• 제목/요약/키워드: Metabolic Response

검색결과 448건 처리시간 0.023초

Effect of Chromium Stress on Antioxidative Enzymes and Malondialdehyde Content Activities in Leaves and Roots of Mangrove Seedlings Kandelia Candel (L.) Druce

  • Rahman, Mohammed Mahabubur;Rahman, Motiur M.;Islam, Kazi Shakila;Chongling, Yan
    • Journal of Forest and Environmental Science
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    • 제26권3호
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    • pp.171-179
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    • 2010
  • Effect of chromium (Cr) stress on antioxidant enzyme activities and malondialdehyde (MDA) content were investigated in leaves and roots of mangrove (italic (L.) Druce) seedlings. Cr toxicity effects were also assessed on young seedlings. The seedlings were grown in green house condition for three months in nutrient solution with 0, 0.5, 1, 1.5, 2, 2.5, and 3 mg $L^{-1}$ $CrCl_3$. This study showed that Cr led to the change of antioxidant enzymes such as superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT) and activities at different concentrations. The activity of antioxidant enzymes in leaves of K. candel seedlings indicates that enzymes engaged in antioxidant defense in certain level especially in low concentration of Cr treatments. The activities of SOD and POD were activated by Cr in the root level, while CAT activity was inhibited. CAT activity decreased in response to high concentrations of Cr. In the present study indicated that SOD in root was active in scavenging the superoxide produced by Cr. Both in roots and leaves, an increase in malondialdehyde (MDA) content was observed with increase in metal concentration and exposure periods. Our finding indicated that the high concentration of excessive Cr supply may interfere with several metabolic processes of seedlings, causing toxicity to plants as exhibited by chlorosis, necrosis, photosynthetic impairing and finally, plant death.

Mitochondria in reproduction

  • Min-Hee Kang;Yu Jin Kim;Jae Ho Lee
    • Clinical and Experimental Reproductive Medicine
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    • 제50권1호
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    • pp.1-11
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    • 2023
  • In reproduction, mitochondria produce bioenergy, help to synthesize biomolecules, and support the ovaries, oogenesis, and preimplantation embryos, thereby facilitating healthy live births. However, the regulatory mechanism of mitochondria in oocytes and embryos during oogenesis and embryo development has not been clearly elucidated. The functional activity of mitochondria is crucial for determining the quality of oocytes and embryos; therefore, the underlying mechanism must be better understood. In this review, we summarize the specific role of mitochondria in reproduction in oocytes and embryos. We also briefly discuss the recovery of mitochondrial function in gametes and zygotes. First, we introduce the general characteristics of mitochondria in cells, including their roles in adenosine triphosphate and reactive oxygen species production, calcium homeostasis, and programmed cell death. Second, we present the unique characteristics of mitochondria in female reproduction, covering the bottleneck theory, mitochondrial shape, and mitochondrial metabolic pathways during oogenesis and preimplantation embryo development. Mitochondrial dysfunction is associated with ovarian aging, a diminished ovarian reserve, a poor ovarian response, and several reproduction problems in gametes and zygotes, such as aneuploidy and genetic disorders. Finally, we briefly describe which factors are involved in mitochondrial dysfunction and how mitochondrial function can be recovered in reproduction. We hope to provide a new viewpoint regarding factors that can overcome mitochondrial dysfunction in the field of reproductive medicine.

인공감미료 섭취가 비만에 미치는 영향 (The Effect of Artificial Sweetener Use on Obesity)

  • 황주삼
    • 비만대사연구학술지
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    • 제2권2호
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    • pp.45-53
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    • 2023
  • Despite the emergence of obesity as a significant public health concern, artificial sweeteners have made their way into various food products due to the perception, that they serve as substitutes for sugar. Artificial sweeteners are used to supposedly achieve weight management and health improvement. However, their efficacy and safety remain debatable. Commonly used artificial sweeteners include aspartame, acesulfame potassium, saccharin, and sucralose. This article discusses the effects of artificial sweetener consumption on weight loss, appetite regulation, blood glucose control, and gut microbiota. Research findings, concerning the consumption of artificial sweeteners and their association with body weight, have shown inconsistencies between randomized controlled trials and cohort studies. Studies, comparing artificial sweeteners to sugar, have reported no significant differences in satiety. Although artificial sweeteners have no calories, they can affect blood sugar levels through the cephalic phase insulin response. A recent study suggested that artificial sweeteners influenced the occurrence of diabetes. Due to limitations in the study design, excluding diabetes-influencing factors was not feasible. The evidence showed that artificial sweeteners harbored potential health risks, necessitating further investigation. According to recent studies, the consumption of artificial sweeteners was associated with gut microbiota changes and individual blood sugar responses. It is important to note that artificial sweeteners cannot be considered safe alternatives to sugar, and further research is required.

Application of bio-preservation to enhance food safety: A review

  • Nethma Samadhi Ranathunga;Kaushalya Nadeeshani Wijayasekara;Edirisinghe Dewage Nalaka Sandun Abeyrathne
    • 한국식품저장유통학회지
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    • 제30권2호
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    • pp.179-189
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    • 2023
  • Consumers and industry experts frequently have negative perceptions of most chemical preservatives. Although most people concede that they cannot resolve global food waste issues without preservatives, they prefer products without chemical preservatives. Numerous emerging technologies is now surpassing conventional methods for mitigating microbial food deterioration in response to consumer demand and fundamental health and safety considerations, including biological antimicrobial systems such as using food-grade microorganisms and their metabolites primarily originating from microorganisms, plants, and animals. Microbial compounds, including bacteriocins, bacteriophages, and anti-fungal agents, plant extracts such as flavonoids and essential oils; and animal-originated compounds, such as lysozyme, chitosan, and lactoferrin, are considered some of the major bio-preservatives. These natural compounds can be used alone or with other preservatives to improve food safety. Hence, the use of microbes or their metabolic byproducts to extend the shelf life of foods while maintaining safety standards is known as bio-preservation. To manufacture and consume foods in a safe condition, this review primarily aims to broaden knowledge amongst industry professionals and consumers regarding bio-preservation techniques, bio-preservatives, their classifications, and distinctive mechanisms to enhance food safety.

Genistein alleviates pulmonary fibrosis by inactivating lung fibroblasts

  • Seung-hyun Kwon;Hyunju Chung;Jung-Woo Seo;Hak Su Kim
    • BMB Reports
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    • 제57권3호
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    • pp.143-148
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    • 2024
  • Pulmonary fibrosis is a serious lung disease that occurs predominantly in men. Genistein is an important natural soybean-derived phytoestrogen that affects various biological functions, such as cell migration and fibrosis. However, the antifibrotic effects of genistein on pulmonary fibrosis are largely unknown. The antifibrotic effects of genistein were evaluated using in vitro and in vivo models of lung fibrosis. Proteomic data were analyzed using nano-LC-ESI-MS/MS. Genistein significantly reduced transforming growth factor (TGF)-β1-induced expression of collagen type I and α-smooth muscle actin (SMA) in MRC-5 cells and primary fibroblasts from patients with idiopathic pulmonary fibrosis (IPF). Genistein also reduced TGF-β1-induced expression of p-Smad2/3 and p-p38 MAPK in fibroblast models. Comprehensive protein analysis confirmed that genistein exerted an anti-fibrotic effect by regulating various molecular mechanisms, such as unfolded protein response, epithelial mesenchymal transition (EMT), mammalian target of rapamycin complex 1 (mTORC1) signaling, cell death, and several metabolic pathways. Genistein was also found to decrease hydroxyproline levels in the lungs of BLM-treated mice. Genistein exerted an anti-fibrotic effect by preventing fibroblast activation, suggesting that genistein could be developed as a pharmacological agent for the prevention and treatment of pulmonary fibrosis.

사료 중 미역은 복강내 LPS 주입 육계 병아리에서 영양소 대사, 항산화계 및 면역 반응을 조정한다 (Dietary Brown Seaweed Modulates Nutrient Metabolism, Anti-oxidant System and Immune Response in Broiler Chicks Injected LPS i.p.)

  • 박인경;임진택;최도열;고태송
    • Journal of Animal Science and Technology
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    • 제50권2호
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    • pp.185-198
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    • 2008
  • 급성기 반응 중인 육계 병아리에서 미역 2.0% 사료가 영양소 대사, 항산화 효소활성 및 세포성 면역에 미치는 영향이 조사 되었다. 갓 부화한 숫 육계 병아리(Ross)는 4주간의 실험 사육기간에 미역 0.0%(기초) 및 2.0% 사료를 급여하고, 8, 10, 및 12일령에 Salmonella typhymurium lipopolysaccharide(LPS)를 복강내 주입하여 급성기 반응을 활성화 하였다. 실험사육 전기간을 통한 생산성은 사료 중 미역 함량이나 급성기 반응 또는 그 경험의 영향이 없었다. 대조(정상) 병아리에 비하여, 급성기 반응은 미역 2.0% 사료에서 일당 증체량에 영향이 없었으나, 혈장 과산화물 분해효소, 세포외액 SOD(EcSOD) (p<0.05), 적혈구 MnSOD와 CuZnSOD 활성을 높이고, 그리고 사료 중 미역 함량과 관계없이 대사체중(kg0.75) 당 NB와 ME이용량를 낮추고 TNF-α와 ovotransferrin 활성을 높였다. 미역 0.0% 사료에 비하여, 미역 2.0% 사료는, 급성기 반응과 관계없이 kg0.75 당 NB를 증가시켰고, 급성기 반응 중에는 kg0.75당 UAN 배설에 영향이 없었으나, 혈장 과산화물 농도와 적혈구 세포액의 과산화물 분해효소와 MnSOD(p<0.05) 활성을 낮추고 혈장 과산화물 분해효소와 EcSOD 활성은 높이고(p<0.05), 4주령 병아리에서 LPS 자극 PBMC에서 분비한 IL-1 활성을 증가시켰다.(주 단어:미역, LPS, 단백질과 에너지대사, 항산화계, 친염증성 사이토카인, PBMC, 육계 병아리)

Effects of deoxynivalenol- and zearalenone-contaminated feed on the gene expression profiles in the kidneys of piglets

  • Reddy, Kondreddy Eswar;Lee, Woong;Jeong, Jin young;Lee, Yookyung;Lee, Hyun-Jeong;Kim, Min Seok;Kim, Dong-Woon;Yu, Dongjo;Cho, Ara;Oh, Young Kyoon;Lee, Sung Dae
    • Asian-Australasian Journal of Animal Sciences
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    • 제31권1호
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    • pp.138-148
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    • 2018
  • Objective: Fusarium mycotoxins deoxynivalenol (DON) and zearalenone (ZEN), common contaminants in the feed of farm animals, cause immune function impairment and organ inflammation. Consequently, the main objective of this study was to elucidate DON and ZEN effects on the mRNA expression of pro-inflammatory cytokines and other immune related genes in the kidneys of piglets. Methods: Fifteen 6-week-old piglets were randomly assigned to three dietary treatments for 4 weeks: control diet, and diets contaminated with either 8 mg DON/kg feed or 0.8 mg ZEN/kg feed. Kidney samples were collected after treatment, and RNA-seq was used to investigate the effects on immune-related genes and gene networks. Results: A total of 186 differentially expressed genes (DEGs) were screened (120 upregulated and 66 downregulated). Gene ontology analysis revealed that the immune response, and cellular and metabolic processes were significantly controlled by these DEGs. The inflammatory stimulation might be an effect of the following enriched Kyoto encyclopedia of genes and genomes pathway analysis found related to immune and disease responses: cytokine-cytokine receptor interaction, chemokine signaling pathway, toll-like receptor signaling pathway, systemic lupus erythematosus (SLE), tuberculosis, Epstein-Barr virus infection, and chemical carcinogenesis. The effects of DON and ZEN on genome-wide expression were assessed, and it was found that the DEGs associated with inflammatory cytokines (interleukin 10 receptor, beta, chemokine [C-X-C motif] ligand 9, CXCL10, chemokine [C-C motif] ligand 4), proliferation (insulin like growth factor binding protein 4, IgG heavy chain, receptor-type tyrosine-protein phosphatase C, cytochrome P450 1A1, ATP-binding cassette sub-family 8), and other immune response networks (lysozyme, complement component 4 binding protein alpha, oligoadenylate synthetase 2, signaling lymphocytic activation molecule-9, ${\alpha}$-aminoadipic semialdehyde dehydrogenase, Ig lambda chain c region, pyruvate dehydrogenase kinase, isozyme 4, carboxylesterase 1), were suppressed by DON and ZEN. Conclusion: In summary, our results indicate that high concentrations of DON and ZEN suppress the inflammatory response in kidneys, leading to potential effects on immune homeostasis.

새로운 CPS1 유전자 돌연변이에 의한 신생아형 carbamoyl phosphate synthetase 1 결핍 1례 (A Case of Lethal Neonatal Type Carbamoyl Phosphate Synthetase 1 Deficiency with Novel Mutation of CPS1)

  • 서승현;김유미;변신연;손승국;김성헌;김형태;김구환;유한욱
    • 대한유전성대사질환학회지
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    • 제16권2호
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    • pp.109-114
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    • 2016
  • Carbamoyl phosphate synthetase 1 (CPS1) 결핍은 상염색체 열성 유전을 하는 매우 드문 유전질환으로, 요소 회로의 첫 번째 효소인 carbamoyl phosphate synthetase의 결핍에 의해 고암모니아혈증을 유발한다. CPS1 결핍은 신생아시기부터 성인까지 다양한 시기에 고암모니아혈증이 발현될 수 있으나 대부분 신생아 시기의 치명적인 고암모니아혈증으로 발현하여 예후가 불량하며 응급 투석 및 집중 치료가 필요하다. 본 증례는 드문 유전 질환인 CPS1 결핍 신생아에서 새로운 CPS1 유전자의 돌연변이를 발견하였고 조직적인 팀 접근을 통해 심각한 고암모니아혈증에 대한 신속한 투석 및 집중 치료를 시행하여 심한 뇌 병변 및 사망을 예방하고 양호한 경과를 보였음을 보고하는 바이다.

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색소 과다 침착만으로 조기 발견한 소아 부신백질이영양증 1례

  • 박선형;홍용희
    • 대한유전성대사질환학회지
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    • 제14권2호
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    • pp.195-199
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    • 2014
  • X 연관 부신백질이영양증(adrenoleukodystrophy, X-ALD)는 성염색체 Xq28에 위치한 ABCD1 유전자의 돌연변이에 의해 발생하며, 매우 긴 사슬 지방산(saturated very long chain fatty acids, VLCFA) 운반의 장애로 뇌와 척수의 백질과 부신 피질을 포함한 모든 조직에 VLCFA가 쌓이게 되어 중추와 말초 신경 조직 내에 탈수초(demyelination)가 진행되고, 부신 피질의 기능 저하가 나타나게 된다. X-ALD의 임상적 증상은 매우 다양하나, 크게 3가지 표현형으로 나누어 대뇌 부신백질형성 장애(cerebral ALD), 부신 척수 신경병증(adrenomyeloneuropathy), 부신 피질 기능 저하 즉 애디슨병(Addison's disease only ALD)으로 나눌 수 있다2). 부신 피질 기능 저하 증세만을 보이는 Addison's disease only ALD의 경우 주로 2세에서 7.5세에 발생하며, 증세는 구토, 위약, 혼수, ACTH 분비 증가에 따른 색소 과다 침착(hyperpigmentation)으로 나타나고 발생 당시에는 신경학적 증세가 동반되지 않는다. 저자들은 구역, 구토, 탈수, 저혈당 및 저혈압 등의 증상 없이 색소 과다 침착이 부신 피질 기능 저하의 유일한 증세였던 환아를 혈장 VLCFA 검사를 통해 X-ALD로 진단하였고, ABCD1 유전자 분석 검사에서 c.1992-2A>G 변이를 확인하였다. 국내에서 색소 과다 침착만을 보이는 환아가 X-ALD로 진단받은 보고는 찾을 수 없었으며, 국내에서 보고되지 않은 돌연변이로 이를 보고하는 바이다. X-ALD 환아의 장기적인 예후 예측과 자세한 상담을 위해서 유전자형과 표현형의 상관관계에 대한 더 많은 연구가 필요하며, 이를 위해 유전자형에 따른 증상과 예후에 대한 자료가 공유되어야 할 것이다.

신생아 후기에 증상을 발현하여 비교적 양호한 예후를 보이는 Carbamoyl Phosphate Synthetase 1 Deficiency 1례 (A Case of Carbamoyl Phosphate Synthetase 1 Deficiency with a Relatively Good Prognosis Presented in the Late Neonatal Period)

  • 박에스더;김민선;송아리;임민지;장자현;김지혜;조성윤;진동규
    • 대한유전성대사질환학회지
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    • 제18권1호
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    • pp.23-29
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    • 2018
  • Carbamoyl phosphate synthetase 1 (CPS1) 결핍은 고암모니아혈증을 특징으로 하는 요소 회로 이상 질환 중 하나로 상염색체 열성으로 유전되며 2q35 염색체에 존재하는 CPS1 유전자 변이로 인해 발생된다. CPS1 결핍은 발병 연령에 따라 신생아형과 신생아기 이후에 발생하는 지연형으로 나뉜다. CPS1 결핍의 임상 양상의 중증도는 주로 효소 활성 결핍의 정도에 따라 다를 수 있으며, 고암모니아혈증으로 신경 기능 이상 및 장애를 초래하게 된다. 본 증례는 생후 25일 즈음 구토, 의식 저하, 고암모니아혈증을 보여 시행한 생화학적, 분자유전학적 검사(targeted gene panel sequencing)를 통해 CPS1 결핍을 진단하였다. 수액 치료, 관장, 소듐 벤조에이트 치료로 고암모니아혈증 및 임상 양상 호전 보여 응급 투석을 시행하지 않았으며 생후 17개월까지 관찰한 결과 고암모니아혈증의 재발없이 성장과 발달 및 신경학적 예후가 좋음을 보고하는 바이다.

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