首页> 外文会议>Laser-Tissue Interaction VII >Photodisruption increases the free-radical reactivity of melanosomes isolated from retinal pigment epithelium
【24h】

Photodisruption increases the free-radical reactivity of melanosomes isolated from retinal pigment epithelium

机译:光破坏增加了从视网膜色素上皮分离的黑素体的自由基反应性

获取原文

摘要

Abstract: Melanin in vivo is usually packaged in melanosomes with protein coats that restrict direct interaction of the melanin with the surrounding medium. We found that disruption of the melanosomes by exposure to a pulsed laser increased the ability of the melanin radicals to oxidize NADPH in a photochemical reaction. Retinal pigment epithelial (RPE) melanosomes were prepared from fresh bovine eyes in 0.25 M sucrose. A reaction mixture of 7 mM NADPH, approximately 7500 RPE melanosomes, and 80 mM Tris buffer, pH 7.2, was prepared in a volume of 60 $mu@l. Of the two 25-$mu@l aliquots taken from this mixture, one was pre-exposed to the 2nd-harmonic output of a Q-switched Nd:YAG laser (532 nm, 1800 10-nsec pulses at 10 Hz), and then was exposed to an Argon ion continuous wave (CW) laser (488.1 and 514.5 nm) for five minutes. The other aliquot was exposed only to the Argon laser. The CW exposure excited the melanin radicals to a reactive state that oxidized NADPH, as assayed by the loss of absorbance at 340 nm. Native melanosomes oxidized less NADPH during Ar$+$PLU$/ laser pumping than did melanosomes pre-exposed to the YAG laser. The YAG laser's stimulatory effect on melanosomes reactivity increased as the total energy it delivered rose above 3.5 J (0.14 J/cm$+2$//pulse $MUL 1800 pulses), up to a maximum NADPH oxidation at about 20 J (0.2 J/cm$+2$//pulse $MUL 1800 pulses, beam broadened at higher pulse energy). Electron microscopic analysis of the melanosomes confirmed the progressive physical disruption of melanosomes as the YAG pulse energy increased.!14
机译:摘要:体内黑色素通常包装在带有蛋白质外壳的黑色素体中,从而限制黑色素与周围介质的直接相互作用。我们发现通过暴露于脉冲激光对黑素体的破坏增加了黑色素自由基在光化学反应中氧化NADPH的能力。从新鲜的牛眼在0.25 M蔗糖中制备视网膜色素上皮(RPE)黑素体。制备了体积为60μl的7mM NADPH,大约7500RPE黑素体和80mM Tris缓冲液,pH 7.2的反应混合物。从该混合物中提取的两个25μμl等分试样中的一个等分预暴露于调Q的Nd:YAG激光器的第二谐波输出(532 nm,在10 Hz时有1800个10 ns脉冲),并且然后暴露于氩离子连续波(CW)激光(488.1和514.5 nm)中五分钟。另一等分试样仅暴露于氩激光。连续波曝光将黑色素自由基激发到氧化NADPH的反应态,这可以通过在340 nm处的吸光度损失来测定。在Ar $ + $ PLU $ /激光泵浦期间,天然黑素体的氧化NADPH低于预先暴露于YAG激光的黑素体。 YAG激光对黑素体反应性的刺激作用增强,因为它传递的总能量超过3.5 J(0.14 J / cm $ + 2 $ //脉冲$ MUL 1800脉冲),直到约20 J(0.2 J / cm $ + 2 $ // pulse $ MUL 1800个脉冲,在较高的脉冲能量下光束变宽)。对黑素体的电子显微镜分析证实,随着YAG脉冲能量的增加,黑素体的进行性物理破坏。14

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号