Alternating Current-Electric Field Inducing Chorio Allantoic Membrane (CAM) Angiogenesis through Exogenous Growth Factor Intervention

Q3 Agricultural and Biological Sciences Current Applied Science and Technology Pub Date : 2024-03-20 DOI:10.55003/cast.2024.258584
E. S. Palupi, Bambang Retnoaji, Pudji Astuti, F. Alamsyah, W. Taruno, R. Pratiwi
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Abstract

Angiogenesis is widely used in various therapies by promoting or inhibiting the formation of new blood vessels. The use of Alternating Current-Electric Fields (AC-EF) in Electro-Capacitive Cancer Therapy (ECCT) showed its potential as an anti-cancer device, and is characterized by its anti-proliferative and pro-apoptotic effects. However, the role of AC-EF in angiogenesis remains unclear. To investigate the effects of AC-EF on CAM angiogenesis, we used the ex ovo culture method of chorioallantoic membrane (CAM). A basic fibroblast growth factor (bFGF) dose of 30 ng/µL was administered as an exogenous growth factor. The ECCT device, generating AC-EF of 150 kHz and 18 Vpp, was exposed to the CAMs. Subsequently, the 24 CAMs of chick embryo were divided into four groups. Two groups were non-bFGF-induced CAM, while the other two were bFGF-induced CAM, and each group was exposed either with or without AC-EF. The vascularization was evaluated through macroscopic observation, while vascular endothelial growth factor A (VEGFA) gene expression was measured using qPCR. The data were statistically analyzed using ANOVA with GraphPad Prism 9.5. The results showed that an AC-EF exposure had no effects on normal CAM angiogenesis (P>0.05). Moreover, VEGFA gene expression did not show significant upregulation (P>0.05) in the bFGF-induced CAM with or without AC-EF exposure. Interestingly, the number of new blood vessels was significantly higher (P<0.05) in the bFGF-induced with AC-EF exposure than in the non-bFGF-induced group. In conclusion, AC-EF of ECCT did not affect normal angiogenesis. AC-EF may trigger CAM angiogenesis with bFGF induction. This observation suggested that AC-EF of intermediate frequency could enhance angiogenesis by administration of external growth factors, offering a potential avenue for addressing obstructive vascular conditions.
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交流电场通过外源性生长因子干预诱导绒毛尿囊膜(CAM)血管生成
通过促进或抑制新血管的形成,血管生成被广泛应用于各种疗法中。在电容式癌症疗法(ECCT)中使用交流电场(AC-EF)显示了其作为抗癌设备的潜力,其特点是具有抗增殖和促进凋亡的作用。然而,AC-EF 在血管生成中的作用仍不清楚。为了研究 AC-EF 对 CAM 血管生成的影响,我们采用了绒毛膜(CAM)体外培养法。外源生长因子为碱性成纤维细胞生长因子(bFGF),剂量为 30 ng/µL。产生 150 kHz 和 18 Vpp 交流电的 ECCT 设备暴露于 CAMs。随后,24 个小鸡胚胎的 CAMs 被分为四组。两组为非 bFGF 诱导的 CAM,另外两组为 bFGF 诱导的 CAM,每组都暴露于交流-EF 或不暴露交流-EF。通过宏观观察评估血管形成情况,同时使用 qPCR 检测血管内皮生长因子 A(VEGFA)基因的表达。使用 GraphPad Prism 9.5 对数据进行方差分析。结果显示,AC-EF 暴露对正常 CAM 血管生成没有影响(P>0.05)。此外,无论是否暴露于 AC-EF,在 bFGF 诱导的 CAM 中 VEGFA 基因表达均未出现显著上调(P>0.05)。有趣的是,暴露于 AC-EF 的 bFGF 诱导组的新生血管数量明显高于非 bFGF 诱导组(P<0.05)。总之,ECCT的AC-EF不会影响正常的血管生成。AC-EF可能会在bFGF诱导下引发CAM血管生成。这一观察结果表明,中频 AC-EF 可通过施用外部生长因子促进血管生成,为解决血管阻塞问题提供了一条潜在的途径。
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来源期刊
Current Applied Science and Technology
Current Applied Science and Technology Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
1.50
自引率
0.00%
发文量
51
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