• 제목/요약/키워드: biological macromolecules

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How Environmental Agents Influence the Aging Process

  • Karol, Meryl H.
    • Biomolecules & Therapeutics
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    • 제17권2호
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    • pp.113-124
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    • 2009
  • Aging is a multifaceted biological process that affects all organs and organ systems of the body. This review provides an up-to-date analysis of this highly exciting, rapidly changing field of science. The aging process is largely under genetic control but is highly responsive to diverse environmental influences. The genes that control aging are those that are involved with cell maintenance, cell damage and repair. The environmental factors that accelerate aging are those that influence either damage of cellular macromolecules, or interfere with their repair. Prominent among these are chronic inflammation, chronic infection, some metallic chemicals, ultraviolet light, and others that heighten oxidative stress. Other environment factors slow the aging process. Included among these agents are resveratrol and vitamin D. In addition, dietary restriction and exercise have been found to extend human lifespan. The various mechanisms whereby all these agents exert their influence on aging include epigenetic modification, chromatin maintenance, protection of telomeres, and anti-oxidant defense, among others. The complex process of aging remains under continued, intense investigation.

노루궁뎅이 버섯균사체를 이용한 비타민나무 발효물이 생체고분자의 산화적 변형과 세포사멸에 미치는 보호 영향 (Protective Effects of Sea Buckthorn (Hippophae rhamnoides L.) Leaves Fermented with Hericium erinaceum Mycelium against Oxidative Modification of Biological Macromolecules and Cell Death)

  • 김승섭;경인구;이미라;김동구;신지영;양진이;이광호;음원식;강정훈
    • 한국식품영양과학회지
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    • 제44권1호
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    • pp.35-43
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    • 2015
  • 본 연구에서는 노루궁뎅이 버섯균사체를 비타민나무 잎에 배양하여 조제한 노루궁뎅이 버섯균사체-비타민나무 발효물 열수 추출물이 생체고분자의 산화적 손상과 세포사멸을 보호할 수 있는지를 관찰하였다. 노루궁뎅이 버섯균사체-비타민나무 발효물의 항산화 활성을 DPPH radical, ABTS radical, peroxyl radical 소거활성 측정을 통해 알아보았다. 그 결과 노루궁뎅이 버섯균사체-비타민나무 발효물을 처리한 DPPH radical 소거활성은 $500{\mu}g/mL$ 농도에서 65.06%, ABTS radical 소거활성은 $50{\mu}g/mL$ 농도에서 98.83%, peroxyl radical 소거활성은 $100{\mu}g/mL$ 농도에서 44.03%로 높은 항산화 활성을 나타내었다. 노루궁뎅이 버섯균사체-비타민나무 발효물은 DNA의 산화적 손상을 효과적으로 억제하였다. 노루궁뎅이 버섯균사체-비타민나무 발효물 역시 사람의 혈청단백질과 Cu,Zn-SOD의 산화적 손상을 억제하였다. 세포에 $H_2O_2$를 처리하였을 때 세포생존율에 비하여 발효물을 $100{\mu}g/mL$ 농도로 전 처리한 세포생존율은 21.59% 높게 증가되었다. 또한 발효물을 $50{\mu}g/mL$ 농도로 처리했을 경우 세포 내 ROS의 축적이 유의적으로 감소되었다. 따라서 노루궁뎅이 버섯균사체-비타민나무 발효물은 항산화 활성뿐만 아니라 산화적 스트레스에 의해 야기되는 세포 독성에 대한 보호 작용이 뛰어난 것으로 사료된다.

노화의 기전과 예방 (Mechanism of aging and prevention)

  • 김재식
    • IMMUNE NETWORK
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    • 제1권2호
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    • pp.104-108
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    • 2001
  • Aging is a senescence and defined as a normal physiologic and structural alterations in almost all organ systems with age. As Leonard Hayflick, one of the first gerontologists to propose a theory of biologic aging, indicated that a theory of aging or longevity satisfies the changes of above conditions to be universal, progressive, intrinsic and deleterious. Although a number of theories have been proposed, it is now clear that cell aging (cell senescence) is multifactorial. No single mechanism can account for the many varied manifestations of biological aging. Many theories have been proposed in attempt to understand and explain the process of aging. Aging is effected in individual by genetic factors, diet, social conditions, and the occurrence of age-related diseases as diabetes, hypertension, and arthritis. It involves an endogenous molecular program of cellular senescence as well as continuous exposure throughout life to adverse exogenous influences, leading to progressive infringement on the cell's survivability so called wear and tear. So we could say the basic mechanism of aging depends on the irreversible and universal processes at cellular and molecular level. The immediate cause of these changes is probably an interference in the function of cell's macromolecules-DNA, RNA, and cell proteins-and in the flow of information between these macromolecules. The crucial questions, unanswered at present, concerns what causes these changes in truth. Common theories of aging are able to classify as followings for the easy comprehension. 1. Biological, 1) molecular theories - a. error theory, b. programmed aging theory, c. somatic mutation theory, d. transcription theory, e. run-out-of program theory, 2) cellular theories - a. wear and tear theory, b. cross-link theory, c. clinker theory, d. free radical theory, e. waste product theory, 3) system level theory-a. immunologic/autoimmune theory, 4) others - a. telomere theory, b. rate of living theory, c. stress theory, etc. Prevention of aging is theoretically depending on the cause or theory of aging. However no single theory is available and no definite method of delaying the aging process is possible by this moment. The most popular action is anti-oxidant therapy using vitamin E and C, melatonin and DHEA, etc. Another proposal for the reverse of life-span is TCP-17 and IL-16 administration from the mouse bone marrow B cell line study for the immunoglobulin VDJ rearrangement with RAG-1 and RAG-2. Recently conclusional suggestion for the extending of maximum life-span thought to be the calory restriction.

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인진쑥 노루궁뎅이 버섯균사체 발효물의 항산화 활성 (Antioxidative activities of Artemisia capillaris-Fermented Hericium erinaceum Mycelium)

  • 김승섭;경인구;이미라;김동구;신지영;양진이;이광호;음원식;강정훈
    • 한국응용과학기술학회지
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    • 제31권4호
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    • pp.719-730
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    • 2014
  • 노루궁뎅이 버섯균사체(Hericium erinaceum)를 인진쑥(Artemisia capillaris)에 배양하여 조제한 AC-HE 열수 추출물이 생체고분자의 산화적 손상과 세포사멸을 보호할 수 있는 지를 관찰하였다. AC-HE의 항산화 활성을 DPPH radical, ABTS radical, peroxyl radical 소거활성 측정을 통해 알아보았다. 그 결과 DPPH radical 소거활성은 $500{\mu}g/mL$ 농도에서 61.73%, ABTS radical 소거활성은 $250{\mu}g/mL$ 농도에서 97.39%, peroxyl radical 소거활성은 $100{\mu}g/mL$ 농도에서 44.18%로 나타났다. AC-HE은 DNA의 산화적 손상을 효과적으로 억제하였다. 또한 생체고분자물질인 사람의 혈청단백질의 산화적 손상을 억제하였다. 세포에 $H_2O_2$를 처리하였을 때 세포생존율에 비하여 발효물을 $100{\mu}g/mL$ 농도로 전 처리한 세포생존율은 11.47% 증가했으며, 발효물을 $50{\mu}g/mL$ 농도로 처리했을 경우 세포내 ROS의 축적이 유의적으로 감소되었다. 따라서 AC-HE은 항산화 활성뿐만 아니라 산화적 스트레스에 의해 야기되는 세포 독성에 대한 보호 작용이 뛰어난 것으로 사료되었다.

Cytocompatibility of silkworm cocoon layer extracts

  • Jo, You-Young;Kim, Sung-Kuk;Lee, Kwang-Gill;Bae, Sung Min;Kim, Jong-Ho;Shin, Bong-Seob;Jeon, Jong-Young;Kweon, HaeYong
    • International Journal of Industrial Entomology and Biomaterials
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    • 제33권2호
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    • pp.96-102
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    • 2016
  • Recently silk polymer produced by Bombyx mori silkworm has been considered as biological macromolecules. Silk polymer was extracted in PBS solution at $37^{\circ}C$ for 72 h or $72^{\circ}C$ for 24 h. The effect of EtOH treatment on the cocoon extraction was also examined. The extraction yield of cocoon was less than 1 wt% regardless of extraction conditions. UV spectroscopy showed that the experimental extracts have absorption bands at 280 nm. There is no cytotoxicity effect on the mouse fibroblast L929 cell. The phenotype of L929 cell was not changed under the experimental conditions. The proliferation behavior of L929 cell was not affected by the addition of cocoon extract. Therefore, cocoon extract might be cytocompatible and can be used as promising biomaterials.

재조합 GG1234-DsRed 융합 단백질의 생산 및 In vitro 탄산칼슘 결정화에 미치는 영향에 대한 연구 (Production of Recombinant GG1234-DsRed Fusion Protein and Its Effect on in vitro CaCO3 Crystallization)

  • 손채연;김진호;김지하;최유성
    • KSBB Journal
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    • 제30권6호
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    • pp.296-301
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    • 2015
  • Eggshell-based biocomposites have become attractive due to their exquisite nanostructure and biological properties, which are mainly composed of highly organized calcium carbonate crystals controlled by organic macromolecules such as proteins and polysaccharides. Here, we designed the recombinant fusion protein of a putative eggshell matrix protein named as GG1234 and a fluorescent reporter protein of DsRed. The protein was successfully over-expressed in E. coli and purified by Ni-NTA affinity chromatography. In vitro calcium carbonate crystallization was conducted in the presence of the fusion protein, and morphological change was investigated. The protein inhibited the calcite growth in vitro, and spherical calcium carbonate micro-particles with the diameter of about $20-30{\mu}m$ were obtained. We expect that this study would be helpful for better understanding of eggshell-based biomineralization.

Fluorescence Microscopy of Condensed DNA Conformations of Bacterial Cells

  • Suleymanoglu, Erhan
    • Journal of Microbiology
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    • 제40권4호
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    • pp.319-326
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    • 2002
  • Cellular DNA in prokaryotes is organized in nucleic acid-protein self-assemblies referred to as the nucleoid. The physical forces responsible for its stability inside the poor solvent properties of the cytoplasm and their functional implications are not understood. Studies on the organisation and functioning of the cytosol of cells largely rely on experimental protocols performed in highly dilute solutions using biochemically purified molecules, which is not a reliable substitute for the situation existing in vivo. Our current research interest is focused on the characterization of biological and physical forces determining the compaction and phase separation of DNA in Escherichia coli cytoplasm. We have emphasized the effect of excluded volume in solutions with high macromolecular concentrations (macromolecular crowding) upon self-association patterns of reactions. The prokaryotic cytosol was simulated by addition of inert polymer polyethylene glycol (PEG) (average molecular weight 20000), as an agent which afterwards facilitates the self-association of macromolecules. Fluorescence microscopy was used for direct visualization of nucleoids in intact cells, after staining with DAPI (4',6-diamidino-2-phenylindole dihydrochloride). Addition of the crowding agent PEG 20,000, in increasing concentrations generated progressively enhanced nucleoid compaction, the effect being stronger in the presence of 0.2 M NaCl and 5 mM MgCl$\_$2/. Under these conditions, the nucleoids were compacted to volumes of around 2 ㎛$\^$3/ or comparable sizes with that of living cells.

Macromolecular and Elemental Composition Analyses of Leuconostoc mesenteroides ATCC 8293 Cultured in a Chemostat

  • Bang, Jeongsu;Li, Ling;Seong, Hyunbin;Kwon, Ye Won;Jeong, Eun Ji;Lee, Dong-Yup;Han, Nam Soo
    • Journal of Microbiology and Biotechnology
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    • 제27권5호
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    • pp.939-942
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    • 2017
  • The cellular composition and metabolic compounds of Leuconostoc mesenteroides ATCC 8293 were analyzed after cultivation in an anaerobic chemostat. The macromolecular composition was 24.4% polysaccharide, 29.7% protein, 7.9% lipid, 2.9% DNA, and 7.4% RNA. Its amino acid composition included large amounts of lysine, glutamic acid, alanine, and leucine. Elements were in the order of C > O > N > H > S. The metabolites in chemostat culture were lactic acid (73.34 mM), acetic acid (7.69 mM), and mannitol (9.93 mM). These data provide a first view of the cellular composition of L. mesenteroides for use in metabolic flux analysis.

In vitro cytotoxicity and in vivo acute toxicity of selected polysaccharide hydrogels as pharmaceutical excipients

  • Kulkarni GT;Gowthanarajan K;Raghu C;Ashok G;Vijayan P
    • Advances in Traditional Medicine
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    • 제5권1호
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    • pp.29-36
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    • 2005
  • Polysaccharide hydrogels constitute a structurally diverse class of biological macromolecules with a wide range of physicochemical properties. They also constitute important members of the family of industrial water-soluble polymers. They find application in Pharmacy as binders, disintegrants, suspending, emulsifying and sustaining agents. According to the International Pharmaceutical Excipients Council (IPEC), an excipient must have an established safety profile. Hence, in the present study, in vitro cytotoxicity on Vero and HEp-2 cell lines, and in vivo acute toxicity in rats were carried out to establish the safety of polysaccharide hydrogels from the seeds of Plantago ovata and Ocimum basilicum. The in vitro cytotoxicity was determined by MTT and SRB assays. In the in vivo acute toxicity, the effects of three different doses of hydrogels (100, 200 and 400 mg/kg body weight) on food and water intake, body weight, biochemical and hematological parameters were studied. The results of in vitro did not show any cytotoxicity on both the cell lines used. In the in vivo acute toxicity, the hydrogels did not show any toxic symptoms in all three dose levels. This establishes the safety of the selected hydrogels. Hence, they can be used as excipients in pharmaceutical dosage forms.

Evaluate of Electrochemical Characteristics in Electrolyzed Reduced Water

  • Park, Sung-Ho;Yun, Su-Jin;Kim, Jeong-Sik;Shin, Hyun-Su;Park, Soo-Gil
    • Journal of Electrochemical Science and Technology
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    • 제2권2호
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    • pp.85-90
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    • 2011
  • Active oxygen species or free radicals are considered to cause extensive oxidative damage to biological macromolecules, which brings about a variety of diseases as well as aging. Electrolyzed reduced water(ERW) has been regarded as a ideal antioxidative agent in recent years. ERW is produced by passing a diluted salt solution through an electrolytic cell, within which the anode and cathode are separated by membrane. It can be produced reactive materials in ERW near the cathode during the electrolysis of water. ERW have the following advantages over other traditional cleaning agents: effective antioxidative agent, easy preparation, inexpensive, and environmentally friendly. The main advantage of ERW is its safety and antioxidative effect. ERW with strong reducing potential can be used to remove dirt and grease from items such as cutting boards and other kitchen utensils. The primary aim of this study is the activation mechanism of oxidation reduction potentials, ion conductivity, pH, and electrochemical properties with reactive materials in ERW.