Lipidy (Polish Wikipedia)

Analysis of information sources in references of the Wikipedia article "Lipidy" in Polish language version.

Last modified:

Ref.Un. Ref.Website
Global rank Polish rank
2nd place
5th place
5th place
7th place
4th place
2nd place
66th place
668th place
low place
low place
1st place
1st place
9,638th place
low place

doi.org (Global: 2nd place; Polish: 5th place)

  • Eoin Fahy i inni, A comprehensive classification system for lipids, „Journal of Lipid Research”, 46 (5), 2005, s. 839–861, DOI: 10.1194/jlr.E400004-JLR200, PMID: 15722563 (ang.).
  • J. Edward Hunter, Dietary trans fatty acids: Review of recent human studies and food industry responses, „Lipids”, 41 (11), 2006, s. 967–992, DOI: 10.1007/s11745-006-5049-y, PMID: 17263298 (ang.).
  • Filomena Fezza, Chiara De Simone, Daniele Amadio, Mauro Maccarrone, Fatty Acid Amide Hydrolase: A Gate-Keeper of the Endocannabinoid System (Lipids in Health and Disease), „Subcellular Biochemistry”, 49, 2008, s. 101–132, DOI: 10.1007/978-1-4020-8831-5_4, PMID: 18751909 (ang.).
  • Rosalind A. Coleman, Douglas P. Lee, Enzymes of triacylglycerol synthesis and their regulation, „Progress in Lipid Research”, 43 (2), 2004, s. 134–176, DOI: 10.1016/S0163-7827(03)00051-1 (ang.).
  • Georg Hölzl, Peter Dörmann, Structure and function of glycoglycerolipids in plants and bacteria, „Progress in Lipid Research”, 46 (5), 2007, s. 225–243, DOI: 10.1016/j.plipres.2007.05.001, PMID: 17599463 (ang.).
  • Koichi Honke, Yanglong Zhang, Xinyao Cheng, Norihiro Kotani, Naoyuki Taniguchi, Biological roles of sulfoglycolipids and pathophysiology of their deficiency, „Glycoconjugates Journal”, 21 (1–2), 2004, s. 59–62, DOI: 10.1023/B:GLYC.0000043749.06556.3d, PMID: 15467400 (ang.).
  • Akhlaq A Farooqui, Lloyd A Horrocks, Tahira Farooqui, Glycerophospholipids in brain: their metabolism, incorporation into membranes, functions, and involvement in neurological disorders, „Chemistry and Physics of Lipids”, 106 (1), 2000, s. 1–29, DOI: 10.1016/S0009-3084(00)00128-6, PMID: 10878232 (ang.).
  • Pavlina T. Ivanova, Stephen B. Milne, Mark O. Byrne, Yun Xiang, H. Alex Brown, Glycerophospholipid Identification and Quantitation by Electrospray Ionization Mass Spectrometry, „Methods in Enzymology”, 432, 2007, s. 21–57, DOI: 10.1016/S0076-6879(07)32002-8, PMID: 17954212 (ang.).
  • Fritz Paltauf, Ether lipids in biomembranes, „Chemistry and Physics of Lipids”, 74 (2), 1994, s. 101–139, DOI: 10.1016/0009-3084(94)90054-X, PMID: 7859340 (ang.).
  • Alfred H. Merrill jr., Konrad Sandhoff, Sphingolipids: metabolism and cell signaling, [w:] New Comprehensive Biochemistry. Biochemistry of Lipids, Lipoproteins, and Membranes, Dennis E. Vance (red.), Jean E. Vance (red.), Elsevier Science, 2002, DOI: 10.1016/S0167-7306(02)36016-2, ISBN 978-0-444-51138-6 (ang.).
  • Taro Hori, Mutsumi Sugita, Sphingolipids in lower animals, „Progress in Lipid Research”, 32 (1), 1993, s. 25–45, DOI: 10.1016/0163-7827(93)90003-F, PMID: 8415797 (ang.).
  • Herbert Wiegandt, Insect glycolipids, „Biochimica et Biophysica Acta”, 1123 (2), 1992, s. 117–126, DOI: 10.1016/0005-2760(92)90101-Z, PMID: 1739742 (ang.).
  • Xueli Guan, Markus R. Wenk, Biochemistry of inositol lipids, „Frontiers in Bioscience”, 13 (9), 2008, s. 3239–3251, DOI: 10.2741/2923, PMID: 18508430 (ang.).
  • Diana Bach, Ellen Wachtel, Phospholipid/cholesterol model membranes: formation of cholesterol crystallites, „Biochimica et Biophysica Acta”, 1610 (2), 2003, s. 187–197, DOI: 10.1016/S0005-2736(03)00017-8 (ang.).
  • Roger Bouillon i inni, Vitamin D resistance, „Best Practice & Research. Clinical Endocrinology & Metabolism”, 20 (4), 2006, s. 627–645, DOI: 10.1016/j.beem.2006.09.008, PMID: 17161336 (ang.).
  • David W. Russell, The Enzymes, Regulation, and Genetics of Bile Acid Synthesis, „Annual Review of Biochemistry”, 72, 2003, s. 137–174, DOI: 10.1146/annurev.biochem.72.121801.161712 (ang.).
  • Jennifer C. Villinski, John M. Hayes, Simon C. Brassell, Virginia L. Riggert, Robert B. Dunbar, Sedimentary sterols as biogeochemical indicators in the Southern Ocean, „Organic Geochemistry”, 39 (5), 2008, s. 567–588, DOI: 10.1016/j.orggeochem.2008.01.009 (ang.).
  • Christian R.H. Raetz i inni, Kdo2-Lipid A of Escherichia coli, a defined endotoxin that activates macrophages via TLR-4, „Journal of Lipid Research”, 47 (5), 2006, s. 1097–1111, DOI: 10.1194/jlr.M600027-JLR200, PMID: 16479018 (ang.).
  • Christopher T. Walsh, Polyketide and Nonribosomal Peptide Antibiotics: Modularity and Versatility, „Science”, 303 (5665), 2004, s. 1805–1810, DOI: 10.1126/science.1094318, PMID: 15031493 (ang.).
  • Patrick Caffrey, Jesus F. Aparicio, Francisco Malpartida, Sergey B. Zotchev, Biosynthetic Engineering of Polyene Macrolides Towards Generation of Improved Antifungal and Antiparasitic Agents, „Current Topics in Medicinal Chemistry”, 8 (8), 2008, s. 639–653, DOI: 10.2174/156802608784221479, PMID: 18473889 (ang.).
  • Robert E. Minto, Brenda J. Blacklock, Biosynthesis and function of polyacetylenes and allied natural products, „Progress in Lipid Research”, 47 (4), 2008, s. 233–306, DOI: 10.1016/j.plipres.2008.02.002, PMID: 18387369 (ang.).
  • Tomohisa Kuzuyama, Haruo Seto, Diversity of the biosynthesis of the isoprene units, „Natural Product Reports”, 20 (2), 2003, s. 171–183, DOI: 10.1039/b109860h, PMID: 12735695 (ang.).
  • A.V. Rao, L.G. Rao, Carotenoids and human health, „Pharmacological Research”, 55 (3), 2007, s. 207–216, DOI: 10.1016/j.phrs.2007.01.012, PMID: 17349800 (ang.).
  • Anders Brunmark, Enrique Cadenas, Redox and addition chemistry of quinoid compounds and its biological implications, „Free Radical Biology & Medicine”, 7 (4), 1989, s. 435–477, DOI: 10.1016/0891-5849(89)90126-3, PMID: 2691341 (ang.).
  • Ewa Swiezewska, Witold Danikiewicz, Polyisoprenoids: Structure, biosynthesis and function, „Progress in Lipid Research”, 44 (4), 2005, s. 235–258, DOI: 10.1016/j.plipres.2005.05.002, PMID: 16019076 (ang.).
  • Ernst Heinz, Plant Glycolipids: Structure, Isolation and Analysis, [w:] Advances in Lipid Methodology, W.W. Christie (red.), t. 3, Dundee: Oily Press, 1996, s. 211–332, DOI: 10.1533/9780857098009.211 (ang.).
  • Gerrit van Meer, Dennis R. Voelker, Gerald W. Feigenson, Membrane lipids: where they are and how they behave, „Nature Reviews. Molecular Cell Biology”, 9 (2), 2008, s. 112–124, DOI: 10.1038/nrm2330, PMID: 18216768 (ang.).
  • Gerald W Feigenson, Phase behavior of lipid mixtures, „Nature Chemical Biology”, 2 (11), 2006, s. 560–563, DOI: 10.1038/nchembio1106-560, PMID: 17051225 (ang.).
  • P.M. Wiggins, Role of water in some biological processes, „Microbiological Reviews”, 54, 4, 1990, s. 432–449, DOI: 10.1128/mr.54.4.432-449.1990, PMID: 2087221, PMCID: PMC372788 (ang.).
  • Dawn L. Brasaemle, Thematic review series: Adipocyte Biology. The perilipin family of structural lipid droplet proteins: stabilization of lipid droplets and control of lipolysis, „Journal of Lipid Research”, 48 (12), 2007, s. 2547–2559, DOI: 10.1194/jlr.R700014-JLR200, PMID: 17878492 (ang.).
  • Xuemin Wang, Lipid Signaling, „Current Opinions in Plant Biology”, 7 (3), 2004, s. 329–336, DOI: 10.1016/j.pbi.2004.03.012, PMID: 15134755 (ang.).
  • Kathleen M. Eyster, The membrane and lipids as integral participants in signal transduction, „Advances in Physiology Education”, 31, 2007, s. 5–16, DOI: 10.1152/advan.00088.2006, PMID: 17327576 (ang.).
  • Sahar A. Saddoughi, Pengfei Song, Besim Ogretmen, Roles of Bioactive Sphingolipids in Cancer Biology and Therapeutics, [w:] Lipids in Health and Disease, 2008 (seria Subcellular Biochemistry, t. 49), s. 413–440, DOI: 10.1007/978-1-4020-8831-5_16, PMID: 18751921 (ang.).
  • Christian Klein, Anant N. Malviya, Mechanism of nuclear calcium signaling by inositol 1,4,5-trisphosphate produced in the nucleus, nuclear located protein kinase C and cyclic AMP-dependent protein kinase, „Frontiers in Bioscience”, 13 (4), 2008, s. 1206–1226, DOI: 10.2741/2756, PMID: 17981624 (ang.).
  • Joshua A. Boyce, Eicosanoids in Asthma, Allergic Inflammation, and Host Defense, „Current Molecular Medicine”, 8 (5), 2008, s. 335–349, DOI: 10.2174/156652408785160989, PMID: 18691060 (ang.).
  • Jerzy Bełtowski, Liver X Receptors (LXR) as Therapeutic Targets in Dyslipidemia, „Cardiovascular Therapy”, 26 (4), 2008, s. 297–316, DOI: 10.1111/j.1755-5922.2008.00062.x, PMID: 19035881 (ang.).
  • C. Indiveri, A. Tonazzi, F. Palmieri, Characterization of the unidirectional transport of carnitine catalyzed by the reconstituted carnitine carrier from rat liver mitochondria, „Biochimica et Biophysica Acta”, 1069 (1), 1991, s. 110–116, DOI: 10.1016/0005-2736(91)90110-T, PMID: 1932043 (ang.).
  • Armando J. Parodi, Luis F. Leloir, The role of lipid intermediates in the glycosylation of proteins in the eucaryotic cell, „Biochimica et Biophysica Acta”, 559 (1), 1979, s. 1–37, DOI: 10.1016/0304-4157(79)90006-6, PMID: 375981 (ang.).
  • Ari Helenius, Markus Aebi, Intracellular Functions of N-Linked Glycans, „Science”, 291 (5512), 2001, s. 2364–2369, DOI: 10.1126/science.291.5512.2364, PMID: 11269317 (ang.).
  • Vishal M. Gohil, Miriam L. Greenberg, Mitochondrial membrane biogenesis: phospholipids and proteins go hand in hand, „Journal of Cell Biology”, 184 (4), 2009, s. 469–472, DOI: 10.1083/jcb.200901127, PMID: 19237595 (ang.).
  • Frederic L. Hoch, Cardiolipins and biomembrane function, „Biochimica et Biophysica Acta”, 1113 (1), 1992, s. 71–133, DOI: 10.1016/0304-4157(92)90035-9, PMID: 1550861, Handle: 2027.42/30145 (ang.).
  • Subrahmanyam S. Chirala, Salih J. Wakil, Structure and function of animal fatty acid synthase, „Lipids”, 39 (11), 2004, s. 1045–1053, DOI: 10.1007/s11745-004-1329-9, PMID: 15726818 (ang.).
  • Stephen W. White, Jie Zheng, Yong-Mei Zhang, Charles O. Rock, The structural biology of type II fatty acid biosynthesis, „Annual Review of Biochemistry”, 74, 2005, s. 791–831, DOI: 10.1146/annurev.biochem.74.082803.133524, PMID: 15952903 (ang.).
  • John B. Ohlrogge, Jan G. Jaworski, Regulation of fatty acid synthesis, „Annual Review of Plant Physiology and Plant Molecular Biology”, 48, 1997, s. 109–136, DOI: 10.1146/annurev.arplant.48.1.109, PMID: 15012259 (ang.).
  • Hartmut K. Lichtenthaler, The 1-Dideoxy-D-xylulose-5-phosphate pathway of isoprenoid biosynthesis in plants, „Annual Review of Plant Physiology and Plant Molecular Biology”, 50, 1999, s. 47–65, DOI: 10.1146/annurev.arplant.50.1.47, PMID: 15012203 (ang.).
  • Laura L. Grochowski, Huimin Xu, Robert H. White, Methanocaldococcus jannaschii Uses a Modified Mevalonate Pathway for Biosynthesis of Isopentenyl Diphosphate, „Journal of Bacteriology”, 188 (9), 2006, s. 3192–3198, DOI: 10.1128/JB.188.9.3192-3198.2006, PMID: 16621811, PMCID: PMC1447442 (ang.).
  • G.J. Schroepfer jr., Sterol Biosynthesis, „Annual Review of Biochemistry”, 50, 1981, s. 585–621, DOI: 10.1146/annurev.bi.50.070181.003101, PMID: 7023367 (ang.).
  • N.D. Lees, B. Skaggs, D.R. Kirsch, M. Bard, Cloning of the late genes in the ergosterol biosynthetic pathway of Saccharomyces cerevisiae – A review, „Lipids”, 30 (3), 1995, s. 221–226, DOI: 10.1007/BF02537824, PMID: 7791529 (ang.).
  • Gian Luigi Russo, Dietary n-6 and n-3 polyunsaturated fatty acids: From biochemistry to clinical implications in cardiovascular prevention, „Biochemical Pharmacology”, 77 (6), 2009, s. 937–946, DOI: 10.1016/j.bcp.2008.10.020, PMID: 19022225 (ang.).
  • Natalie D. Riediger, Rgia A. Othman, Miyoung Suh, Mohammed H. Moghadasian, A Systemic Review of the Roles of n-3 Fatty Acids in Health and Disease, „Journal of the American Dietetic Association”, 109 (4), 2009, s. 668–679, DOI: 10.1016/j.jada.2008.12.022, PMID: 19328262 (ang.).
  • Claudio Galli, Patrizia Risé, Fish Consumption, Omega 3 Fatty Acids and Cardiovascular Disease. The Science and the Clinical Trials, „Nutrition and Health”, 20 (1), 2009, s. 11–20, DOI: 10.1177/026010600902000102, PMID: 19326716 (ang.).
  • R. Michac, D. Mozaffarian, Trans fatty acids: Effects on cardiometabolic health and implications for policy, „Prostaglandins, Leukotrienes, and Essential Fatty Acids”, 79 (3–5), 2008, s. 147–152, DOI: 10.1016/j.plefa.2008.09.008, PMID: 18996687 (ang.).
  • Dariush Mozaffarian, Walter C. Willett, Trans fatty acids and cardiovascular risk: A unique cardiometabolic imprint?, „Current Atherosclerosis Reports”, 9 (6), 2007, s. 486–493, DOI: 10.1007/s11883-007-0065-9, PMID: 18377789 (ang.).
  • Arne Astrup, Jørn Dyerberg, Matthew Selleck, Steen Stender, Nutrition transition and its relationship to the development of obesity and related chronic diseases, „Obesity Review”, 9 (s1), 2008, s. 48–52, DOI: 10.1111/j.1467-789X.2007.00438.x, PMID: 18307699 (ang.).
  • Arne Astrup, The Role of Dietary Fat in Obesity, „Seminars in Vascular Medicine”, 5 (1), 2005, s. 40–47, DOI: 10.1055/s-2005-871740 (ang.).
  • Yunsheng Ma i inni, Low-carbohydrate and high-fat intake among adult patients with poorly controlled type 2 diabetes mellitus, „Nutrition”, 22 (11–12), 2006, s. 1129–1136, DOI: 10.1016/j.nut.2006.08.006 (ang.).
  • Arne Astrup, Dietary Management of Obesity, „Journal of Parenteral and Enteral Nutrition”, 32 (5), 2008, s. 575–577, DOI: 10.1177/0148607108321707, PMID: 18753397 (ang.).
  • Shirley A.A. Beresford i inni, Low-Fat Dietary Pattern and Risk of Colorectal Cancer. The Women’s Health Initiative Randomized Controlled Dietary Modification Trial, „Journal of the American Medical Association”, 295 (6), 2006, s. 643–654, DOI: 10.1001/jama.295.6.643, PMID: 16467233 (ang.).
  • Barbara V. Howard i inni, Low-Fat Dietary Pattern and Weight Change Over 7 Years. The Women’s Health Initiative Dietary Modification Trial, „Journal of the American Medical Association”, 295 (1), 2006, s. 39–49, DOI: 10.1001/jama.295.1.39, PMID: 16391215 (ang.).
  • Barbara V. Howard i inni, Low-Fat Dietary Pattern and Risk of Cardiovascular Disease. The Women’s Health Initiative Randomized Controlled Dietary Modification Trial, „Journal of the American Medical Association”, 295 (6), 2006, s. 655–666, DOI: 10.1001/jama.295.6.655, PMID: 16467234 (ang.).

hdl.handle.net (Global: 66th place; Polish: 668th place)

hsph.harvard.edu (Global: 9,638th place; Polish: low place)

minervamedica.it (Global: low place; Polish: low place)

nih.gov (Global: 5th place; Polish: 7th place)

ncbi.nlm.nih.gov

  • Eoin Fahy i inni, A comprehensive classification system for lipids, „Journal of Lipid Research”, 46 (5), 2005, s. 839–861, DOI: 10.1194/jlr.E400004-JLR200, PMID: 15722563 (ang.).
  • J. Edward Hunter, Dietary trans fatty acids: Review of recent human studies and food industry responses, „Lipids”, 41 (11), 2006, s. 967–992, DOI: 10.1007/s11745-006-5049-y, PMID: 17263298 (ang.).
  • Filomena Fezza, Chiara De Simone, Daniele Amadio, Mauro Maccarrone, Fatty Acid Amide Hydrolase: A Gate-Keeper of the Endocannabinoid System (Lipids in Health and Disease), „Subcellular Biochemistry”, 49, 2008, s. 101–132, DOI: 10.1007/978-1-4020-8831-5_4, PMID: 18751909 (ang.).
  • Georg Hölzl, Peter Dörmann, Structure and function of glycoglycerolipids in plants and bacteria, „Progress in Lipid Research”, 46 (5), 2007, s. 225–243, DOI: 10.1016/j.plipres.2007.05.001, PMID: 17599463 (ang.).
  • Koichi Honke, Yanglong Zhang, Xinyao Cheng, Norihiro Kotani, Naoyuki Taniguchi, Biological roles of sulfoglycolipids and pathophysiology of their deficiency, „Glycoconjugates Journal”, 21 (1–2), 2004, s. 59–62, DOI: 10.1023/B:GLYC.0000043749.06556.3d, PMID: 15467400 (ang.).
  • Akhlaq A Farooqui, Lloyd A Horrocks, Tahira Farooqui, Glycerophospholipids in brain: their metabolism, incorporation into membranes, functions, and involvement in neurological disorders, „Chemistry and Physics of Lipids”, 106 (1), 2000, s. 1–29, DOI: 10.1016/S0009-3084(00)00128-6, PMID: 10878232 (ang.).
  • Pavlina T. Ivanova, Stephen B. Milne, Mark O. Byrne, Yun Xiang, H. Alex Brown, Glycerophospholipid Identification and Quantitation by Electrospray Ionization Mass Spectrometry, „Methods in Enzymology”, 432, 2007, s. 21–57, DOI: 10.1016/S0076-6879(07)32002-8, PMID: 17954212 (ang.).
  • Fritz Paltauf, Ether lipids in biomembranes, „Chemistry and Physics of Lipids”, 74 (2), 1994, s. 101–139, DOI: 10.1016/0009-3084(94)90054-X, PMID: 7859340 (ang.).
  • Taro Hori, Mutsumi Sugita, Sphingolipids in lower animals, „Progress in Lipid Research”, 32 (1), 1993, s. 25–45, DOI: 10.1016/0163-7827(93)90003-F, PMID: 8415797 (ang.).
  • Herbert Wiegandt, Insect glycolipids, „Biochimica et Biophysica Acta”, 1123 (2), 1992, s. 117–126, DOI: 10.1016/0005-2760(92)90101-Z, PMID: 1739742 (ang.).
  • Xueli Guan, Markus R. Wenk, Biochemistry of inositol lipids, „Frontiers in Bioscience”, 13 (9), 2008, s. 3239–3251, DOI: 10.2741/2923, PMID: 18508430 (ang.).
  • Roger Bouillon i inni, Vitamin D resistance, „Best Practice & Research. Clinical Endocrinology & Metabolism”, 20 (4), 2006, s. 627–645, DOI: 10.1016/j.beem.2006.09.008, PMID: 17161336 (ang.).
  • Christian R.H. Raetz i inni, Kdo2-Lipid A of Escherichia coli, a defined endotoxin that activates macrophages via TLR-4, „Journal of Lipid Research”, 47 (5), 2006, s. 1097–1111, DOI: 10.1194/jlr.M600027-JLR200, PMID: 16479018 (ang.).
  • Christopher T. Walsh, Polyketide and Nonribosomal Peptide Antibiotics: Modularity and Versatility, „Science”, 303 (5665), 2004, s. 1805–1810, DOI: 10.1126/science.1094318, PMID: 15031493 (ang.).
  • Patrick Caffrey, Jesus F. Aparicio, Francisco Malpartida, Sergey B. Zotchev, Biosynthetic Engineering of Polyene Macrolides Towards Generation of Improved Antifungal and Antiparasitic Agents, „Current Topics in Medicinal Chemistry”, 8 (8), 2008, s. 639–653, DOI: 10.2174/156802608784221479, PMID: 18473889 (ang.).
  • Robert E. Minto, Brenda J. Blacklock, Biosynthesis and function of polyacetylenes and allied natural products, „Progress in Lipid Research”, 47 (4), 2008, s. 233–306, DOI: 10.1016/j.plipres.2008.02.002, PMID: 18387369 (ang.).
  • Tomohisa Kuzuyama, Haruo Seto, Diversity of the biosynthesis of the isoprene units, „Natural Product Reports”, 20 (2), 2003, s. 171–183, DOI: 10.1039/b109860h, PMID: 12735695 (ang.).
  • A.V. Rao, L.G. Rao, Carotenoids and human health, „Pharmacological Research”, 55 (3), 2007, s. 207–216, DOI: 10.1016/j.phrs.2007.01.012, PMID: 17349800 (ang.).
  • Anders Brunmark, Enrique Cadenas, Redox and addition chemistry of quinoid compounds and its biological implications, „Free Radical Biology & Medicine”, 7 (4), 1989, s. 435–477, DOI: 10.1016/0891-5849(89)90126-3, PMID: 2691341 (ang.).
  • Ewa Swiezewska, Witold Danikiewicz, Polyisoprenoids: Structure, biosynthesis and function, „Progress in Lipid Research”, 44 (4), 2005, s. 235–258, DOI: 10.1016/j.plipres.2005.05.002, PMID: 16019076 (ang.).
  • Gerrit van Meer, Dennis R. Voelker, Gerald W. Feigenson, Membrane lipids: where they are and how they behave, „Nature Reviews. Molecular Cell Biology”, 9 (2), 2008, s. 112–124, DOI: 10.1038/nrm2330, PMID: 18216768 (ang.).
  • Gerald W Feigenson, Phase behavior of lipid mixtures, „Nature Chemical Biology”, 2 (11), 2006, s. 560–563, DOI: 10.1038/nchembio1106-560, PMID: 17051225 (ang.).
  • P.M. Wiggins, Role of water in some biological processes, „Microbiological Reviews”, 54, 4, 1990, s. 432–449, DOI: 10.1128/mr.54.4.432-449.1990, PMID: 2087221, PMCID: PMC372788 (ang.).
  • Dawn L. Brasaemle, Thematic review series: Adipocyte Biology. The perilipin family of structural lipid droplet proteins: stabilization of lipid droplets and control of lipolysis, „Journal of Lipid Research”, 48 (12), 2007, s. 2547–2559, DOI: 10.1194/jlr.R700014-JLR200, PMID: 17878492 (ang.).
  • Xuemin Wang, Lipid Signaling, „Current Opinions in Plant Biology”, 7 (3), 2004, s. 329–336, DOI: 10.1016/j.pbi.2004.03.012, PMID: 15134755 (ang.).
  • Kathleen M. Eyster, The membrane and lipids as integral participants in signal transduction, „Advances in Physiology Education”, 31, 2007, s. 5–16, DOI: 10.1152/advan.00088.2006, PMID: 17327576 (ang.).
  • Vania Hinkovska-Galcheva, Susan M. VanWay, Thomas P. Shanley, Robin G. Kunkel, The role of sphingosine-1-phosphate and ceramide-1-phosphate in calcium homeostasis, „Current Opinion in Investigational Drugs”, 9 (11), 2008, s. 1192–1205, PMID: 18951299 (ang.).
  • Sahar A. Saddoughi, Pengfei Song, Besim Ogretmen, Roles of Bioactive Sphingolipids in Cancer Biology and Therapeutics, [w:] Lipids in Health and Disease, 2008 (seria Subcellular Biochemistry, t. 49), s. 413–440, DOI: 10.1007/978-1-4020-8831-5_16, PMID: 18751921 (ang.).
  • Christian Klein, Anant N. Malviya, Mechanism of nuclear calcium signaling by inositol 1,4,5-trisphosphate produced in the nucleus, nuclear located protein kinase C and cyclic AMP-dependent protein kinase, „Frontiers in Bioscience”, 13 (4), 2008, s. 1206–1226, DOI: 10.2741/2756, PMID: 17981624 (ang.).
  • Joshua A. Boyce, Eicosanoids in Asthma, Allergic Inflammation, and Host Defense, „Current Molecular Medicine”, 8 (5), 2008, s. 335–349, DOI: 10.2174/156652408785160989, PMID: 18691060 (ang.).
  • Jerzy Bełtowski, Liver X Receptors (LXR) as Therapeutic Targets in Dyslipidemia, „Cardiovascular Therapy”, 26 (4), 2008, s. 297–316, DOI: 10.1111/j.1755-5922.2008.00062.x, PMID: 19035881 (ang.).
  • C. Indiveri, A. Tonazzi, F. Palmieri, Characterization of the unidirectional transport of carnitine catalyzed by the reconstituted carnitine carrier from rat liver mitochondria, „Biochimica et Biophysica Acta”, 1069 (1), 1991, s. 110–116, DOI: 10.1016/0005-2736(91)90110-T, PMID: 1932043 (ang.).
  • Armando J. Parodi, Luis F. Leloir, The role of lipid intermediates in the glycosylation of proteins in the eucaryotic cell, „Biochimica et Biophysica Acta”, 559 (1), 1979, s. 1–37, DOI: 10.1016/0304-4157(79)90006-6, PMID: 375981 (ang.).
  • Ari Helenius, Markus Aebi, Intracellular Functions of N-Linked Glycans, „Science”, 291 (5512), 2001, s. 2364–2369, DOI: 10.1126/science.291.5512.2364, PMID: 11269317 (ang.).
  • Vishal M. Gohil, Miriam L. Greenberg, Mitochondrial membrane biogenesis: phospholipids and proteins go hand in hand, „Journal of Cell Biology”, 184 (4), 2009, s. 469–472, DOI: 10.1083/jcb.200901127, PMID: 19237595 (ang.).
  • Frederic L. Hoch, Cardiolipins and biomembrane function, „Biochimica et Biophysica Acta”, 1113 (1), 1992, s. 71–133, DOI: 10.1016/0304-4157(92)90035-9, PMID: 1550861, Handle: 2027.42/30145 (ang.).
  • Subrahmanyam S. Chirala, Salih J. Wakil, Structure and function of animal fatty acid synthase, „Lipids”, 39 (11), 2004, s. 1045–1053, DOI: 10.1007/s11745-004-1329-9, PMID: 15726818 (ang.).
  • Stephen W. White, Jie Zheng, Yong-Mei Zhang, Charles O. Rock, The structural biology of type II fatty acid biosynthesis, „Annual Review of Biochemistry”, 74, 2005, s. 791–831, DOI: 10.1146/annurev.biochem.74.082803.133524, PMID: 15952903 (ang.).
  • John B. Ohlrogge, Jan G. Jaworski, Regulation of fatty acid synthesis, „Annual Review of Plant Physiology and Plant Molecular Biology”, 48, 1997, s. 109–136, DOI: 10.1146/annurev.arplant.48.1.109, PMID: 15012259 (ang.).
  • Hartmut K. Lichtenthaler, The 1-Dideoxy-D-xylulose-5-phosphate pathway of isoprenoid biosynthesis in plants, „Annual Review of Plant Physiology and Plant Molecular Biology”, 50, 1999, s. 47–65, DOI: 10.1146/annurev.arplant.50.1.47, PMID: 15012203 (ang.).
  • Laura L. Grochowski, Huimin Xu, Robert H. White, Methanocaldococcus jannaschii Uses a Modified Mevalonate Pathway for Biosynthesis of Isopentenyl Diphosphate, „Journal of Bacteriology”, 188 (9), 2006, s. 3192–3198, DOI: 10.1128/JB.188.9.3192-3198.2006, PMID: 16621811, PMCID: PMC1447442 (ang.).
  • G.J. Schroepfer jr., Sterol Biosynthesis, „Annual Review of Biochemistry”, 50, 1981, s. 585–621, DOI: 10.1146/annurev.bi.50.070181.003101, PMID: 7023367 (ang.).
  • N.D. Lees, B. Skaggs, D.R. Kirsch, M. Bard, Cloning of the late genes in the ergosterol biosynthetic pathway of Saccharomyces cerevisiae – A review, „Lipids”, 30 (3), 1995, s. 221–226, DOI: 10.1007/BF02537824, PMID: 7791529 (ang.).
  • Gian Luigi Russo, Dietary n-6 and n-3 polyunsaturated fatty acids: From biochemistry to clinical implications in cardiovascular prevention, „Biochemical Pharmacology”, 77 (6), 2009, s. 937–946, DOI: 10.1016/j.bcp.2008.10.020, PMID: 19022225 (ang.).
  • Natalie D. Riediger, Rgia A. Othman, Miyoung Suh, Mohammed H. Moghadasian, A Systemic Review of the Roles of n-3 Fatty Acids in Health and Disease, „Journal of the American Dietetic Association”, 109 (4), 2009, s. 668–679, DOI: 10.1016/j.jada.2008.12.022, PMID: 19328262 (ang.).
  • Claudio Galli, Patrizia Risé, Fish Consumption, Omega 3 Fatty Acids and Cardiovascular Disease. The Science and the Clinical Trials, „Nutrition and Health”, 20 (1), 2009, s. 11–20, DOI: 10.1177/026010600902000102, PMID: 19326716 (ang.).
  • R. Michac, D. Mozaffarian, Trans fatty acids: Effects on cardiometabolic health and implications for policy, „Prostaglandins, Leukotrienes, and Essential Fatty Acids”, 79 (3–5), 2008, s. 147–152, DOI: 10.1016/j.plefa.2008.09.008, PMID: 18996687 (ang.).
  • I. Dalainas, H.P. Ioannou, The role of trans fatty acids in atherosclerosis, cardiovascular disease and infant development, „International Angiology”, 27 (2), 2008, s. 146–156, PMID: 18427401 (ang.).
  • Dariush Mozaffarian, Walter C. Willett, Trans fatty acids and cardiovascular risk: A unique cardiometabolic imprint?, „Current Atherosclerosis Reports”, 9 (6), 2007, s. 486–493, DOI: 10.1007/s11883-007-0065-9, PMID: 18377789 (ang.).
  • Arne Astrup, Jørn Dyerberg, Matthew Selleck, Steen Stender, Nutrition transition and its relationship to the development of obesity and related chronic diseases, „Obesity Review”, 9 (s1), 2008, s. 48–52, DOI: 10.1111/j.1467-789X.2007.00438.x, PMID: 18307699 (ang.).
  • Arne Astrup, Dietary Management of Obesity, „Journal of Parenteral and Enteral Nutrition”, 32 (5), 2008, s. 575–577, DOI: 10.1177/0148607108321707, PMID: 18753397 (ang.).
  • Shirley A.A. Beresford i inni, Low-Fat Dietary Pattern and Risk of Colorectal Cancer. The Women’s Health Initiative Randomized Controlled Dietary Modification Trial, „Journal of the American Medical Association”, 295 (6), 2006, s. 643–654, DOI: 10.1001/jama.295.6.643, PMID: 16467233 (ang.).
  • Barbara V. Howard i inni, Low-Fat Dietary Pattern and Weight Change Over 7 Years. The Women’s Health Initiative Dietary Modification Trial, „Journal of the American Medical Association”, 295 (1), 2006, s. 39–49, DOI: 10.1001/jama.295.1.39, PMID: 16391215 (ang.).
  • Barbara V. Howard i inni, Low-Fat Dietary Pattern and Risk of Cardiovascular Disease. The Women’s Health Initiative Randomized Controlled Dietary Modification Trial, „Journal of the American Medical Association”, 295 (6), 2006, s. 655–666, DOI: 10.1001/jama.295.6.655, PMID: 16467234 (ang.).

web.archive.org (Global: 1st place; Polish: 1st place)

worldcat.org (Global: 4th place; Polish: 2nd place)

search.worldcat.org