种工具,将肿瘤功能控制到生长较慢和代谢休眠的状态,从而更好地反映体内肿瘤生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2978/9559005/09f020cf1425/40170_2022_291_Fig1_HTML.jpg

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