Diverse Engraftment Capability of Neuroblastoma Cell Lines in Zebrafish Larvae.

Zebrafish Pub Date : 2024-12-01 Epub Date: 2024-09-24 DOI:10.1089/zeb.2024.0160
Josephine M Lawrence, Shyang Hong Tan, Daniel C Kim, Ke-En Tan, Sydney E Schroeder, Kok Siong Yeo, Madison A Schaefer, Alexis M Sosic, Shizhen Zhu
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Abstract

Xenotransplantation of neuroblastoma cells into larval zebrafish allows the characterization of their in vivo tumorigenic abilities and high-throughput treatment screening. This established preclinical model traditionally relies on microinjection into the yolk or perivitelline space, leaving the engraftment ability of cells at the hindbrain ventricle (HBV) and pericardial space (PCS), sites valuable for evaluating metastasis, angiogenesis, and the brain microenvironment, unknown. To address this gap in knowledge, Casper zebrafish at 48 h postfertilization were microinjected with approximately 200 Kelly, Be(2)-C, SK-N-AS, or SY5Y cells into either the HBV or PCS. Fish were imaged at 1, 3, and 6 days postinjection and tumor growth was monitored at each timepoint. We hypothesized that engraftment ability and location preference would be cell line dependent. Kelly and SK-N-AS cells were able to engraft at both the HBV and PCS, with a near doubling in size of tumor volume during the 6 days observation period, with cells appearing to grow better in the HBV. Be(2)-C tumors remained static while SY5Y tumors decreased in size, with almost complete loss of volume at both sites. Therefore, the capability of neuroblastoma cell engraftment in zebrafish larvae is cell line dependent with a location preference.

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神经母细胞瘤细胞株在斑马鱼幼体中的不同移植能力
将神经母细胞瘤细胞异种移植到幼年斑马鱼体内,可以鉴定其体内致瘤能力并进行高通量治疗筛选。这种成熟的临床前模型传统上依赖于向卵黄或脐带周围间隙的显微注射,因此细胞在后脑室(HBV)和心包间隙(PCS)的移植能力尚不清楚,而这些部位对评估转移、血管生成和脑部微环境很有价值。为了填补这一知识空白,受精后 48 小时的 Casper 斑马鱼在 HBV 或 PCS 中注射了约 200 个 Kelly、Be(2)-C、SK-N-AS 或 SY5Y 细胞。在注射后 1、3 和 6 天对鱼进行成像,并在每个时间点监测肿瘤生长情况。我们假设移植能力和位置偏好取决于细胞系。Kelly和SK-N-AS细胞能够在HBV和PCS上进行移植,在6天的观察期内,肿瘤体积几乎翻了一番,细胞在HBV上似乎生长得更好。Be(2)-C 肿瘤保持静止,而 SY5Y 肿瘤体积缩小,两个部位的肿瘤体积几乎完全消失。因此,神经母细胞瘤细胞在斑马鱼幼体中的移植能力取决于细胞系的位置偏好。
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