Farber S.A., Slack B.E. and Blusztajn J.K. (2000). Acceleration of phosphatidylcholine synthesis and breakdown by inhibitors of mitochondrial function in neuronal cells: A model of the membrane defect of Alzheimer's disease. FASEB J. 14:2198-2206.
Farber S.A., Pack, M, Ho, S.Y., Johnson, I.D., Wagner, D.S., Dosch, R., Mullins, M.C., Hendrickson S., Hendrickson E.K. and Halpern M.E (2001). Genetic analysis of digestive physiology using fluorescent phospholipid reporters. Science 292:1385-1388.
Farber S.A., Olson E. and Halpern M.E. (2003). The zebrafish annexin gene family. Genome Research 13:1082-1096.
Urtishak K.A., Choob M., Tian X., Sternheim N., Talbot W.S.,Wickstrom E. and Farber, S.A. (2003). Targeted gene disruption in zebrafish using negatively charged antisense nucleic acids. Developmental Dynamics 228:405-413.
Thorpe J.L., Doitsidou M., Ho S.Y., Raz E. and Farber, S.A. (2004). Germ cell migration in zebrafish is dependent on HMG-CoA reductase activity and prenylation. Developmental Cell 6:295-302.
Markova M., Koratkar R.A., Silverman K.A., Sollars V.E. MacPhee-Pellini M., Walters R., Palazzo J.P., Buchberg A.M., Siracusa L.D. and Farber S.A. (2005). Diversity in secreted PLA2-IIA activity among inbred mouse strains that are resistant or susceptible to Apc tumorigenesis. Oncogene 24:6450-6458.
Pickart M.A., Klee E.W., Nielsen A.L., Sivasubbu S., Mendenhall E.M, Bill B.R. Chen E., Eckfeld C.E., Knowlton M., Robu M.E., Larson J.D., Deng Y., Schimmenti L.A., Ellis L.B.M., Verfaillie C.M., Hammerschmidt M, Farber S.A. and Ekker S.C. (2006). Genome-Wide Reverse Genetics Framework to Identify Novel Functions of the Vertebrate Secretome. PLoS ONE. 1:e104.
Ghiselli G. and Farber S.A. (2005). D-glucuronyl C5-epimerase acts in dorso-ventral axis formation in zebrafish. BMC Dev. Biology 5:19.
Mulligan T.S., and Farber S.A. (2005). A “Block and Rescue” Pharmacogenetic Approach to Dissecting a Biochemical Pathway Controlling Germ Cell Migration. Zebrafish. 1:343-347.
Ho S.Y., Lorent K., Pack M., and Farber S.A. (2006). Zebrafish fat-free is required for intestinal lipid absorbption and Golgi apparatus structure. Cell Metabolism 3(4):289-300.
Robu M.E., Larson J.D., Nasevicius A., Beiraghi S., Brenner C., Farber S.A. and Ekker S.C. (2007). p53 activation by knockdown technologies. PLoS Genet. 3(5):e78.
Hama K., Provost E, Baranowski T.C., Rubinstein A.L., Anderson J.L, Leach S.D. and Farber S.A. (2009). In vivo imaging of zebrafish digestive organ function using multiple quenched fluorescent reporters. Am J Physiol Gastrointest Liver Physiol. 296(2):G445-53.
Farber S.A. (2009). U.S. Scientists’ Role in the Eugenics Movement (1907–1939): A Contemporary Biologist’s Perspective. Zebrafish 5(4):243-5.
Carten J.D. and Farber S.A. (2009). A new model system swims into focus: Using the zebrafish to visualize intestinal lipid metabolism in vivo. Clinical Lipidology, 4(4):501-515.
Mulligan T., Blaser H., Raz E. and Farber S.A. (2010). Prenylation-deficient G protein gamma subunits disrupt GPCR signaling in the zebrafish. Cell Signaling, 2:221-33.
Anderson J.L., Macurak M.L., Halpern M.E. and Farber S.A. (2010). A versatile aquatics facility inventory system with real-time barcode scan entry. Zebrafish, 7(3):281-7.
Clifton J.D., Lucumi E., Myers M.C., Napper A., Hama K., Farber S.A., Smith A.B., Huryn D.M., Diamond S.L. and Pack M. (2010). Identification of novel inhibitors of dietary lipid absorption using zebrafish. PLoS One. Aug 25;5(8). pii: e12386.
Mulligan T. and Farber S.A. (2011). Central and c-terminal domains of heterotrimeric G protein gamma subunits differentially influence the signaling necessary for primordial germ cell migration. Cell Signal. 10:1617-24.
Carten J.D., Bradford M.K. and Farber S.A. (2011). Visualizing digestive organ morphology and function using differential fatty acid metabolism in live zebrafish. Dev Biol. 360(2):276-85.
Zeituni E.M.and Farber SA, (2012) We see the light: chemical-genetic protein regulation. Chem. Biol. 19(3):311-312.
Ottis J.P. and Farber S.A. (2012) Imaging vertebrate digestive function and lipid metabolism in vivo. Drug Discovery Today (in press).
Avraham-Davidi I., Ely Y., Pham, V.N., Castranova, D., Lo, B., Allmog G., Chen, T.T., Ungos, J. 2, Kidd, K., Shaw, K., Farber, S.A., Shelness, G.S., Iruela-Arispe, M.L., Weinstein, B.M. and Yaniv, K. (2012). Lipoprotein levels regulate angiogenesis by modulating expression of Vegfr1. Nature Medicine (in press).
Delous M., Yin C., Shin D., Ninov N., Carten J.D., Pan L., Ma T.P., Farber S.A., Moens C.B. and Stainier D.Y.R. (2012). sox9b is a key regulator of pancreaticobiliary ductal. PLoS Genetics (in press).
Walters J.W., Anderson J.L., Bittman T., Pack M. and Farber S.A. (2012). Visualization of lipid metabolism in the larval zebrafish intestine reveals a relationship between NPC1L1 mediated cholesterol uptake and dietary fatty acids. Chem. Biol. (in press)