• Title/Summary/Keyword: lipid metabolites

Search Result 127, Processing Time 0.025 seconds

Role of Sphingolipids and Metabolizing Enzymes in Hematological Malignancies

  • Kitatani, Kazuyuki;Taniguchi, Makoto;Okazaki, Toshiro
    • Molecules and Cells
    • /
    • v.38 no.6
    • /
    • pp.482-495
    • /
    • 2015
  • Sphingolipids such as ceramide, sphingosine-1-phosphate and sphingomyelin have been emerging as bioactive lipids since ceramide was reported to play a role in human leukemia HL-60 cell differentiation and death. Recently, it is well-known that ceramide acts as an inducer of cell death, that sphingomyelin works as a regulator for microdomain function of the cell membrane, and that sphingosine-1-phosphate plays a role in cell survival/proliferation. The lipids are metabolized by the specific enzymes, and each metabolite could be again returned to the original form by the reverse action of the different enzyme or after a long journey of many metabolizing/synthesizing pathways. In addition, the metabolites may serve as reciprocal biomodulators like the rheostat between ceramide and sphingosine-1-phosphate. Therefore, the change of lipid amount in the cells, the subcellular localization and the downstream signal in a specific subcellular organelle should be clarified to understand the pathobiological significance of sphingolipids when extracellular stimulation induces a diverse of cell functions such as cell death, proliferation and migration. In this review, we focus on how sphingolipids and their metabolizing enzymes cooperatively exert their function in proliferation, migration, autophagy and death of hematopoetic cells, and discuss the way developing a novel therapeutic device through the regulation of sphingolipids for effectively inhibiting cell proliferation and inducing cell death in hematological malignancies such as leukemia, malignant lymphoma and multiple myeloma.

Bioequivalence of Hepaphil Soft Capsule to Nissel Tablet (닛셀정에 대한 헤파필연질캡슐의 생물학적 동등성 평가)

  • Ko, In-Ja;Chi, Sang-Cheol
    • YAKHAK HOEJI
    • /
    • v.48 no.6
    • /
    • pp.379-383
    • /
    • 2004
  • Biphenyl dimethyl dicarboxylate (DDB) has been used for the treatment of chronic viral hepatitis B and drug-induced hepatitis through the inhibition of lipid peroxidation and c ovalent binding of drug metabolites to lipids of microsomes. The bioequivalence of two DDB products was evaluated according to the guidelines of KFDA. The test product was Hepaphil soft capsule(R) made by KMS Pharm. Co. Containing 3 mg DDB and the reference product was Nissel tablet(R) made by Taerim Pharm. Co. Containing 25 mg DDB. Twenty healthy male subjects, 25.4(22~30) years old and 66.7(54~77)kg, were divided into two groups and a randomized $2{\times}2$ cross-over study was employed. After two tablets or two capsules were orally administered, blood was taken at predetermined time intervals and the concentration of DDB in plasma was determined using a validated HPLC method with UV detector. Two pharmacokinetic parameters, $AUC_t$ and $C_{max}$, were calculated and analyzed statistically for the evaluation of bioequivalence of the two products. Analysis of variance was carried out using logarithmically transformed parameter values. The 90% confidence intervals of $AUC_t$ and $C_{max}$ were log 0.91~log1.00 and log 1.05~log 1.15, respectively. These values were within the acceptable bioequivalence intervals of log 0.8 to log 1.25. Thus, the criteria of the KFDA guidelines for the bioequivalence was satisfied, indicating that Hepaphil soft capsule is bioequivalent to Nissel tablet.

Inhibitory effects of Prunus persica flower extracts on UV-induced skin damage

  • Lee, Kang-Tae;Yoo, Young-Kyoung;Kim, Sung-Woo;Jeong, Ji-Hean;Jo, Byoung-Kee;Kim, Young-Ha;Yang, Hye-Eum;Heo, Moon-Young;Kim, Hyun-Pyo
    • Journal of the Society of Cosmetic Scientists of Korea
    • /
    • v.27 no.1
    • /
    • pp.73-81
    • /
    • 2001
  • For an attempt to develop safe materials protecting UV-induced skin damage, plant extracts were evaluated for their antioxidative and free radical scavenging activities. From the results of these screening procedures, the ethanol extract of the flowers of Prunus persica was selected for further study. It was found that Prunus persica (50-200 $\mu\textrm{g}$/㎖) inhibited UVB-induced DNA damage measured by tail moment in the Single Cell Gel Electrophoresis(COMET assay) and inhibited UV-induced lipid peroxidation, expecially against UVB-induced peroxidation at higher than 10 $\mu\textrm{g}$/㎖. Also P.persica(100∼1,000 $\mu\textrm{g}$/㎖) inhibited the amount of $\^$14/C-arachidonic acid metabolites release from UVB-irradiated keratinocytes and it possessed the protective activity against UV-induced cytotoxicity of keratinocytes. All these results indicate that the flowers of P. persica extract may be beneficial for protection UV-induced skin damage when topically applied.

  • PDF

The Alcohol-inducible form of Cytochrome P450 (CYP 2E1): Role In Toxicology and Regulation of Expression

  • Novak, Raymond F.;Woodcroft, Kimberley J.
    • Archives of Pharmacal Research
    • /
    • v.23 no.4
    • /
    • pp.267-282
    • /
    • 2000
  • Cytochrome P45O (CYP) 2E1 catalyzes the metabolism of a wide variety of therapeutic agents, procarcinogens, and low molecular weight solvents. CYP2E1-catalyzed metabolism may cause toxicity or DNA damage through the production of toxic metabolites, oxygen radicals, and lipid peroxidation. CYP2E1 also plays a role in the metabolism of endogenous compounds including fatty acids and ketone bodies. The regulation of CYP2E1 expression is complex, and involves transcriptional, post-transcriptional, translational, and post-translational mechanisms. CYP2E1 is transcriptionally activated in the first few hours after birth. Xenobiotic inducers elevate CYP2E1 protein levels through both increased translational efficiency and stabilization of the protein from degradation, which appears to occur primarily through ubiquitination and proteasomal degradation. CYP2E1 mRNA and protein levels are altered in response to pathophysiologic conditions by hormones including insulin, glucagon, growth hormone, and leptin, and growth factors including epidermal growth factor and hepatocyte growth factor, providing evidence that CYP2E1 expression is under tight homeostatic control.

  • PDF

Stratum Corneum Lipids as Bioactive Materials for Atopic Dermatitis (생체활성 각질층 지질 - 아토피 피부염 관리를 중심으로 -)

  • Park Byeong Deog;Youm Jong Kyung;Ahn Sung Ku;Lee Seung Hun
    • Journal of the Society of Cosmetic Scientists of Korea
    • /
    • v.30 no.3 s.47
    • /
    • pp.345-352
    • /
    • 2004
  • There are two paradigms to explain the atopic dermatitis. The first is outside-inside paradigm and the second is inside-outside paradigm. According to the outside-inside paradigm the best way to treat the atopic dermatitis is recovery of skin barrier function. The barrier function is maintained by the specific structure of stratum corneum, which is constructed from corneocytes and intercellular lipids. In terms of lipid structures of SC in atopic dermatitis and lamellar ichthyosis, they contain more fluid hexagonal gel structures in SC and show deficiencies in free fatty acids, especially long chains and certain ceramides. With this reason, moisturizer which has the lamellar structure and restoring function of intrinsic intercellualr long periodicity phase can maintain and restore the lamellar structure of intercellular lipids in SC. The moisturizers containing ceramide or pseudoceramide also seem to be reasonable therapy for atopic dermatitis and several skin diseases, which interrelated with impaired skin harrier. By the way, according to the inside-outside paradigm, immune response including helper T cells, IgE, eosinophils is related. It is effective treatment of atopic dermititis to restore imbalance between Th1 and Th2 cells. Even though several kinds of immune-suppressor were introduced, these can affect the intrinsic immune function. SPC and S1P, metabolites of ceramide, would be interesting because they have the function of wound healing and immune modulating properties.

Function of 27-Hydroxycholesterol in Various Tissues and Diseases (다양한 조직 및 질병에서 27-하이드록시콜레스테롤의 역할 및 기전 고찰)

  • Shim, Wan-Seog;Lee, Chanhee;Azamov, Bakhovuddin;Kim, Koanhoi;Lee, Dongjun;Song, Parkyong
    • Journal of Life Science
    • /
    • v.32 no.3
    • /
    • pp.256-262
    • /
    • 2022
  • Oxysterols are oxygenated metabolites of cholesterol generated by serial enzymatic reactions during bile acid synthesis. Similar to cholesterol, oxysterols move rapidly to the intracellular region and modulate various cellular processes, such as immune cell responses, lipid metabolism, and cholesterol homeostasis. Different nuclear transcription factors, such as glucocorticoid, estrogen, and liver X receptors, can be modulated by oxysterols in multiple tissues. The most abundant oxysterol, 27-hydroxycholesterol (27-OHC), is a well-known selective modulator that can either activate or suppress estrogen receptor activity in a tissue-specific manner. The contribution of 27-OHC in atherosclerosis development is apparent because a large amount of it is found in atherosclerotic plaques, accelerating the transformation of macrophages into foam cells that uptake extracellular modified lipids. According to previous studies, however, there are opposing opinions about how 27-OHC affects lipid and cholesterol metabolism in metabolic organs, including the liver and adipose tissue. In particular, the effects of 27-OHC on lipid metabolism are entirely different between in vitro and in vivo conditions, suggesting that understanding the physiology of this oxysterol requires a sophisticated approach. This review summarizes the potential effects of 27-OHC in atherosclerosis and metabolic syndromes with a special discussion of its role in metabolic tissues.

Effects of Dietary Supplementation of Organic Acid and Antibiotics Mixture on Growth Performances and Blood Metabolites in Growing Pigs (사료내 유기산제 및 항생제의 혼합첨가가 육성돈의 성장과 혈액성상에 미치는 영향)

  • Lee, Cheol-Ho;Jo, Ik-Hwan;Shon, Joong-Cheon;Lee, Sung-Hoon
    • Korean Journal of Organic Agriculture
    • /
    • v.17 no.2
    • /
    • pp.237-251
    • /
    • 2009
  • This study was carried out to evaluate the effect of replacing antibiotics by organic acid mixture on growth performances and blood metabolites in growing pigs. Twenty-five crossbred pigs (Large White${\times}$Landrace) at the age of 79 days were fed five different diets by supplementing organic acid mixture and chlortetracycline. The experimental diets were consisted of diets without antibiotics supplementation (control), diets added 100mg/kg of chlortetracycline to control diet (T1), diets added 100mg/kg of chlortetracycline and 0.1% of $Acidomix^{(R)}$ (comprising formic acid 25%, sorbic acid 10%, fumaric acid 10%) to control diet (T2), diets added 0.1% of $Acidomix^{(R)}$ to control diet (T3), and diets added 0.3% of $Acidomix^{(R)}$ to control diet (T4). The changes in feed conversion ratio, average daily gain and blood metabolites were investigated. Twenty-five pigs were allotted to five treatments with five replications of each and the experiment was conducted on the basis of complete randomized design for 6 weeks. Average daily gain was significantly (p<0.05) different between T4 and control diets. All treatments including diets added $Acidomix^{(R)}$ and chlortetracycline were slightly higher than control diets. The feed intakes did not show a significant difference between the control and other treatments, and did not give change in feed intake by the addition of $Acidomix^{(R)}$. No differences on feed conversion ratio among treatments were observed but T4 and T3 treatments showed lower value than other treatments. The concentrations of blood urea nitrogen, total cholesterol and triglyceride were significantly (p<0.05) different among treatments, but their values were within the normal range representing that effects on blood profile by organic acid or antibiotics supplementation were not found. The results from this study indicated that adding chlortetracycline or organic acid mixtures to diets showed tendency to improve average daily gain and feed conversion ratio in growing pigs. These results showed that antibiotics could be replaced by organic acid mixture in growing pig diets, leading to stimulated growth and improved feed conversion ratio.

  • PDF

Bioactive Lipids and Their Derivatives in Biomedical Applications

  • Park, Jinwon;Choi, Jaehyun;Kim, Dae-Duk;Lee, Seunghee;Lee, Bongjin;Lee, Yunhee;Kim, Sanghee;Kwon, Sungwon;Noh, Minsoo;Lee, Mi-Ock;Le, Quoc-Viet;Oh, Yu-Kyoung
    • Biomolecules & Therapeutics
    • /
    • v.29 no.5
    • /
    • pp.465-482
    • /
    • 2021
  • Lipids, which along with carbohydrates and proteins are among the most important nutrients for the living organism, have a variety of biological functions that can be applied widely in biomedicine. A fatty acid, the most fundamental biological lipid, may be classified by length of its aliphatic chain, and the short-, medium-, and long-chain fatty acids and each have distinct biological activities with therapeutic relevance. For example, short-chain fatty acids have immune regulatory activities and could be useful against autoimmune disease; medium-chain fatty acids generate ketogenic metabolites and may be used to control seizure; and some metabolites oxidized from long-chain fatty acids could be used to treat metabolic disorders. Glycerolipids play important roles in pathological environments, such as those of cancers or metabolic disorders, and thus are regarded as a potential therapeutic target. Phospholipids represent the main building unit of the plasma membrane of cells, and play key roles in cellular signaling. Due to their physical properties, glycerophospholipids are frequently used as pharmaceutical ingredients, in addition to being potential novel drug targets for treating disease. Sphingolipids, which comprise another component of the plasma membrane, have their own distinct biological functions and have been investigated in nanotechnological applications such as drug delivery systems. Saccharolipids, which are derived from bacteria, have endotoxin effects that stimulate the immune system. Chemically modified saccharolipids might be useful for cancer immunotherapy or as vaccine adjuvants. This review will address the important biological function of several key lipids and offer critical insights into their potential therapeutic applications.

Feasibility of $In$ $vivo$ Proton Magnetic Resonance Spectroscopy for Lung Cancer (폐암의 생체 수소자기공명분광법의 실행가능성)

  • Yoon, Soon-Ho;Park, Chang-Min;Lee, Chang-Hyun;Song, In-Chan;Lee, Hyun-Ju;Goo, Jin-Mo
    • Investigative Magnetic Resonance Imaging
    • /
    • v.16 no.1
    • /
    • pp.40-46
    • /
    • 2012
  • Purpose : To investigate the feasibility of in vivo proton magnetic resonance spectroscopy (MRS) for evaluation of lung cancer. Materials and Methods: This prospective study was approved by the institutional review board of our hospital and informed consent was obtained in all patients. Ten patients (7 men, 3 women; mean age, 64.4) with pathologicallyproven lung cancer (mean, 56.8 mm; range, 44-77 mm) were enrolled to 1.5 T MRS using a single-voxel respiration-triggered point-resolved spectroscopic sequence. Technical success rate and the reason of technical failure, if any, were investigated. Results: Out of 10 lung cancers, analyzable MRS spectra were obtained in 8 tumors (technical success rate, 80%). Two MRS datasets were not able to be analyzed due to serious baseline distortion. Choline and lipid signals were detected as major metabolites in analyzable MRS spectra. Conclusion: In vivo proton MRS method using a single-voxel respiration-triggered point-resolved spectroscopic sequence is feasible in obtaining the MR spectra of lung cancer because these spectra were analyzable and high success rate was shown in our study although there was the limitation of small patient group.

Dihydroceramide was Highly Elevated by the Fumonisin B1 and Desipramine in Sphingomonas chungbukensis

  • Burenjargal, Munkhtsatsral;Lee, Youn-Sun;Yoo, Jae-Myung;Choi, Mi-Hwa;Ji, So-Young;Lee, Yong-Moon;Kim, Young-Chang;Oh, Sei-Kwan;Yun, Yeo-Pyo;Yoo, Hwan-Soo
    • Biomolecules & Therapeutics
    • /
    • v.16 no.2
    • /
    • pp.100-105
    • /
    • 2008
  • The sphingolipid metabolites act as lipid mediator for cell proliferation and apoptosis in mammalian cells. In bacteria, sphingolipid metabolism remains unknown. The purpose of this study was to investigate whether sphingolipid metabolism is potential target for fumonisin $B_1$($FB_1$) and desipramine in Sphingomonas chungbukensis, Gram-negative bacteria, by comparing the intracellular contents of bacterial sphingolipids with ones of HIT-T15 ${\beta}$-cells, hamster pancreatic cells. The concentrations of ceramide and dihydroceramide were 18.0 ${\pm}$ 12.0 and 0.025 ${\pm}$ 0.018 nmol/mg protein, respectively, in HIT-T15 cells. However, the concentrations of ceramide and dihydroceramide in the bacterial culture were 2.0 ${\pm}$ 1.2 and 10.6 ${\pm}$ 5.5 nmol/mg protein, respectively. $FB_1$ decreased the level of ceramide from 18.0 to 3.8 nmol/mg protein in HIT-T15 ${\beta}$-cells. However, dihydroceramide content in $FB_1$-treated HIT-T15 cells was slightly decreased compared with the control culture. When S. chungbukensis was treated with either $FB_1$ or desipramine, dihydroceramide level was increased by 5- and 4-fold, respectively, compared with the control bacteria. These results indicate that $FB_1$ and desipramine may act as an activator in bacterial sphingolipid biosynthetic pathway, and bacterial sphingolipid metabolism pathway appears to be different from the pathway of mammalian cells.