최근 기능성과 친환경 화장품에 대한 관심이 증가하고 있으며, 이에 따라 안전하면서 효능이 우수한 식물 추출물을 활용한 소재 개발이 이루어지고 있는 실정이다. 따라서 본 연구에서도 주로 건강 기능성 소재로써 다양한 효능이 있는 것으로 알려진 그라비올라 추출물이 기능성 화장품 소재로써의 가 능성을 확인하고자 하였다. 그라비올라 추출물의 항산화 활성을 확인하고자 총 폴리페놀과 총 플라보노 이드 함량, DPPH radical 소거 활성을 측정하였고, HDF 세포에서의 세포 독성을 확인한 후 적정 농도 에서 HDF 세포에 과산화수소(H2O2)를 처리하여 산화적 스트레스에 대한 ROS 활성 억제 효과와 세포 보호 효과를 측정하였다. 본 실험 결과, 그라비올라 추출물은 항산화 지표가 되는 총 폴리페놀과 플라보 노이드의 100g당 26.6 mg(CA)/100g, 14.3 mg(CA)/100g의 높은 함량을 확인하였으며, 높은 radical 소 거 활성을 확인하였다. HDF 세포에 대한 세포 생존율을 측정한 결과, 모든 농도에서 유의한 세포 독성 이 나타나지 않았으며, 추후 100 μg/mL 농도에서 실험하였다. H2O2로 유도된 HDF 세포에 ROS 활성 억제를 측정한 결과, 농도 의존적인 ROS 활성 억제 효과를 확인하였고, H2O2를 4 시간, 24 시간, 48 시간 동안 처리 후 그라비올라 추출물의 세포 보호 효과를 측정한 결과, 25 μg/mL 농도에서 24시간까 지 89.92%의 높은 세포 보호 효과를 확인하였다. 이와 같은 결과를 통하여 그라비올라 추출물은 항산 화 활성이 우수하고, HDF 세포에 대한 독성이 거의 없으며, H2O2에 의해 발생하는 활성산소에 대한 효과적인 활성 억제 효과와 세포 보호 효과가 우수한 것으로 확인됨에 따라 항산화 및 세포 보호 효과 를 가진 다양한 기능성 소재로서의 가능성을 확인하였다.
Vitis amurensis (VA; Vitaceae) has long been used in oriental herbal medicine. It has been reported that roots and seeds of VA have anti-inflammatory and antioxidant effects. In the present study, the protective effect of ethanol extract from stems and leaves of VA on hydrogen peroxide (H2O2) (100 μm)-induced neuronal cell damage was examined in primary cultured rat cortical neurons. VA (10-100 μg/ml) concentration-dependently inhibited H2O2-induced apoptotic neuronal cell death measured by 3-[4,5-Dimethylthiazol-2-yl]-2,5-diphenyl-tetrazolium bromide (MTT) assay and Hoechst 33342 staining. VA inhibited H2O2-induced elevation of intracellular Ca2+ concentration ([Ca2+]i) and generation of reactive oxygen species (ROS), which were measured by fluorescent dyes. Pretreatment of VA also prevented glutamate release into medium induced by 100 μm H2O2, which was measured by HPLC. These results suggest that VA showed a neuroprotective effect on H2O2-induced neuronal cell death by interfering with H2O2-induced elevation of [Ca2+]i, glutamate release, and ROS generation. This has a significant meaning of finding a new pharmacological activity of stems and leaves of VA in the CNS.
Dried leaves from Cedrela sinensis A. Juss. (CS), have been observed to possess various pharmacological activity and contain various antioxidant constituents. The protective effect of ethanol extract of CS on hydrogen peroxide (H2O2)-induced neurotoxicity was examined using primary cultured rat cortical neurons in the present study. Exposure of cultured neurons to 100 μM H2O2 caused a significant neuronal death as assessed by a 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyl-tetrazolium bromide (MTT) assay and Hoechst 33342 staining. The addition of CS, over a concentration range of 10 to 50μg/ml, concentration-dependently prevented the H2O2-induced neuronal apoptotic death. CS (50μg/ml) significantly inhibited H2O2-induced elevation of the cytosolic Ca2+ concentration ([Ca2+]c), which was measured by a fluorescent dye, Fluo-4 AM. CS (30 and 50μg/ml) inhibited glutamate release and generation of reactive oxygen species (ROS) induced by 100μM H2O2. These results suggest that CS may mitigate the H2O2-induced neurotoxiciy by interfering with the increase of [Ca2+]c, and then inhibiting glutamate release and generation of ROS in cultured neurons.
The protective effect of ethanol extract of Korean mistletoe (KM; Viscum album coloratum) on hydrogen peroxide (H2O2)-induced neurotoxicity was examined in primary cultured rat cortical neurons. H2O2 reduced viability of cortical neurons in a concentration-dependent manner. The addition of KM, over a concentration range of 10 to 100 μg/ml, concentration-dependently prevented the H2O2(100 μM)-induced neuronal cell death, as assessed by a 3-[4,5-dimethylthiazol-2-yl]-2,5-di-phenyl-tetrazolium bromide (MTT) assay and Hoechst 33342 staining. KM significantly inhibited H2O2-induced elevation of the cytosolic Ca2+ concentration ([Ca2+]c), which was measured by a fluorescent dye, fluo-4 AM. KM inhibited glutamate release into medium and generation of reactive oxygen species (ROS) induced by H2O2. These results suggest that KM may mitigate the H2O2-induced neurotoxiciy by interfering with the increase of [Ca2+]c, and inhibiting glutamate release and generation of ROS in cultured neurons.
Paeoniae radix has been widely used for its anti-allergic, anti-inflammatory and analgesic effects, and demonstrated to have anticonvulsant, memory enhancing and anxiolytic activities. The present study was performed to examine the protective effect of methanol extract of Paeoniae radix (PR) from Paeoniae Japonica Miyabe et Takeda (Paeoniaceae) on hydrogen peroxide (H2O2)-induced neurotoxicity using cultured rat cerebral cortical neuron. H2O2 produced a concentration-dependent reduction of neuronal viability, PR, over a concentration range of 10 to 100 μg/ml showed concentration-dependent decrease of the H2O2(100 μM)-induced neuronal cell death, as assessed by a 3-[4,5-dimethylthiazol-2-yl]-2,5-di-phenyl-tetrazolium bromide assay and the number of apoptotic nuclei, evidenced by Hoechst 33342 staining. PR (100 μg/ml inhibited 100 μM H2O2-induced elevation of the cytosolic Ca2+ concentration ([Ca2+]c), which was measured by a fluorescent dye, flue-4 AM. PR (50 μg/ml inhibited glutamate release into medium induced by 100 μM H2O2, which was measured by HPLC, and generation of reactive oxygen species (ROS). These results suggest that PR may mitigate the H2O2-induced neurotoxiciy by interfering with the increase of [Ca2+]c, and then inhibiting glutamate release and generation of ROS in cultured neurons.