首页> 外文期刊>Investigative ophthalmology & visual science >Estimation of human corneal oxygen consumption by noninvasive measurement of tear oxygen tension while wearing hydrogel lenses.
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Estimation of human corneal oxygen consumption by noninvasive measurement of tear oxygen tension while wearing hydrogel lenses.

机译:佩戴水凝胶镜片时通过无创测量泪液氧张力来估算人角膜耗氧量。

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摘要

PURPOSE: To devise a procedure for direct estimation of corneal oxygen consumption in human subjects. METHODS: Tear oxygen tension (PO2) was measured at the posterior surface of two standard hydrogel contact lenses (38% water, 0.2 and 0.06 mm thick, oxygen transmissibility [Dk/t] = 4.2 and 14 x 10(-9) cm x mL O2/mL x sec x torr) and one newly available hydrogel-silicone polymer lens (Dk/t = 99 x 10(-9)). The oxygen-sensitive dye, Pd-meso-tetra (4-carboxyphenyl) porphine, bound to bovine serum albumin, was incubated with the lenses overnight. The lenses, coated with the protein-dye complex, were placed on four subjects' eyes, and tear PO2 was measured in the open eye and after 5 minutes of eye closure, using a time-domain phosphorescence measurement system. Given the tear PO2, lens Dk/t, and corneal thickness, oxygen consumption (Q(C), in mL O2/cm(3) x sec) could be calculated from established oxygen diffusion models. RESULTS. Protein-dye complex bound to the lens surface enabled reporting of tear PO2 for long periods. As expected, estimated tear PO2 was higher in subjects wearing lenses with higher Dk/t: mean open-eye PO2 = 30.6 +/- 3.1 and 8.1 +/- 1.3 torr for the thin and thick hydrogel lenses, respectively, and 97.6 +/- 22.9 torr for the hydrogel-silicone lens. After 5 minutes of eye closure, tear PO2 was significantly reduced and reached a new steady state in approximately 20 seconds after eye opening. Fitting a single exponential model to the data and extrapolating to t = 0 provided an estimate of PO2 under the closed lid for the thin hydrogel (PO2 = 7 +/- 2.3 torr) and the hydrogel-silicone lens (PO2 = 22.6 +/- 4 torr). After 5 minutes of eye closure with the thick hydrogel lens, tear PO2 remained constant for approximately 10 seconds after eye opening (mean PO2 = 3.9 +/- 0.7) before increasing to a new steady state. This delay could be accounted for by the time needed for oxygen to diffuse to the posterior surface of the lens. Calculated Q(C) ranged from 2.2 x 10(-4) to 3.7 x 10(-6) mL O2/cm(3) x sec) at the highest and lowest PO2s, respectively, and is comparable to previous in vitro and in vivo estimates. CONCLUSIONS. Tear PO2 behind hydrogel lenses can be measured in human subjects using the phosphorescence of the porphyrin-protein complex bound to the lens surface. The method is simple, fast, reliable, and noninvasive, allowing quick and direct estimates of Q(C). In addition to contact lens wear, this method should be useful for examining the effects of disease, surgery, or topical drugs on the corneal oxygen consumption rate.
机译:目的:设计一种直接估算人类受试者角膜耗氧量的程序。方法:在两个标准水凝胶隐形眼镜(38%的水,0.2和0.06 mm的厚度,氧气透过率[Dk / t] = 4.2和14 x 10(-9)cm x)的后表面测量泪液氧张力(PO2)毫升O2 / mL x秒x托)和一个新近可用的水凝胶-有机硅聚合物透镜(Dk / t = 99 x 10(-9))。将与牛血清白蛋白结合的氧敏感性染料Pd-间-四(4-羧基苯基)卟啉与晶状体孵育过夜。将涂有蛋白质染料复合物的镜片放在四只受试者的眼睛上,并使用时域磷光测量系统在睁开的眼睛中和闭眼5分钟后测量泪液PO2。给定泪液PO2,晶状体Dk / t和角膜厚度,可以从建立的氧气扩散模型中计算出氧气消耗量(Q(C),单位为mL O2 / cm(3)x sec)。结果。结合到晶状体表面的蛋白质染料复合物可长时间报告泪液PO2。如预期的那样,戴Dk / t较高的镜片的受试者的估计泪液PO2较高:薄和厚水凝胶镜片的平均睁眼PO2分别为30.6 +/- 3.1和8.1 +/- 1.3托,和97.6 + / -水凝胶硅胶镜片的22.9托。闭眼5分钟后,泪水PO2明显减少,并在睁眼后约20秒内达到新的稳定状态。将单个指数模型拟合到数据并外推到t = 0,可以得到薄水凝胶(PO2 = 7 +/- 2.3托)和水凝胶-硅胶镜片(PO2 = 22.6 +/-)的密闭盖下的PO2估计值。 4托)。用厚水凝胶镜片闭眼5分钟后,眼泪PO2睁开后约10秒钟保持恒定(平均PO2 = 3.9 +/- 0.7),然后再增加到新的稳定状态。这种延迟可以由氧气扩散到晶状体后表面所需的时间来解释。在最高和最低PO2下计算的Q(C)范围分别为2.2 x 10(-4)到3.7 x 10(-6)mL O2 / cm(3)x sec),与以前的体外和体内PO2相当。体内估计。结论。使用结合在镜片表面的卟啉-蛋白质复合物的磷光,可以在人类受试者中测量水凝胶镜片后面的眼泪PO2。该方法简单,快速,可靠且无创,可快速直接估算Q(C)。除了配戴隐形眼镜外,该方法还应用于检查疾病,手术或外用药物对角膜耗氧率的影响。

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