Translational Science Management, Non-Clinical Biomedical Science, Astellas Pharma Inc., Tsukuba, Japan.
Portfolio Evaluation Group, Cooperate Strategy, Astellas Pharma Inc., Tokyo, Japan.
Transl Vis Sci Technol. 2024 Jan 2;13(1):20. doi: 10.1167/tvst.13.1.20.
To evaluate the feasibility of using DARC (detection of apoptosing retinal cells) technology as a biomarker for preclinical assessment of glaucomatous damage in a non-human primate (NHP) model of ocular hypertension (OHT).
Elevated intraocular pressure (IOP) was induced by applying a laser to the trabecular meshwork in each eye of NHPs. Changes in DARC counts in the retina, identified as fluorescent-tagged annexin V (ANX776)-positive cells, were evaluated together with optic nerve damage, assessed using spectral domain-optical coherence tomography. The pharmacokinetic properties of ANX776 in both healthy and OHT model monkeys were also examined.
Sustained elevation of IOP and subsequent thinning of the retinal nerve fiber layer thickness (RNFLT) around the optic nerve head were confirmed in the OHT model. Increases in DARC counts were also detected after IOP elevation. We identified a statistically significant relationship between cumulative DARC counts and reductions in RNFLT both globally and in each peripapillary sector. Intravenous administration of ANX776 increased blood annexin V in a dose-dependent manner, which was subsequently eliminated.
This study revealed that DARC technology can effectively assess glaucomatous damage in an NHP OHT model. We obtained the fundamental data that could serve as a reference for developing preclinical models to evaluate the pharmacodynamics of neuroprotective agents using DARC technology in NHP OHT models.
Our basic data in a monkey OHT model could be useful for future preclinical studies using DARC technology to estimate the pharmacodynamic response of neuroprotective agents.
评估 DARC(凋亡视网膜细胞检测)技术作为一种生物标志物,用于评估眼高压(OHT)非人灵长类动物(NHP)模型中青光眼损伤的临床前评估的可行性。
通过对 NHP 每只眼的小梁网施加激光来升高眼内压(IOP)。评估视网膜中 DARC 计数的变化,这些变化被鉴定为荧光标记的膜联蛋白 V(ANX776)阳性细胞,并与视神经损伤一起使用光谱域光学相干断层扫描进行评估。还检查了 ANX776 在健康和 OHT 模型猴中的药代动力学特性。
在 OHT 模型中证实了 IOP 的持续升高和随后视神经头周围视网膜神经纤维层厚度(RNFLT)的变薄。IOP 升高后也检测到 DARC 计数的增加。我们发现累积 DARC 计数与全球和每个视盘周围区域的 RNFLT 减少之间存在统计学上的显著关系。静脉内给予 ANX776 以剂量依赖性方式增加血液 annexin V,随后被消除。
这项研究表明,DARC 技术可有效评估 NHP OHT 模型中的青光眼损伤。我们获得了基本数据,可作为开发使用 DARC 技术在 NHP OHT 模型中评估神经保护剂药效动力学的临床前模型的参考。
郑红燕