1.Esculetin Prevents the Induction of Matrix Metalloproteinase-1 by Hydrogen Peroxide in Skin Keratinocytes
Ao Xuan ZHEN ; Mei Jing PIAO ; Kyoung Ah KANG ; Pincha Devage Sameera Madushan FERNANDO ; Hee Kyoung KANG ; Young Sang KOH ; Jin Won HYUN
Journal of Cancer Prevention 2019;24(2):123-128
BACKGROUND: Reactive oxygen species (ROS) are involved in various cellular diseases. Excessive ROS can cause intracellular oxidative stress, resulting in a calcium imbalance and even aging. In this study, we evaluated the protective effect of esculetin on oxidative stress-induced aging in human HaCaT keratinocytes. METHODS: Human keratinocytes were pretreated with esculetin for 30 minutes and treated with H₂O₂. Then, the protective effects on oxidative stress-induced matrix metalloproteinase (MMP)-1 were detected by Flou-4-AM staining, reverse transcription-PCR, Western blotting, and quantitative fluorescence assay. RESULTS: Esculetin prevented H₂O₂-induced aging by inhibiting MMP-1 mRNA, protein, and activity levels. In addition, esculetin decreased abnormal levels of phospho-MEK1, phospho-ERK1/2, phospho-SEK1, phospho-JNK1/2, c-Fos, and phospho-c-Jun and inhibited activator protein 1 binding activity. CONCLUSIONS: Esculetin prevented excessive levels of intracellular calcium and reduced the expression levels of aging-related proteins.
Aging
;
Blotting, Western
;
Calcium
;
Fluorescence
;
Humans
;
Hydrogen Peroxide
;
Hydrogen
;
Keratinocytes
;
Matrix Metalloproteinase 1
;
Oxidative Stress
;
Reactive Oxygen Species
;
RNA, Messenger
;
Skin
;
Transcription Factor AP-1
2.Shikonin Exerts Cytotoxic Effects in Human Colon Cancers by Inducing Apoptotic Cell Death via the Endoplasmic Reticulum and Mitochondria-Mediated Pathways.
Xia HAN ; Kyoung Ah KANG ; Mei Jing PIAO ; Ao Xuan ZHEN ; Yu Jae HYUN ; Hyun Min KIM ; Yea Seong RYU ; Jin Won HYUN
Biomolecules & Therapeutics 2019;27(1):41-47
The apoptotic effects of shikonin (5,8-dihydroxy-2-[(1R)-1-hydroxy-4-methylpent-3-enyl]naphthalene-1,4-dione) on the human colon cancer cell line SNU-407 were investigated in this study. Shikonin showed dose-dependent cytotoxic activity against SNU-407 cells, with an estimated IC50 value of 3 µM after 48 h of treatment. Shikonin induced apoptosis, as evidenced by apoptotic body formation, sub-G1 phase cells, and DNA fragmentation. Shikonin induced apoptotic cell death by activating mitogen-activated protein kinase family members, and the apoptotic process was mediated by the activation of endoplasmic reticulum (ER) stress, leading to activation of the PERK/elF2α/CHOP apoptotic pathway, and mitochondrial Ca2+ accumulation. Shikonin increased mitochondrial membrane depolarization and altered the levels of apoptosis-related proteins, with a decrease in B cell lymphoma (Bcl)-2 and an increase in Bcl-2-associated X protein, and subsequently, increased expression of cleaved forms of caspase-9 and -3. Taken together, we suggest that these mechanisms, including MAPK signaling and the ER-and mitochondria-mediated pathways, may underlie shikonin-induced apoptosis related to its anticancer effect.
Apoptosis
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bcl-2-Associated X Protein
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Caspase 9
;
Cell Death*
;
Cell Line
;
Colon*
;
Colonic Neoplasms*
;
DNA Fragmentation
;
Endoplasmic Reticulum*
;
Extracellular Vesicles
;
Humans*
;
Inhibitory Concentration 50
;
Lymphoma, B-Cell
;
Mitochondria
;
Mitochondrial Membranes
;
Protein Kinases
3.Purpurogallin Protects Keratinocytes from Damage and Apoptosis Induced by Ultraviolet B Radiation and Particulate Matter 2.5
Ao Xuan ZHEN ; Mei Jing PIAO ; Yu Jae HYUN ; Kyoung Ah KANG ; Yea Seong RYU ; Suk Ju CHO ; Hee Kyoung KANG ; Young Sang KOH ; Mee Jung AHN ; Tae Hoon KIM ; Jin Won HYUN
Biomolecules & Therapeutics 2019;27(4):395-403
Purpurogallin, a natural phenol obtained from oak nutgalls, has been shown to possess antioxidant, anticancer, and anti-inflammatory effects. Recently, in addition to ultraviolet B (UVB) radiation that induces cell apoptosis via oxidative stress, particulate matter 2.5 (PM(2.5)) was shown to trigger excessive production of reactive oxygen species. In this study, we observed that UVB radiation and PM(2.5) severely damaged human HaCaT keratinocytes, disrupting cellular DNA, lipids, and proteins and causing mitochondrial depolarization. Purpurogallin protected HaCaT cells from apoptosis induced by UVB radiation and/or PM(2.5). Furthermore, purpurogallin effectively modulates the pro-apoptotic and anti-apoptotic proteins under UVB irradiation via caspase signaling pathways. Additionally, purpurogallin reduced apoptosis via MAPK signaling pathways, as demonstrated using MAPK-p38, ERK, and JNK inhibitors. These results indicate that purpurogallin possesses antioxidant effects and protects cells from damage and apoptosis induced by UVB radiation and PM(2.5).
Antioxidants
;
Apoptosis Regulatory Proteins
;
Apoptosis
;
DNA
;
Humans
;
Keratinocytes
;
Oxidative Stress
;
Particulate Matter
;
Phenol
;
Reactive Oxygen Species
4.Niacinamide Protects Skin Cells from Oxidative Stress Induced by Particulate Matter
Ao Xuan ZHEN ; Mei Jing PIAO ; Kyoung Ah KANG ; Pincha Devage Sameera MADUSHAN FERNANDO ; Hee Kyoung KANG ; Young Sang KOH ; Joo Mi YI ; Jin Won HYUN
Biomolecules & Therapeutics 2019;27(6):562-569
Niacinamide (NIA) is a water-soluble vitamin that is widely used in the treatment of skin diseases. Moreover, NIA displays antioxidant effects and helps repair damaged DNA. Recent studies showed that particulate matter 2.5 (PM(2.5)) induced reactive oxygen species (ROS), causing disruption of DNA, lipids, and protein, mitochondrial depolarization, and apoptosis of skin keratinocytes. Here, we investigated the protective effects of NIA on PM(2.5)-induced oxidative stress in human HaCaT keratinocytes. We found that NIA could inhibit the ROS generation induced by PM(2.5), as well block the PM(2.5)-induced oxidation of molecules, such as lipids, proteins, and DNA. Furthermore, NIA alleviated PM(2.5)-induced accumulation of cellular Ca²⁺, which caused cell membrane depolarization and apoptosis, and reduced the number of apoptotic cells. Collectively, the findings show that NIA can protect keratinocytes from PM(2.5)-induced oxidative stress and cell damage.
Antioxidants
;
Apoptosis
;
Cell Membrane
;
DNA
;
Humans
;
Keratinocytes
;
Mitochondrial Proteins
;
Niacinamide
;
Oxidative Stress
;
Particulate Matter
;
Reactive Oxygen Species
;
Skin Diseases
;
Skin
;
Vitamins
5.7,8-Dihydroxyflavone Protects High Glucose-Damaged Neuronal Cells against Oxidative Stress.
Suk Ju CHO ; Kyoung Ah KANG ; Mei Jing PIAO ; Yea Seong RYU ; Pincha Devage Sameera Madushan FERNANDO ; Ao Xuan ZHEN ; Yu Jae HYUN ; Mee Jung AHN ; Hee Kyoung KANG ; Jin Won HYUN
Biomolecules & Therapeutics 2019;27(1):85-91
Oxidative stress is considered a major contributor in the pathogenesis of diabetic neuropathy and in diabetes complications, such as nephropathy and cardiovascular diseases. Diabetic neuropathy, which is the most frequent complications of diabetes, affect sensory, motor, and autonomic nerves. This study aimed to investigate whether 7,8-dihydroxyflavone (7,8-DHF) protects SH-SY5Y neuronal cells against high glucose-induced toxicity. In the current study, we found that diabetic patients exhibited higher lipid peroxidation caused by oxidative stress than healthy subjects. 7,8-DHF exhibits superoxide anion and hydroxyl radical scavenging activities. High glucose-induced toxicity severely damaged SH-SY5Y neuronal cells, causing mitochondrial depolarization; however, 7,8-DHF recovered mitochondrial polarization. Furthermore, 7,8-DHF effectively modulated the expression of pro-apoptotic protein (Bax) and anti-apoptotic protein (Bcl-2) under high glucose, thus inhibiting the activation of caspase signaling pathways. These results indicate that 7,8-DHF has antioxidant effects and protects cells from apoptotic cell death induced by high glucose. Thus, 7,8-DHF may be developed into a promising candidate for the treatment of diabetic neuropathy.
Antioxidants
;
Autonomic Pathways
;
Cardiovascular Diseases
;
Cell Death
;
Diabetes Complications
;
Diabetic Neuropathies
;
Glucose
;
Healthy Volunteers
;
Humans
;
Hydroxyl Radical
;
Lipid Peroxidation
;
Neurons*
;
Oxidative Stress*
;
Superoxides
6.Comparative Study of Autophagy in Oxaliplatin-Sensitive and Resistant SNU-C5 Colon Cancer Cells
Sun-Jin BOO ; Mei Jing PIAO ; Kyoung Ah KANG ; Ao Xuan ZHEN ; Pincha Devage Sameera Madushan FERNANDO ; Herath Mudiyanselage Udari Lakmini HERATH ; Seung Joo LEE ; Seung Eun SONG ; Jin Won HYUN
Biomolecules & Therapeutics 2022;30(5):447-454
Few studies have evaluated the role of autophagy in the development of oxaliplatin (OXT) resistance in colon cancer cells. In this study, we compared the role of autophagy between SNU-C5 colon cancer cells and OXT-resistant SNU-C5 (SNU-C5/OXTR) cells. At the same concentration of OXT, the cytotoxicity of OXT or apoptosis was significantly reduced in SNU-C5/OXTR cells compared with that in SNU-C5 cells. Compared with SNU-C5 cells, SNU-C5/OXTR cells exhibited low levels of autophagy. The expression level of important autophagy proteins, such as autophagy-related protein 5 (Atg5), beclin-1, Atg7, microtubule-associated proteins 1A/1B light chain 3B I (LC3-I), and LC3-II, was significantly lower in SNU-C5/OXTR cells than that in SNU-C5 cells. The expression level of the autophagy-essential protein p62 was also lower in SNU-C5/OXTR cells than in SNU-C5 cells. In SNUC5/OXTR cells, the production of intracellular reactive oxygen species (ROS) was significantly higher than that in SNU-C5 cells, and treatment with the ROS scavenger N-acetylcysteine restored the reduced autophagy levels. Furthermore, the expression of antioxidant-related nuclear factor erythroid 2-related factor 2 transcription factor, heme oxygenase-1, and Cu/Zn superoxide dismutase were also significantly increased in SNU-C5/OXTR cells. These findings suggest that autophagy is significantly reduced in SNU-C5/OXTR cells compared with SNU-C5 cells, which may be related to the production of ROS in OXT-resistant cells.