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Plasma Membrane Integrity and Survival of Melanoma Cells After Nanosecond Laser Pulses

机译:纳秒激光脉冲后黑素瘤细胞的质膜完整性和存活率

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摘要

Circulating tumor cells (CTCs) photoacoustic detection systems can aid clinical decision-making in the treatment of cancer. Interaction of melanin within melanoma cells with nanosecond laser pulses generates photoacoustic waves that make its detection possible. This study aims at: (1) determining melanoma cell survival after laser pulses of 6 ns at λ = 355 and 532 nm; (2) comparing the potential enhancement in the photoacoustic signal using λ = 355 nm in contrast with λ = 532 nm; (3) determining the critical laser fluence at which melanin begins to leak out from melanoma cells; and (4) developing a time-resolved imaging (TRI) system to study the intracellular interactions and their effect on the plasma membrane integrity. Monolayers of melanoma cells were grown on tissue culture-treated clusters and irradiated with up to 1.0 J/cm2. Surviving cells were stained with trypan blue and counted using a hemacytometer. The phosphate buffered saline absorbance was measured with a nanodrop spectrophotometer to detect melanin leakage from the melanoma cells post-laser irradiation. Photoacoustic signal magnitude was studied at both wavelengths using piezoelectric sensors. TRI with 6 ns resolution was used to image plasma membrane damage. Cell survival decreased proportionally with increasing laser fluence for both wavelengths, although the decrease is more pronounced for 355 nm radiation than for 532 nm. It was found that melanin leaks from cells equally for both wavelengths. No significant difference in photoacoustic signal was found between wavelengths. TRI showed clear damage to plasma membrane due to laser-induced bubble formation.
机译:循环肿瘤细胞(CTC)光声检测系统可以帮助临床决策治疗癌症。黑色素瘤细胞内的黑色素与纳秒激光脉冲的相互作用产生光声波,从而使其检测成为可能。这项研究的目的是:(1)确定在λ= 355和532nm的6ns激光脉冲后黑色素瘤细胞的存活; (2)使用λ= 355 nm和λ= 532 nm对比光声信号的电势增强; (3)确定黑色素开始从黑色素瘤细胞渗出的临界激光通量; (4)开发时间分辨成像(TRI)系统以研究细胞内相互作用及其对质膜完整性的影响。黑色素瘤细胞单层生长在经组织培养处理的簇上,并接受高达1.0J / cm 2 的辐照。存活细胞用锥虫蓝染色,并用血细胞计数器计数。用nanodrop分光光度计测量磷酸盐缓冲盐溶液的吸光度,以检测激光照射后黑色素瘤细胞中黑色素的渗漏。使用压电传感器研究了两种波长的光声信号强度。分辨率为6ns的TRI用于成像质膜损伤。在两种波长下,细胞存活率都随着激光能量密度的增加成比例地降低,尽管对于355nm的辐射比对532nm的辐射下降更为明显。发现黑色素对于两种波长均等地从细胞泄漏。在波长之间未发现光声信号的显着差异。 TRI显示由于激光诱导的气泡形成而对质膜的明显破坏。

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