• Title/Summary/Keyword: immunological function

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Isolation of Mitogenic Glycophosphopeptides from Cheese Whey Protein Concentrate (유청 단백질에서 유도되는 생리활성 펩타이드에 관한 연구)

  • Yun, Sung-Seob
    • Journal of Dairy Science and Biotechnology
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    • v.15 no.1
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    • pp.33-44
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    • 1997
  • We investigated the immunological function of cheese whey protein concentrate (CWPC), which is a by-product of cheese production, using mitogenic activity in murine splenocytes as an index. A fraction isolated by gel filtration and anion exchange chromatography of CWPC showed high mitogenic activity, comparable to the activity of lipopolysaccharide (LPS). The fraction was detected as a single band on SDS-PAGE. It contained calcium, inorganic phosphorus, and carbo-hydrate, indicating the active component to be a glycophosphopeptide (GPP) Since pronase digestion of GPP did not reduce its mitogenic activity, carbohydrate rather than peptide may be important in the activity, When applied on an anti-${\beta}$-caseinophosphopeptide (${\beta}$-CPP ) antibody affinity column, the GPP was separated into two components, one with affinity to ${\beta}$-CPP and the other without such affinity. Both the components contained N-linked oligosaccharide chains and had the mitogenic activity. These results demonstrate that cheese whey contains a GPP having strong mitogenic activity

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Assessment of Immune Parameters of the Wild Pacific Oyster (Crassostrea gigas) using a Flow Cytometry and Neutral Red Retention Assay (유세포 분석기와 Neutral Red Retention Assay를 이용한 자연산 참굴(Crassostrea gigas)의 면역력 측정)

  • Hong, Hyun-Ki;Kang, Hyun-Sil;Kim, Young-Ok;Choi, Kwang-Sik
    • Ocean and Polar Research
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    • v.34 no.2
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    • pp.137-149
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    • 2012
  • Hemocyte parameters of the wild Pacific oyster Crassostrea gigas inhabiting intertidal zones in small bays (Gwangyang and Jinhae Bay) on the southern coast of Korea were evaluated using flow cytometry and neutral red retention (NRR) assay. Morphological features, cell count, mortality, DNA damage, phagocytosis, and lysosomal membrane stability of hemocytes were analyzed. Three types of hemocytes were identified in the oyster hemolymph: granulocytes, hyalinocytes, and blast-like cells. Immune related functions of hemocyte including phagocytosis and lysosomal membrane stability were significantly different among the study areas (P<0.05), while cell count, mortality, and DNA damage of hemocytes were not significantly different. In Gwangyang Bay, phagocytosis of granulocytes and lysosomal membrane stability of oyster hemocytes inhabiting inside bay were significantly lower than those of oyster hemocytes in outside bay (P<0.05), indicating that oysters in inside bay of Gwangyang were relatively suppressed the immunological function in hemocytes. Contrary to Gwangyang Bay, immune parameters of oyster hemocytes in Jinhae Bay not showed the difference between sampling sites. In conclusion, flow cytometry and NRR assay using oyster hemocyte has a powerful tool to investigate the cell level in a short time due to no-preprocessing of material.

Rhythmic Control and Physiological Functional Significance of Melatonin Production in Circadian Rhythm (주기적 리듬 조절에 의한 멜라토닌 생산과 생리적 기능의 중요성)

  • Kim, Min Gyun;Park, Seul Ki;Ahn, Soon Cheol
    • Journal of Life Science
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    • v.23 no.8
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    • pp.1064-1072
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    • 2013
  • Circadian rhythm is controlled by hormonal oscillations governing the physiology of all living organisms. In mammals, the main function of the pineal gland is to transform the circadian rhythm generated in the hypothalamic suprachiasmatic nucleus into rhythmic signals of circulating melatonin characterized by a largely nocturnal increase that closely reflects the duration of night time. The pineal gland has lost direct photosensitivity, but responds to light via multi-synaptic pathways that include a subset of retinal ganglion cells. Rhythmic control is achieved through a tight coupling between environmental lighting and arylalkylamine-N-acetyltransferase (AANAT) expression, which is the rhythm-controlling enzyme in melatonin synthesis. Previous studies on the nocturnal expression of AANAT protein have described transcriptional, post-transcriptional, and post-translational regulatory mechanisms. Molecular mechanisms for dependent AANAT expression provide novel aspects for melatonin's circadian rhythmicity. Extensive animal research has linked pineal melatonin for the expression of seasonal rhythmicity in many mammalian species to the modulation of circadian rhythms and to sleep regulation. It has value in treating various circadian rhythm disorders, such as jet lag or shift-work sleep disorders. Melatonin, also, in a broad range of effects with a significant regulation influences many of the body's physiological functions. In addition, this hormone is known to influence reproductive, cardiovascular, and immunological regulation as well as psychiatric disorders.

Effect of Ginsenoside Rb1 on Cell Adhesion, Surface Molecule Expression and Morphological Changes (Ginsenoside Rb1의 세포간 유착, 세포표면 단백질 발현 및 세포형태변화에 미치는 효과)

  • Kim, Byung-Hun;Cho, Jae-Youl
    • Journal of Ginseng Research
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    • v.33 no.4
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    • pp.330-336
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    • 2009
  • Cell-cell adhesion managed by various adhesion molecules is known to be one of important phenomena found in numerous immunological responses or diseases such as immunostimulation, rheumatoid arthritis and allergic diseases. In this study, we examined the regulatory role of ginsenosides (G)-Rb1, reported to display immunostimulatory and anticancer effects, on cell adhesion, the up-regulation of surface adhesion molecules and morphological changes using monocytic U937 and macrophage-like RAW264.7 cells. G-Rb1 significantly up-regulated U937 cell-cell adhesion mediated by both CD29 and CD43. It also enhanced U937 cell-fibronectin adhesion, while CD29 blocking antibody P5D2 strongly suppressed it. In agreement, this compound also significantly increased the surface level of CD29 as well as CD43. Furthermore, this compound differentially modulated CD82 up-regulation and morphological changes triggered by lipopolysaccharide (LPS) and phorbol-12-myristate-13-acetate (PMA). Therefore, these results suggest that G-Rb1 may have differential modulatory function on cell adhesion events, surface molecule expression and morphological changes responsible for immune responses.

The effect of artemisinin on the rabbit IgG accelerated nephrotoxic serum glomerulonephritis in mice (개똥쑥에서 분리(分離)된 artemisinin이 가토(家兎) IgG에 의해 유발(誘發)된 생쥐의 현독성(賢毒性) 혈청사구체현염(血淸絲球體賢炎)에 미치는 영향(影響))

  • Zhu, Quan
    • Journal of Haehwa Medicine
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    • v.4 no.2
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    • pp.335-336
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    • 1996
  • Artemisinin, a new antimalarial to treat patients infected with strains of Plasmodium jalciparum, derived from the plant Artemisia annua Linn, has immunopharmacologic actions such as enhence the PHA -induced lymphocyte transformation rate, increased the weight of spleen but reduced the weight of thymus, reduced phagocytic function of peritoneal macrophage, remarkably reduced the level of serum IgG and hemolysin fonning capacity (sentitized with SRBC), inhibited the activity of Ts cells of donor mice by supraoptimal immunuization(SOI), but enhenced activity of Ts cells of recipient mice by SOI. These results suggested that Ts cells may be the target cells of artemisinin. To the serum complement C3 level of plasmodium berghei-infeted mice, artemisinin (i. m,) could remarkly increase it. The artemisinin also obviously reduced the prostaglandin E(PGE) in the mouse hind paw swelling induced by carrageenin. Numerous studies have demonstrated that pharmacologic doses of PGE attenuate the development of immunocomplex nephritis. Some autologous immune mechanisms may be invoolved In the pathogensis of some types of glomurulonephritis. Glomerular abnormalities can be induced in animals by variety of immunological manipulations. The resulting disorder has many clinical and pathogical similarities to the disease in human. Our purpose was therefore to test the ability of the artemisinin to lessen the severity of rabbit IgG accelerated nephrotoxic serum glomerulonephritis in mice model. Mice which had treated with rabbit IgG and NTS, administrated with saline, showed Significant inceases of urinary protein, cholesterol level, and decrease of serum albumin in NS group. On the contrary, By i.g. adminstration of artemisinin at dose of 12.5, 25 and 50 mg/kg for 14 days after NTS injection, shown that artemisinin inhibited the nephritic changes in some parameters by means of urinary protein(p<0.05, p<0.01) and serum choleterol(p<0.05, p<0.01) and albumin (p<0.05, p<0.01), blood urea nitrogen (p<0.05, p<0.01), serum albumin(p<0.05, p<0.01); Cyclophosphamide(i.p. 10mg/kg for 14d) had almost same effect as the artemisinin had. Morphological studies shown that The picture of kidney from the mouse with NTS-nephritis accerated with rabbit IgG, treated with i.g. saline as the control, the mesangiocapillary were enlarged and proliferated; There were inflammatory cells infiltrating around the glomeruli; The ethelial cell were proliferated in the wall of Bowman's capsule. Histopatholological picture of kidney from the NTS-nephritis accerated with rabbit IgG mouse treated with i.p. 10mg/kg cyclophosphamide as the positive control. No siginicant histopathological evidence were found. Treaded with i.p. 12.5mg/kg artemisinine, the picture shown that mesangiocapillary were lightly proliferated; There were inflammatory cells infiltrating around the glomeruli; Treaded with i.p. 25mg/kg artemisinine, The picture shown that the mesangiocapillary were lightly proliferated; Treaded with i.p. 50mg/kg artemisinine, The picture shown that both the mesangiocapillary proliferated and the inflammatory cells infiltrating around the glomeruli are less than treated with saline, 12.5 and 25 mg/kg artemisinine. On the basis of these studies we conclude that the artemisinin can relieve pathological change caused by NTS-nephritis aacerated with rabbit IgG.

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In Vitro Isolation and Proliferation of Mouse Male Germ-Line Stem Cells (생쥐 생식줄기세포의 체외 분리 및 증식)

  • 김수경;김계성
    • Journal of Embryo Transfer
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    • v.18 no.3
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    • pp.243-248
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    • 2003
  • Sperrnatogenesis, the process by which the male germ-line stem cells(GSCs; type A spermatogonia) divide and differentiate to produce the mature spermatozoa, occurs in the seminiferous tubules of the testis. The GSCs proliferate actively to produce two types of cells: other GSCs and differentiating spermatogonia. GSCs have unipotentcy, devoted solely to the generation of sperm. The function of GSCs has broad implications for development, disease, and evolution. Spermatogenesis is fundamental for propagation of species and the defects of this system can result in infertility or disease. The ability to identify, isolate, culture, and alter GSCs will allow powerful new approaches in animal transgenesis and human gene therapy relating to infertility. Until recently, research on stem cells in the testis has been limited because of technical difficulties in isolating and identifying these cell populations. Here, we were trying to find out optimal conditions for in vitro culture of GSCs for identifying and isolating GSCs. We collected mouse GSCs from 3-days old mouse by two-step enzyme digestion method. GSCs were plated and grown on mouse embryonic fibroblasts in Dulbecco's modified Eagle's medium (DMEM) containing 15% fatal bovine serum, 10 mM 2-mercaptoethanol, 1% non-essential amino acids, 1 ng/$m\ell$ bFGF, 10 $\mu$M forskolin, 1500 U/$m\ell$ human recombinant leukemia inhibitory factor (LIF). Over a period 3∼5 days, GSCs gave rise to large multicellular colonies resembling those of mouse pluripotent stem cells. After 5th passages, cells within the colonies continued to be alkaline phosphatase and Oct-4 positive and tested positive against a panel of two immunological markers(Integrin $\alpha$ 6 and Integrin $\beta$ 1) that have been recognized generally to characterize GSCs. SSEA-1, SSEA-3, and SSEA-4 also showed positive signals. Based on our data, these GSCs-derived cultures meet the criteria for GSCs itself and even other pluripotent stem cells. We reported here the establishment of in vitro cultures from mouse male GSCs.

Biological Roles of the Glycan in the Investigation of the Novel Disease Diagnosis and Treatment Methods (신개념 질병 진단 및 치료 연구에 있어서의 당사슬의 생물학적 역할)

  • Kim, Dong-Chan
    • Journal of Life Science
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    • v.28 no.11
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    • pp.1379-1385
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    • 2018
  • Glycans are attached to proteins as in glycoproteins and proteoglycans. They are found on the exterior surface of cells. O- and N-linked glycans are very common in eukaryotic cells but may also be found in prokaryotes. The interaction of cell surface glycans with complementary glycan binding proteins located on neighboring cells, other cell types, pathogens like virus, or bacteria is crucial in biologically and biomedically important processes like pathogen recognition, cell migration, cell-cell adhesion, development, and infection. Their implication in pathological condition, suggests an important role for glycans as disease markers. In addition, a great amount of research has been shown that appropriate glycosylation of a recombinant therapeutic protein is critical for product solubility, stability, pharmacokinetics and pharmacodynamics, bioactivity, and safety. Besides, cancer-associated glycosylation changes often involve sialic acid in glycan branch which play important roles in cell-cell interaction, recognition and immunological response. This review aims at giving a comprehensive overview of the glycan's biological function and describing the relevance among the glycosylation, disease diagnosis and treatment methods. Furthermore, the high-throughput analytic methods available to measure the profile changing patterns of glycan in the blood serum as well as possible underlying biochemical mechanisms.

Trends in Saliva Research and Biomedical Clinical Applications (타액 연구의 최신 지견과 임상 응용)

  • Soyoung Park;Eungyung Lee;Jonghyun Shin;Taesung Jeong
    • Journal of the korean academy of Pediatric Dentistry
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    • v.50 no.1
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    • pp.1-12
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    • 2023
  • Function of salivary gland and saliva composition can be an indicator of individual's health status. Recently, saliva has been thought to have a high potential for usage in the biomedical field to diagnose, evaluate, and prevent systemic health due to the technological advances in analyzing and detecting small elements such as immunological and metabolic products, viruses, microorganisms, hormones in saliva. As a diagnostic specimen, saliva has some useful advantages compared to serum. Because of simple non-invasive method, saliva sampling is quite comfort for the patient, and it doesn't require specialists to collect samples. The possibility of infection during the collection process is also low. For this reason, proteins, genetic materials, and various biomarkers in saliva are actively being utilized on studying stress, microbiomics, genetics, and epigenetics. For the research on collecting big data related to systemic health, the needs on biobank has been focused. Regeneration of salivary gland based on tissue engineering has been also on advancement. However, there are still many issues to be solved, such as the standardization of sample collection, storage, and usage. This review focuses on the recent trends in the field of saliva research and highlight the future perspectives in biomedical and other applications.

The Immunological Position of Fibroblastic Reticular Cells Derived From Lymph Node Stroma (림프절 스트로마 유래 Fibroblastic Reticular Cell의 면역학적 위치)

  • Jong-Hwan Lee
    • Journal of Life Science
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    • v.34 no.5
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    • pp.356-364
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    • 2024
  • Lymph nodes (LNs) are crucial sites where immune responses are initiated to combat invading pathogens in the body. LNs are organized into distinctive compartments by stromal cells. Stromal cell subsets constitute special niches supporting the trafficking, activation, differentiation, and crosstalk of immune cells in LNs. Fibroblastic reticular cells (FRC) are a type of stromal cell that form the three-dimensional structure networks of the T cell-rich zones in LNs, providing guidance paths for immigrating T lymphocytes. FRCs imprint immune responses by supporting LN architecture, recruiting immune cells, coordinating immune cell crosstalk, and presenting antigens. During inflammation, FRCs exert both spatial and molecular regulation on immune cells through their topological and secretory responses, thereby steering immune responses. Here, we propose a model in which FRCs regulate immune responses through a three-part scheme: setting up, supporting, or suppressing immune responses. FRCs engage in bidirectional interactions that enhance T cell biological efficiency. In addition, FRCs have profound effects on the innate immune response through phagocytosis. Thus, FRCs in LNs act as gatekeepers of immune responses. Overall, this study aims to highlight the emerging roles of FRCs in controlling both innate and adaptive immunity. This collaborative feedback loop mediated by FRCs may help maintain tissue function during inflammatory responses.

Beneficial Effects of Water Extracts of Scutellariae Radix on Immune Function in Mice Fed Alcohol (알코올 섭취한 생쥐에서 황금(黃芩) 열수추출물이 생쥐의 면역기능에 미치는 영향)

  • Lee, In-Seok;Kang, Kyoung-Lan;Choue, Ryo-Won
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.35 no.5
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    • pp.536-542
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    • 2006
  • High fat diet and chronic alcohol consumption cause hyperlipidemia, steatohepatitis and in some cases, cirrhosis. But the detailed mechanisms are not known. Scutellariae Radix (SR) has been known to have hepatoprotective effects. The aim of this study was, therefore, to determine whether SR water extract (100 mg/kg) could affect immune function in mice abused by long-term alcohol consumption (feed 25% ethanol in water for 1 month, ad libitum) with high fat diet (40% fat of total calorie). Mice received either a regular diet (RD, AIN 93) or a high fat diet (HD); high fat diet group were divided into ethanol group (HED) or ethanol with SR water extract group (HEDS). Food consumption was measured daily and body weights recorded weekly throughout the experiment. Immunological parameters (Ig A, Ig E, TNF-$\alpha$, IFN-$\gamma$, IL-$1{\beta}$) were measured from the serum and the supernatant of spleen lymphocytes from the all groups. The concentration of serum Ig A, Ig E and cytokines were significantly higher in the alcohol consumed groups. Also the concentration of supernatant of spleen lymphocytes, Ig A, Ig E, cytokines were significantly higher in the ethanol consumption groups. Otherwise, HEDS group were significantly lower than HED group. These results suggest that SR water extract may improve the haptic immune function in mice fed high fat diet with alcohol.