Tirassa Paola
Institute of Neurobiology and Molecular Medicine, CNR, Rome, Italy.
Arch Ital Biol. 2011 Jun;149(2):205-13. doi: 10.4449/aib.v149i1.1359.
The possibility to take advantage from the nerve growth factor (NGF) ability to induce recovery of damaged tissue has been largely explored in animal models and humans. Recently, the successful use of the ocular administration of NGF in ophthalmology, and the evidences that from the eyes NGF can access to the brain have stimulated new fields of research and open further perspectives to the clinical application of this neurotrophin. In our previous studies we have demonstrated the efficacy of NGF eye drop treatment to improved behavioural deficits and recover structural and biochemical alterations occurring follow brain lesion in animals. Since NGF exerts neuroreparative effects in brain by acting on mature neurons and neuronal precursors localised in germinal subventricular zone (SVZ), the present study has been aimed to evaluate the effects of NGF eye drop administration on the expression of the mitotic marker Ki67 in brain of adult rats. We found that a single ocular administration (10 μl) of 200 μg/mL NGF solution is sufficient to enhance the distribution of Ki67 positive cells also expressing p75 neurotrophin receptors in the proliferating layer of the SVZ. In addition, NGF treatment induces an increase of levels of brain derived neurotrophic factor (BDNF) in forebrain. This data further supports the efficacy of ocular applied NGF to affect brain activities and suggests that NGF also by inducing local factors, including BDNF, can activate the machinery regulating the proliferation and maturation of neuronal precursor in brain.
利用神经生长因子(NGF)诱导受损组织恢复的可能性已在动物模型和人类中得到广泛研究。最近,NGF眼部给药在眼科的成功应用,以及NGF可从眼睛进入大脑的证据,激发了新的研究领域,并为这种神经营养因子的临床应用开辟了进一步的前景。在我们之前的研究中,我们已经证明了NGF滴眼液治疗对改善动物脑损伤后行为缺陷以及恢复结构和生化改变的有效性。由于NGF通过作用于位于生发脑室下区(SVZ)的成熟神经元和神经前体细胞在大脑中发挥神经修复作用,本研究旨在评估NGF滴眼液给药对成年大鼠大脑中增殖标记物Ki67表达的影响。我们发现,单次眼部给药(10μl)200μg/mL的NGF溶液足以增强SVZ增殖层中同时表达p75神经营养因子受体的Ki67阳性细胞的分布。此外,NGF治疗可诱导前脑源性神经营养因子(BDNF)水平升高。这些数据进一步支持了眼部应用NGF影响大脑活动的有效性,并表明NGF还可通过诱导包括BDNF在内的局部因子,激活调节大脑中神经前体细胞增殖和成熟的机制。