• Title/Summary/Keyword: Senescence (aging)

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Amount of Telomeric DNA on Lymphocytes in Senescence Mouse by Quantitative Fluorescence in situ Hybridization (노화촉진마우스의 텔로미어 함량 분석)

  • Lee, Mi-Rang;Do, Kyoung-Tag;Han, Jyung-Ju;Moon, So-Hyun;Kang, Han-Seok;Kim, Seon-Ku;Shin, Teak-Soon;Lee, Hong-Goo;Hwang, Dae-Yon;Kim, Yong-Gyun;Sohn, Sea-Hwan;Choi, Na-Eun;Kim, Byeong-Woo;Cho, Byung-Wook
    • Journal of Life Science
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    • v.19 no.10
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    • pp.1463-1467
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    • 2009
  • Telomeres, comprised of tandem repeats of TTAGGG sequences, are special nucleoprotein structures that protect and stabilize chromosome ends. These structures form the crux of the telomere concept of aging, senescence and genomic instability. The classic terminal restriction fragment (TRF) analysis to quantify the amount of telomeric DNA is disadvantageous in species containing ultra long telomeres like in mice (100Kb). In this study, we used a more sensitive quantitative fluorescence in situ hybridization (Q FISH) technique to quantify telomeric DNA, and used it as a biological aging marker in mice. 12 litters each of Senescence-Resistant (SAMR1) and -Prone (SAMP1) known as senescence accelerated mouse strains were purchased from Central Lab, Animal Inc. We quantified the amount of telomeric DNA using telomere specific DNA probes on the two strains of male mice at 8 weeks, 18 weeks and 26 weeks of age. The amount of telomeric DNA correlated with aging and age associated changes in body and organ weight between SAMR1 and SAMP1 strains of mice. These data suggest the usefulness of the amount of telomeric DNA as a biological aging marker in human aging studies.

Screening of Plants with Inhibitory Activity on Cellular Senescence

  • Lee, Seung-Eun;Kim, Jae-Ryong;Noh, Hyung-Jun;Kim, Geum-Sook;Lee, Jeong-Hoon;Choi, Jehun;Lee, Dae-Young;Kim, Seung-Yu
    • Korean Journal of Plant Resources
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    • v.27 no.6
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    • pp.601-609
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    • 2014
  • In this study, the effect of plant extract on the senescence action and cell survival rate in two types of cells, in which aging was derived by adriamycin, was analyzed to find the materials for suppressing cell senescence from natural resources. The results are as follows. For human umbilical vein endothelial cells (HUVECs), the fruit of Physalis angulata L. and the aerial part of Synurus deltoides (Aiton) Nakai showed excellent cell-senescence inhibition activities in a treatment concentration-dependent manner, demonstrating the high possibility for utilization as a material for prevention and treatment for vascular diseases. The water extract from the root of Polygonatum odoratum var. pluriflorum for variegatum Y. N. Lee showed potent cell-senescence inhibitory effect for human dermal fibroblasts (HDFs). Thus it is considered that the additional study on the plant needs for elucidating the possible utilization as material for skin health improvement.

Recent Trends on Telomerase Activators, Sirtuin Activators, and Senolytics as a Potential Anti-aging Agent (잠재적인 항노화제로 텔로머레이즈 활성화제, 서르튜언 활성화제, 세노릭틱스에 대한 최신 동향)

  • Kim, Moon-Moo
    • Journal of Life Science
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    • v.30 no.9
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    • pp.819-825
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    • 2020
  • All living organisms exhibit the characteristics of aging, such as skin wrinkle formation, muscle degeneration, cataracts, and hair graying as the number of aged cells increases over time. Senescence, which is known as a key cause of aging, is directly related to the aging of living organisms because cells are aged by external and internal factors and eventually cell proliferation is stopped. Senescence is caused by the gradual shortening of the telomere with cell division, and lifespan is determined by the length of the telomere. Recently, it has been found that the histone deacetylase, which can influence gene expression, is not only involved in yeast but also deeply involved in anti-aging mechanisms in both C. elegans and humans. It was also discovered that old cells play a decisive role in the aging phenomenon, and it has been reported that it is possible to promote the proliferation of young cells and delay aging by removing these senescent cells from the inside. Therefore, in order to develop potential anti-aging agents in the future, research should begin with an in-depth study of telomerase activators, sirtuin activators, and senolytics.

Melatonin Rescues Human Dental Pulp Cells from Premature Senescence Induced by H2O2

  • Park, Sera;Bak, Kwang Je;Ok, Chang Youp;Park, Hyun-Joo;Jang, Hye-Ock;Bae, Moon-Kyoung;Bae, Soo-Kyung
    • International Journal of Oral Biology
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    • v.42 no.3
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    • pp.91-97
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    • 2017
  • Although anti-aging activities of melatonin, a hormone secreted by the pineal gland, have been reported in senescence-accelerated mouse models and several types of cells, its impact and mechanism on the senescence of human dental pulp cells (HDPCs) remains unknown. In this study, we examined the impact of melatonin on cellular premature senescence of HDPCs. Here, we found that melatonin markedly inhibited senescent characteristics of HDPCs after exposure to hydrogen peroxide ($H_2O_2$), including the increase in senescence-associated ${\beta}$-galactosidase (SA-${\beta}$-gal)-positive HDPCs and the upregulation of p21 protein, an indicator for senescence. In addition, as melatonin attenuated $H_2O_2$-stimulated phosphorylation of c-Jun N-terminal kinase (JNK), while selective inhibition of JNK activity with SP600125 significantly attenuated $H_2O_2$-induced increase in SA-beta-gal activity. Results reveal that melatonin antagonizes premature senescence of HDPCs via JNK pathway. Thus, melatonin may have therapeutic potential to prevent stress-induced premature senescence, possibly correlated with development of dental pulp diseases, and to maintain oral health across the life span.

Sesaminol Glucosides Improve Cognitive Deficits and Oxidative Stress in SAMP8 Mice

  • Um, Min-Young;Choi, Won-Hee;Ahn, Ji-Yun;Kim, Su-Na;Kim, Mi-Kyung;Ha, Tae-Youl
    • Food Science and Biotechnology
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    • v.18 no.6
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    • pp.1311-1315
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    • 2009
  • The objective of this study was to investigate the effects of sesaminol glucosides (SG) on age-related cognitive deficits in senescence-accelerated mice P8 (SAMP8). Male SAMP8 (9 month-old) were randomly divided into 3 groups and received diets containing 0, 0.25, or 0.5% SG for 12 weeks. Step-through latency of the SAMP8 control group was higher than that of the senescence-accelerated resistant mice (SAMR) group, whereas it was lowered in the SG-supplemented group on the passive-avoidance test. In the Morris water maze, the escape latency of the SAMP8 control group was increased and recovered in the 0.5% SG-supplemented group. The SG supplementation significantly decreased thiobarbituric acid reactive substance (TBARS) levels in brains of the SAMP8. On the other hand, catalase, superoxide dismutase, and glutathione peroxidase activities in brains of the SG supplemented group decreased compared with the SAMP8 control group. These results suggest that SG could attenuate cognitive deficits caused by aging through its antioxidant capacity.

Can we rejuvenate? Implications of biological aging research (우리는 다시 젊어질 수 있는가? 생물학적 노화 연구의 시사점)

  • Son, Youlim;Kim, Jae-Ryong
    • Journal of Yeungnam Medical Science
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    • v.34 no.1
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    • pp.1-10
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    • 2017
  • The life history of man is summarized as a birth-aging-disease-death. Man eventually ages and dies. How long can humans live? What is aging? Why do we age? Is aging inevitable? Can we rejuvenate? Recent researches on biological aging suggest that humans might overcome aging and rejuvenate. In this paper, we review the biologic characteristics of aging and the latest results of biological aging research, implicating that aging can be controlled, further treated, and that humans can ultimately be rejuvenated.

Age-related Increase of Sister Chromatid Exchange Frequency in Bone Marrow Cells of Senescence Accelerated Mouse and Its Inhibition by Chronic Treatment of Ginseng

  • Lim, Heung-Bin;Sohn, Hyung-Ok;Lee, Young-Gu;Kim, Seung-Hyung;Lee, Dong-Wook
    • Toxicological Research
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    • v.11 no.2
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    • pp.261-266
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    • 1995
  • Age-related change in the frequency of spontaneous sister chromatid exchange (SCE) and chromosornal aberrations were investigated in bone marrow cells of accelerated senescence-resistant mice (SAM R1) and senescence accelerated ones (SAM P1). And the effect of chronic treatment of ginseng extract (Panax ginseng C.A. Meyer) on these chromosomal abnormalities was tested in SAM P1. SCE frequency in the cells was progressively increased with age in both mice, but it was consistently higher in SAM P1 than in SAM R1 at all corresponding age. Chromosomal aberrations were, however, not significantly changed with age except that it was slightly increased in only aged SAM P1. Interestingly, the rate of these genetic instabilities in SAM P1 was remarkably retarded by long-term administration of ginseng water extract (0.05% in drinking water). These results suggest that frequency of spontaneous SCE in bone marrow cells increase in parallel with senescence of the mice, and SAM P1 is in the condition of being more exposed than SAM R1 to DNA damaging factors. These also indicate that long-term treatment of ginseng may reduce the genetic damage.

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Implications of telomerase reverse transcriptase in tumor metastasis

  • Zou, Yongkang;Cong, Yu-sheng;Zhou, Junzhi
    • BMB Reports
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    • v.53 no.9
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    • pp.458-465
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    • 2020
  • Metastasis is the main culprit of the great majority of cancerrelated deaths. However, the complicated process of the invasion-metastasis cascade remains the least understood aspect of cancer biology. Telomerase plays a pivotal role in bypassing cellular senescence and sustaining the cancer progression by maintaining telomere homeostasis and genomic integrity. Telomerase reverse transcriptase (TERT) exerts a series of fundamental functions that are independent of its enzymatic cellular activity, including proliferation, inflammation, epithelia-mesenchymal transition (EMT), angiogenesis, DNA repair, and gene expression. Accumulating evidence indicates that TERT may facilitate most steps of the invasion-metastasis cascade. In this review, we summarize important advances that have revealed some of the mechanisms by which TERT facilitates tumor metastasis, providing an update on the non-canonical functions of telomerase beyond telomere maintaining.

High Ambient Temperature Accelerates Leaf Senescence via PHYTOCHROME-INTERACTING FACTOR 4 and 5 in Arabidopsis

  • Kim, Chanhee;Kim, Sun Ji;Jeong, Jinkil;Park, Eunae;Oh, Eunkyoo;Park, Youn-Il;Lim, Pyung Ok;Choi, Giltsu
    • Molecules and Cells
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    • v.43 no.7
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    • pp.645-661
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    • 2020
  • Leaf senescence is a developmental process by which a plant actively remobilizes nutrients from aged and photosynthetically inefficient leaves to young growing ones by disassembling organelles and degrading macromolecules. Senescence is accelerated by age and environmental stresses such as prolonged darkness. Phytochrome B (phyB) inhibits leaf senescence by inhibiting phytochrome-interacting factor 4 (PIF4) and PIF5 in prolonged darkness. However, it remains unknown whether phyB mediates the temperature signal that regulates leaf senescence. We found the light-activated form of phyB (Pfr) remains active at least four days after a transfer to darkness at 20℃ but is inactivated more rapidly at 28℃. This faster inactivation of Pfr further increases PIF4 protein levels at the higher ambient temperature. In addition, PIF4 mRNA levels rise faster after the transfer to darkness at high ambient temperature via a mechanism that depends on ELF3 but not phyB. Increased PIF4 protein then binds to the ORE1 promoter and activates its expression together with ABA and ethylene signaling, accelerating leaf senescence at high ambient temperature. Our results support a role for the phy-PIF signaling module in integrating not only light signaling but also temperature signaling in the regulation of leaf senescence.