GEMpath, Longmont, Colorado, USA.
Toxicol Pathol. 2023 Jan;51(1-2):68-76. doi: 10.1177/01926233231164557. Epub 2023 Apr 14.
Gliosis, defined as a nonneoplastic reaction (hypertrophy and/or proliferation) of astrocytes and/or microglial cells, is a frequent finding in the central nervous system (CNS [brain and/or spinal cord]) in nonclinical safety studies. Gliosis in rodents and nonrodents occurs at low incidence as a spontaneous finding and is induced by various test articles (e.g., biomolecules, cell and gene therapies, small molecules) delivered centrally (i.e., by injection or infusion into cerebrospinal fluid or neural tissue) or systemically. Several CNS gliosis patterns occur in nonclinical species. First, gliosis may accompany degeneration and/or necrosis of cells (mainly neurons) or neural parenchyma (neuron processes and myelin). Second, gliosis often follows inflammation (i.e., leukocyte accumulation causing parenchymal damage) or neoplasm formation. Third, gliosis may appear as variably sized, randomly scattered foci of reactive glial cells in the absence of visible parenchymal damage or inflammation. In interpreting test article-related CNS gliosis, adversity is indicated by parenchymal injury (e.g., degeneration, necrosis, or inflammation) and not the mere existence of a glial reaction. In the absence of clear structural damage to the parenchyma, gliosis as a standalone CNS finding should be interpreted as a nonadverse reaction to regional alterations in microenvironmental conditions rather than as evidence of a glial reaction associated with neurotoxicity.
神经胶质增生是指星形胶质细胞和/或小胶质细胞的非肿瘤性反应(肥大和/或增殖),在非临床安全性研究中,是中枢神经系统(中枢神经系统[脑和/或脊髓])中的常见发现。啮齿动物和非啮齿动物的神经胶质增生作为自发性发现,其发生率较低,由各种测试物品(例如生物分子、细胞和基因疗法、小分子)引起,这些测试物品通过中枢(即通过注射或输注进入脑脊液或神经组织)或全身传递。在非临床物种中发生几种中枢神经系统神经胶质增生模式。首先,神经胶质增生可能伴随着细胞(主要是神经元)或神经实质(神经元过程和髓鞘)的变性和/或坏死。其次,神经胶质增生通常发生在炎症(即白细胞积聚导致实质损伤)或肿瘤形成之后。第三,神经胶质增生可能表现为大小不定、随机分散的反应性神经胶质细胞焦点,而没有明显的实质损伤或炎症。在解释与测试物品相关的中枢神经系统神经胶质增生时,表明存在不利情况的是实质损伤(例如变性、坏死或炎症),而不是单纯存在神经胶质反应。在实质没有明显结构损伤的情况下,作为单独的中枢神经系统发现的神经胶质增生应被解释为对微环境条件区域改变的非不利反应,而不是与神经毒性相关的神经胶质反应的证据。