PO.TB10.15 · 肿瘤生物学
放化疗增加细胞外囊泡释放,导致直肠癌细胞系的治疗抵抗
Chemoradiation treatment increases extracellular vesicle release causing treatment resistance in rectal cancer cell lines
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:结直肠癌(CRC)是美国第3大最常见的癌症形式,年轻美国人占病例数的比例不断上升。目前的治疗包括放化疗(CRT),对于未完全缓解者随后进行手术切除。由于大多数患者存在治疗抵抗,仅约25%的患者对CRT达到完全缓解。ST6GAL1是一种唾液酸转移酶,已被证明在包括CRC在内的多种癌症类型中上调。我们团队此前已证明其在体外和体内赋予对CRT的治疗抵抗。我们还证明ST6GAL1被人CRC细胞系包装进细胞外囊泡(ECVs),且这些ECVs可在细胞间传递治疗抵抗。我们假设CRT会增加ECV释放,从而传播治疗抵抗,并且这些ECVs可在直肠癌患者来源异种移植模型的血浆中被检测到。
方法:我们培养SW620 CRC细胞,用或不用5-氟尿嘧啶和5 Gy放射(CRT)处理,并使用差速离心从细胞条件培养基中分离ECVs。使用带NTA软件的Nanosight测定ECV的大小和浓度。使用我们此前验证的SW620 ST6GAL1对照载体(CV)和敲低(KD)细胞系评估CRT后对凋亡抵抗的传递。我们将从未处理或经CRT处理的SW620细胞分离的ECVs加入ST6GAL1 KD细胞,用5 Gy CRT处理,并进行切割型caspase-3(CC3)的免疫荧光检测。我们还将KD细胞与CV细胞(±CRT)共培养,并评估CRT后的CC3染色。我们在直肠癌PDX模型中评估了CRT前、中、后肿瘤和血浆的ST6GAL1 ECV水平。
结果:接受CRT的SW620细胞每个细胞的ECV释放量比未处理细胞高出两倍以上(2.57 ± 0.84,p=0.033,n=4)。在CRT(+)和CRT(-)分泌细胞之间的平均ECV大小未检测到显著差异。直接用来自CRT处理或未处理供体细胞的SW620 ECVs处理的ST6GAL KD细胞,与未处理的KD细胞相比,CRT后的CC3产生显著减少。KD细胞与经放射的CV细胞共培养降低了CRT后的CC3水平(1.59 ± 0.32,n=2)。ST6GAL1可在从直肠癌PDX模型血浆中分离的ECVs中检测到,且ECVs数量和ST6GAL1的量在CRT期间均增加。
结论:我们已证明外源性添加含ST6GAL1的ECVs在体外赋予治疗抵抗。我们的共培养数据进一步验证了这一发现,表明含ST6GAL1的细胞可将ECVs传递给邻近细胞并赋予治疗抵抗。我们的数据揭示,ECV释放在体外和体内均因CRT而增加。若在患者中也可见到,这种增加可能正在传播抵抗,从而潜在地恶化治疗结局。
查看英文原文 English abstract
Introduction: Colorectal cancer (CRC) is the 3 rd most prevalent form of cancer in the U.S., with younger Americans comprising an increasing fraction of case numbers. Current treatment includes chemoradiation treatment (CRT) followed by surgical resection in incomplete responders. Only about 25% of patients have a complete response to CRT due to the presence of treatment resistance in most patients. ST6GAL1 is a sialyltransferase, that has been shown to be upregulated in various cancer types, including CRC. Our group has previously shown that it confers treatment resistance to CRT in vitro and in vivo . We have also shown that ST6GAL1 is packaged into extracellular vesicles (ECVs) by human CRC cel lines, and that these ECVs can transfer treatment resistance between cells. We hypothesized that CRT would increase ECV release, thereby, spreading treatment resistance and that these ECVs could be measured in the plasma of a patient derived xenograft model of rectal cancer.
Methods: We cultured SW620 CRC cells, treated with or without 5-Flourouracil and 5 Gy of radiation (CRT), and isolated ECVs from the cells' conditioned medium using differential centrifugation. ECV size and concentration were determined using a Nanosight with NTA software. Our previously validated SW620 ST6GAL1 Control vector (CV) and knockdown (KD) cell line was used to assess transfer of resistance to apoptosis after CRT. We added ECVs isolated from untreated or CRT treated SW620 cells to ST6GAL1 KD cells, treated with 5 Gy of CRT, and performed immunofluorescence for cleaved caspase-3 (CC3). We also co-cultured KD cells with CV cells (+/- CRT) and assessed CC33 staining after CRT. We assessed tumor and plasma ECV levels of ST6GAL1 before, during, and after CRT in a PDX model of rectal cancer.
Results: SW620 cells undergoing CRT had a greater than twofold higher release of ECVs/cell compared to untreated cells ( 2.57 ± 0.84 p=0.033, n=4) . No significant differences were detected in mean ECV size between CRT(+) and CRT(-) emitting cells. ST6GAL KD cells directly treated with SW620 ECVs cells from either CRT treated or untreated donor cells showed a significantly reduced CC3 production after CRT compared to untreated KD cells. Co-culture of KD cells with radiated CV cells reduced CC3 levels after CRT (1.59± 0.32, n=2). ST6GAL1 could be measured in ECVs isolated from the plasma of the PDX model and the number of ECVs and amount of ST6GAL1 both increased during CRT.
Conclusion: We have shown that exogenously added ECVs containing ST6GAL1 confer treatment resistance in vitro. Our co-culture data additionally validates this finding by showing that ST6GAL1 containing cells can transfer ECVs to neighboring cells and confer treatment resistance. Our data reveals that ECV release is increased in response to CRT in vitro and in vivo . If seen in patients, this increase could be spreading resistance, potentially worsening treatment outcomes.
利益披露 Disclosure
V. Somasundaram, None..
J. M. P. Lever, None..
R. Irwin, None..
T. C. Beamon, None..
K. M. Hardiman, None.