Human mesenchymal stem cells increase LLC metastasis and stimulate or decelerate tumor development depending on injection method and cell amount

IF 2.5 4区 生物学 Q3 BIOCHEMICAL RESEARCH METHODS Cytometry Part A Pub Date : 2023-12-01 DOI:10.1002/cyto.a.24814
Yurii V. Stepanov, Iuliia Golovynska, Galyna Ostrovska, Larysa Pylyp, Taisa Dovbynchuk, Liudmyla I. Stepanova, Oleksandr Gorbach, Volodymyr Shablii, Hao Xu, Liudmyla V. Garmanchuk, Tymish Y. Ohulchanskyy, Junle Qu, Galina I. Solyanik
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Abstract

Mesenchymal stem cells (MSCs) being injected into the body can stimulate or decelerate carcinogenesis. Here, the direction of influence of human placenta-derived MSCs (P-MSCs) on the Lewis lung carcinoma (LLC) tumor development and metastatic potential is investigated in C57BL/6 mice depending on the injection method. After intramuscular co-inoculation of LLC and P-MSCs (LLC + P-MSCs), the growth of primary tumor and angiogenesis are slowed down compared to the control LLC on the 15th day. This is explained by the fact of a decrease in the secretion of proangiogenic factors during in vitro co-cultivation of an equal amount of LLC and P-MSCs. When P-MSCs are intravenously (i.v.) injected in the mice with developing LLC (LLC + P-MSCs(i.v.)), the tumor growth and angiogenesis are stimulated on the 15th day. A highly activated secretion of proangiogenic factors by P-MSCs in a similar in vitro model can explain this. In both the models compared to the control on the 23rd day, there is no significant difference in the tumor growth, while angiogenesis remains correspondingly decelerated or stimulated. However, in both the models, the total volume and number of lung metastases constantly increase compared to the control: it is mainly due to small-size metastases for LLC + P-MSCs(i.v.) and larger ones for LLC + P-MSCs. The increase in the rate of LLC cell dissemination after the injection of P-MSCs is explained by the disordered polyploidy and chromosomal instability, leading to an increase in migration and invasion of cancer cells. After LLC + P-MSCs co-inoculation, the tumor cell karyotype has the most complex and heterogeneous chromosomal structure. These findings indicate a bidirectional effect of P-MSCs on the growth of LLC in the early periods after injection, depending on the injection method, and, correspondingly, the number of contacting cells. However, regardless of the injection method, P-MSCs are shown to increase LLC aggressiveness related to cancer-associated angiogenesis and metastasis activation in the long term.

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人间充质干细胞增加LLC转移和刺激或减缓肿瘤发展取决于注射方法和细胞数量。
间充质干细胞(MSCs)被注射到体内可以刺激或减缓癌变。本文研究了人胎盘源性间充质干细胞(P-MSCs)在C57BL/6小鼠中对Lewis肺癌(LLC)肿瘤发展和转移潜能的影响方向。肌内共接种LLC和P-MSCs (LLC + P-MSCs)后,与对照LLC相比,第15天原发性肿瘤的生长和血管生成减慢。这可以解释为在体外培养等量的LLC和P-MSCs时,促血管生成因子的分泌减少。将P-MSCs(LLC + P-MSCs(i.v.))静脉注射到发育中的LLC小鼠体内,第15天刺激肿瘤生长和血管生成。在类似的体外模型中,P-MSCs高度激活的促血管生成因子分泌可以解释这一点。在第23天,两种模型与对照组相比,肿瘤生长无显著差异,而血管生成仍相应减慢或刺激。然而,在两种模型中,与对照组相比,肺转移的总量和数量都在不断增加,这主要是由于LLC + P-MSCs(iv)的转移体积较小,而LLC + P-MSCs的转移体积较大。注射P-MSCs后LLC细胞播散率的增加可以解释为多倍体的紊乱和染色体的不稳定性,导致癌细胞的迁移和侵袭增加。LLC + P-MSCs共接种后,肿瘤细胞核型具有最复杂和异质性的染色体结构。这些发现表明,P-MSCs在注射后早期对LLC的生长有双向影响,这取决于注射方法,以及相应的接触细胞的数量。然而,无论注射方式如何,长期来看,P-MSCs都显示出与癌症相关的血管生成和转移激活相关的LLC侵袭性。这篇文章受版权保护。版权所有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cytometry Part A
Cytometry Part A 生物-生化研究方法
CiteScore
8.10
自引率
13.50%
发文量
183
审稿时长
4-8 weeks
期刊介绍: Cytometry Part A, the journal of quantitative single-cell analysis, features original research reports and reviews of innovative scientific studies employing quantitative single-cell measurement, separation, manipulation, and modeling techniques, as well as original articles on mechanisms of molecular and cellular functions obtained by cytometry techniques. The journal welcomes submissions from multiple research fields that fully embrace the study of the cytome: Biomedical Instrumentation Engineering Biophotonics Bioinformatics Cell Biology Computational Biology Data Science Immunology Parasitology Microbiology Neuroscience Cancer Stem Cells Tissue Regeneration.
期刊最新文献
Issue Information - TOC Volume 105A, Number 12, December 2024 Cover Image Autofluorescence lifetime flow cytometry rapidly flows from strength to strength. Flow cytometry-based method to detect and separate Mycoplasma hyorhinis in cell cultures. The consequence of mismatched buffers in purity checks when spectral cell sorting
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