The Composition of IVF Media: References
Embryology & Andrology
Laboratory Science Reference
Laboratory Science Reference
Laboratory Science
The Composition of IVF Media: References
The reference list for The Composition of IVF Media, an IVF Store laboratory science reference.
18. References
This is the reference list for The Composition of IVF Media. Entries are numbered in order of first citation on that page. Each entry links to its PubMed record and DOI where they exist; the small letters after an entry link back to each place it is cited. Where an indexed erratum could not be reviewed, the entry says so.
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- Gardner DK. Changes in requirements and utilization of nutrients during mammalian preimplantation embryo development and their significance in embryo culture. Theriogenology 1998;49(1):83-102. PubMed · DOI ↑ a b
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- Edwards LJ, Williams DA, Gardner DK. Intracellular pH of the preimplantation mouse embryo: effects of extracellular pH and weak acids. Mol Reprod Dev 1998;50(4):434-42. PubMed · DOI ↑ a b c d
- Lane M, Gardner DK. Mitochondrial malate-aspartate shuttle regulates mouse embryo nutrient consumption. J Biol Chem 2005;280(18):18361-7. PubMed · DOI ↑ a b c
- Lane M, Gardner DK. Ammonium induces aberrant blastocyst differentiation, metabolism, pH regulation, gene expression and subsequently alters fetal development in the mouse. Biol Reprod 2003;69(4):1109-17. PubMed · DOI ↑ a b c d e f g h i j
- Swain JE. Optimizing the culture environment in the IVF laboratory: impact of pH and buffer capacity on gamete and embryo quality. Reprod Biomed Online 2010;21(1):6-16. PubMed · DOI ↑ a b c d e f g
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- Kleijkers SH, Mantikou E, Slappendel E, Consten D, van Echten-Arends J, Wetzels AM, et al. Influence of embryo culture medium (G5 and HTF) on pregnancy and perinatal outcome after IVF: a multicenter RCT. Hum Reprod 2016;31(10):2219-30. PubMed · DOI ↑ a b c d e
- Market-Velker BA, Fernandes AD, Mann MR. Side-by-side comparison of five commercial media systems in a mouse model: suboptimal in vitro culture interferes with imprint maintenance. Biol Reprod 2010;83(6):938-50. PubMed · DOI ↑ a b c
- Sonigo C, Ahdad-Yata N, Pirtea P, Solignac C, Grynberg M, Sermondade N. Do IVF culture conditions have an impact on neonatal outcomes? A systematic review and meta-analysis. J Assist Reprod Genet 2024;41(3):563-580. PubMed · DOI ↑ a b c
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- Schini SA, Bavister BD. Two-cell block to development of cultured hamster embryos is caused by phosphate and glucose. Biol Reprod 1988;39(5):1183-92. PubMed · DOI ↑ a b c d e
- Chatot CL, Ziomek CA, Bavister BD, Lewis JL, Torres I. An improved culture medium supports development of random-bred 1-cell mouse embryos in vitro. J Reprod Fertil 1989;86(2):679-88. PubMed · DOI ↑ a b c d
- Lawitts JA, Biggers JD. Overcoming the 2-cell block by modifying standard components in a mouse embryo culture medium. Biol Reprod 1991;45(2):245-51. PubMed · DOI ↑
- Devreker F, Hardy K. Effects of glutamine and taurine on preimplantation development and cleavage of mouse embryos in vitro. Biol Reprod 1997;57(4):921-8. PubMed · DOI ↑
- Edwards RG, Steptoe PC, Purdy JM. Fertilization and cleavage in vitro of preovulator human oocytes. Nature 1970;227(5265):1307-9. PubMed · DOI ↑
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- Menezo Y. [Synthetic medium for gamete survival and maturation and for culture of fertilized eggs]. C R Acad Hebd Seances Acad Sci D 1976;282(22):1967-70. PubMed ↑
- Quinn P, Warnes GM, Kerin JF, Kirby C. Culture factors in relation to the success of human in vitro fertilization and embryo transfer. Fertil Steril 1984;41(2):202-9. PubMed · DOI ↑ a b c
- Menezo Y, Testart J, Perrone D. Serum is not necessary in human in vitro fertilization, early embryo culture, and transfer. Fertil Steril 1984;42(5):750-5. PubMed · DOI ↑ a b c
- Lippes J, Enders RG, Pragay DA, Bartholomew WR. The collection and analysis of human fallopian tubal fluid. Contraception 1972;5(2):85-103. PubMed · DOI ↑
- Borland RM, Biggers JD, Lechene CP, Taymor ML. Elemental composition of fluid in the human Fallopian tube. J Reprod Fertil 1980;58(2):479-82. PubMed · DOI ↑ a b c d e f g
- Quinn P, Kerin JF, Warnes GM. Improved pregnancy rate in human in vitro fertilization with the use of a medium based on the composition of human tubal fluid. Fertil Steril 1985;44(4):493-8. PubMed · DOI ↑ a b c d e f g h i j k
- Quinn P. Enhanced results in mouse and human embryo culture using a modified human tubal fluid medium lacking glucose and phosphate. J Assist Reprod Genet 1995;12(2):97-105. PubMed · DOI ↑ a b c
- Quinn P, Moinipanah R, Steinberg JM, Weathersbee PS. Successful human in vitro fertilization using a modified human tubal fluid medium lacking glucose and phosphate ions. Fertil Steril 1995;63(4):922-4. PubMed · DOI ↑ a b c
- Artini PG, Valentino V, Cela V, Cristello F, Vitè A, Genazzani AR. A randomized control comparison study of culture media (HTF versus P1) for human in vitro fertilization. Eur J Obstet Gynecol Reprod Biol 2004;116(2):196-200. PubMed · DOI ↑
- Coates A, Rutherford AJ, Hunter H, Leese HJ. Glucose-free medium in human in vitro fertilization and embryo transfer: a large-scale, prospective, randomized clinical trial. Fertil Steril 1999;72(2):229-32. PubMed · DOI ↑ a b
- Quinn P, Horstman FC. Is the mouse a good model for the human with respect to the development of the preimplantation embryo in vitro? Hum Reprod 1998;13 Suppl 4:173-83. PubMed · DOI ↑ a b c
- Quinn P. Review of media used in ART laboratories. J Androl 2000;21(5):610-5. PubMed · DOI Erratum in: J Androl 2000;21(6):902 (not retrievable; the statement supported here is a general attribution that does not depend on a specific value). ↑
- Quinn P. The development and impact of culture media for assisted reproductive technologies. Fertil Steril 2004;81(1):27-9. PubMed · DOI ↑
- Lawitts JA, Biggers JD. Optimization of mouse embryo culture media using simplex methods. J Reprod Fertil 1991;91(2):543-56. PubMed · DOI ↑ a b c d e
- Lawitts JA, Biggers JD. Joint effects of sodium chloride, glutamine, and glucose in mouse preimplantation embryo culture media. Mol Reprod Dev 1992;31(3):189-94. PubMed · DOI ↑ a b c d
- Biggers JD, Lawitts JA, Lechene CP. The protective action of betaine on the deleterious effects of NaCl on preimplantation mouse embryos in vitro. Mol Reprod Dev 1993;34(4):380-90. PubMed · DOI ↑
- Erbach GT, Lawitts JA, Papaioannou VE, Biggers JD. Differential growth of the mouse preimplantation embryo in chemically defined media. Biol Reprod 1994;50(5):1027-33. PubMed · DOI Erratum in: Biol Reprod 1994;51(2):345 (not retrievable; the KSOM composition in Table 1b is that of Lawitts and Biggers 1993 and agrees with the composition as reviewed by Summers and Biggers 2003). ↑ a b c
- Lawitts JA, Biggers JD. Culture of preimplantation embryos. Methods Enzymol 1993;225:153-64. PubMed · DOI ↑ a b c
- Ho Y, Wigglesworth K, Eppig JJ, Schultz RM. Preimplantation development of mouse embryos in KSOM: augmentation by amino acids and analysis of gene expression. Mol Reprod Dev 1995;41(2):232-8. PubMed · DOI ↑
- Rinaudo P, Schultz RM. Effects of embryo culture on global pattern of gene expression in preimplantation mouse embryos. Reproduction 2004;128(3):301-11. PubMed · DOI ↑
- Biggers JD, McGinnis LK, Raffin M. Amino acids and preimplantation development of the mouse in protein-free potassium simplex optimized medium. Biol Reprod 2000;63(1):281-93. PubMed · DOI ↑ a b c d
- Baltz JM. Media composition: salts and osmolality. Methods Mol Biol 2012;912:61-80. PubMed · DOI ↑ a b
- Gardner DK, Lane M. Amino acids and ammonium regulate mouse embryo development in culture. Biol Reprod 1993;48(2):377-85. PubMed · DOI ↑ a b c d e f
- Lane M, Gardner DK. Increase in postimplantation development of cultured mouse embryos by amino acids and induction of fetal retardation and exencephaly by ammonium ions. J Reprod Fertil 1994;102(2):305-12. PubMed · DOI ↑ a b c d
- Lane M, Gardner DK. Differential regulation of mouse embryo development and viability by amino acids. J Reprod Fertil 1997;109(1):153-64. PubMed · DOI ↑ a b c
- Gardner DK, Lane M. Culture and selection of viable blastocysts: a feasible proposition for human IVF? Hum Reprod Update 1997;3(4):367-82. PubMed · DOI ↑ a b c d
- Gardner DK, Lane M. Culture of viable human blastocysts in defined sequential serum-free media. Hum Reprod 1998;13 Suppl 3:148-59; discussion 160. PubMed · DOI ↑ a b c d e
- Gardner DK, Lane M, Calderon I, Leeton J. Environment of the preimplantation human embryo in vivo: metabolite analysis of oviduct and uterine fluids and metabolism of cumulus cells. Fertil Steril 1996;65(2):349-53. PubMed · DOI ↑ a b c d e
- Gardner DK, Vella P, Lane M, Wagley L, Schlenker T, Schoolcraft WB. Culture and transfer of human blastocysts increases implantation rates and reduces the need for multiple embryo transfers. Fertil Steril 1998;69(1):84-8. PubMed · DOI ↑
- Gardner DK, Lane M, Stevens J, Schlenker T, Schoolcraft WB. Blastocyst score affects implantation and pregnancy outcome: towards a single blastocyst transfer. Fertil Steril 2000;73(6):1155-8. PubMed · DOI ↑
- Summers MC, Biggers JD. Chemically defined media and the culture of mammalian preimplantation embryos: historical perspective and current issues. Hum Reprod Update 2003;9(6):557-82. PubMed · DOI ↑ a b c
- Biggers JD, Racowsky C. The development of fertilized human ova to the blastocyst stage in KSOM(AA) medium: is a two-step protocol necessary? Reprod Biomed Online 2002;5(2):133-40. PubMed · DOI ↑ a b
- Biggers JD, Summers MC. Choosing a culture medium: making informed choices. Fertil Steril 2008;90(3):473-83. PubMed · DOI ↑ a b c d
- Gardner DK. Dissection of culture media for embryos: the most important and less important components and characteristics. Reprod Fertil Dev 2008;20(1):9-18. PubMed · DOI ↑ a b
- Sfontouris IA, Martins WP, Nastri CO, Viana IG, Navarro PA, Raine-Fenning N, et al. Blastocyst culture using single versus sequential media in clinical IVF: a systematic review and meta-analysis of randomized controlled trials. J Assist Reprod Genet 2016;33(10):1261-1272. PubMed · DOI ↑ a b
- Dieamant F, Petersen CG, Mauri AL, Comar V, Mattila M, Vagnini LD, et al. Single versus sequential culture medium: which is better at improving ongoing pregnancy rates? A systematic review and meta-analysis. JBRA Assist Reprod 2017;21(3):240-246. PubMed · DOI ↑ a b
- Restall BJ, Wales RG. The fallopian tube of the sheep. 3. The chemical composition of the fluid from the fallopian tube. Aust J Biol Sci 1966;19(4):687-98. PubMed · DOI ↑
- Tervit HR, Whittingham DG, Rowson LE. Successful culture in vitro of sheep and cattle ova. J Reprod Fertil 1972;30(3):493-7. PubMed · DOI ↑
- Thompson JG, Simpson AC, Pugh PA, Donnelly PE, Tervit HR. Effect of oxygen concentration on in-vitro development of preimplantation sheep and cattle embryos. J Reprod Fertil 1990;89(2):573-8. PubMed · DOI ↑
- Takahashi Y, First NL. In vitro development of bovine one-cell embryos: Influence of glucose, lactate, pyruvate, amino acids and vitamins. Theriogenology 1992;37(5):963-78. PubMed · DOI ↑
- Telford NA, Watson AJ, Schultz GA. Transition from maternal to embryonic control in early mammalian development: a comparison of several species. Mol Reprod Dev 1990;26(1):90-100. PubMed · DOI ↑
- Gardner DK, Lane M, Spitzer A, Batt PA. Enhanced rates of cleavage and development for sheep zygotes cultured to the blastocyst stage in vitro in the absence of serum and somatic cells: amino acids, vitamins, and culturing embryos in groups stimulate development. Biol Reprod 1994;50(2):390-400. PubMed · DOI ↑ a b c d e
- Steeves TE, Gardner DK. Temporal and differential effects of amino acids on bovine embryo development in culture. Biol Reprod 1999;61(3):731-40. PubMed · DOI ↑
- Holm P, Booth PJ, Schmidt MH, Greve T, Callesen H. High bovine blastocyst development in a static in vitro production system using SOFaa medium supplemented with sodium citrate and myo-inositol with or without serum-proteins. Theriogenology 1999;52(4):683-700. PubMed · DOI ↑
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- Thompson JG, Gardner DK, Pugh PA, McMillan WH, Tervit HR. Lamb birth weight is affected by culture system utilized during in vitro pre-elongation development of ovine embryos. Biol Reprod 1995;53(6):1385-91. PubMed · DOI ↑ a b c d
- Young LE, Sinclair KD, Wilmut I. Large offspring syndrome in cattle and sheep. Rev Reprod 1998;3(3):155-63. PubMed · DOI ↑ a b c
- Ferré LB, Kjelland ME, Strøbech LB, Hyttel P, Mermillod P, Ross PJ. Review: Recent advances in bovine in vitro embryo production: reproductive biotechnology history and methods. Animal 2020;14(5):991-1004. PubMed · DOI ↑
- Gardner DK, Leese HJ. Concentrations of nutrients in mouse oviduct fluid and their effects on embryo development and metabolism in vitro. J Reprod Fertil 1990;88(1):361-8. PubMed · DOI ↑
- Tay JI, Rutherford AJ, Killick SR, Maguiness SD, Partridge RJ, Leese HJ. Human tubal fluid: production, nutrient composition and response to adrenergic agents. Hum Reprod 1997;12(11):2451-6. PubMed · DOI ↑
- Casslén B, Nilsson B. Human uterine fluid, examined in undiluted samples for osmolarity and the concentrations of inorganic ions, albumin, glucose, and urea. Am J Obstet Gynecol 1984;150(7):877-81. PubMed · DOI ↑ a b
- Leese HJ, Tay JI, Reischl J, Downing SJ. Formation of Fallopian tubal fluid: role of a neglected epithelium. Reproduction 2001;121(3):339-46. PubMed · DOI ↑
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- Utsunomiya T, Yao T, Itoh H, Kai Y, Kumasako Y, Setoguchi M, et al. Creation, effects on embryo quality, and clinical outcomes of a new embryo culture medium with 31 optimized components derived from human oviduct fluid: A prospective multicenter randomized trial. Reprod Med Biol 2022;21(1):e12459. PubMed · DOI ↑
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- Dumoulin JC, Menheere PP, Evers JL, Kleukers AP, Pieters MH, Bras M, et al. The effects of endotoxins on gametes and preimplantation embryos cultured in vitro. Hum Reprod 1991;6(5):730-4. PubMed · DOI ↑ a b c d
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- Consensus Group C. 'There is only one thing that is truly important in an IVF laboratory: everything' Cairo Consensus Guidelines on IVF Culture Conditions. Reprod Biomed Online 2020;40(1):33-60. PubMed · DOI ↑ a b c d e f g h i j k l m n o
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- Baltz JM, Tartia AP. Cell volume regulation in oocytes and early embryos: connecting physiology to successful culture media. Hum Reprod Update 2010;16(2):166-76. PubMed · DOI ↑ a b
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- Hammer MA, Kolajova M, Léveillé M, Claman P, Baltz JM. Glycine transport by single human and mouse embryos. Hum Reprod 2000;15(2):419-26. PubMed · DOI ↑
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- Abdala A, Elkhatib I, Bayram A, Arnanz A, El-Damen A, Melado L, et al. Different CO2 settings (6.0% vs 7.0%) do have an impact on extracellular pH of culture medium (pHe) and euploidy rates rather than on blastocyst development: a sibling oocyte study. J Assist Reprod Genet 2021;38(11):2915-2923. PubMed · DOI ↑
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- Lane M, Baltz JM, Bavister BD. Bicarbonate/chloride exchange regulates intracellular pH of embryos but not oocytes of the hamster. Biol Reprod 1999;61(2):452-7. PubMed · DOI ↑ a b c d e f
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