Crawford, R. W., Rosales-Reyes, R., Ramirez-Aguilar, Maria de la Luz, Chapa-Azuela, O., Alpuche-Aranda, C., and Gunn, J. S.: Gallstones play a significant role in Salmonella spp. gallbladder colonization and carriage, P. Natl. Acad. Sci. USA, 107, 4353–4358, https://doi.org/10.1073/pnas.1000862107, 2010.
Idris, S. A., Elsiddig, K. E., Hamza, A. A., Hafiz, M. M., and Shalayel, M. H. F.: Extensive Quantitative Analysis of Gallstones, IJCM, 05, 42–50, https://doi.org/10.4236/ijcm.2014.51009, 2014.
Kumar, V., Abbas, A. K., Aster, J. C., and Perkins, J. A.: Robbins and Cotran pathologic basis of disease, Ninth edition, Elsevier/Saunders, Philadelphia, PA, xvi, 1391, 2015.
Lieberman, M. T., Wachtman, L. M., Marini, R. P., Bakthavatchalu, V., and Fox, J. G.: Spontaneous Cholelithiasis in a Squirrel Monkey (
Saimiri sciureus), Comparative Med., 66, 63-67, 2016.
Misra, S., Chaturvedi, A., Misra, N. C., and Sharma, I. D.: Carcinoma of the gallbladder, Lancet Oncol., 4, 167–176, https://doi.org/10.1016/S1470-2045(03)01021-0, 2003.
Osuga, T. and Portman, O. W.: Experimental formation of gallstones in the squirrel monkey, Proceedings of the Society for Experimental Biology and Medicine, Society for Experimental Biology and Medicine (New York, NY), 136, 722–726, 1971.
Pissinatti, A., da Cruz, J. B., do Nascimento, M. D., da Rocha e Silva, R., and Coimbra-Filho, A. F.: Spontaneous gallstones in marmosets and tamarins (Callitrichidae, primates), Folia primatologica, Int. J. Primatol., 59, 44–50, 1992.
Plesker, R., Schulze, H., and Schuhmacher, A.: Gallstones in slender lorises (Loris tardigradus), J. Zoo Wildlife Med., 43, 473–478, https://doi.org/10.1638/2011-0084R1.1, 2012.
Prevot, S.: Pathology of the gallbladder and extra-hepatic bile ducts, Cases 2 and 3, Chronic cholecystitis, Ann. Pathol., 34, 279–287, https://doi.org/10.1016/j.annpat.2014.06.007, 2014.
Pullinger, C. R., Eng, C., Salen, G., Shefer, S., Batta, A. K., Erickson, S. K., Verhagen, A., Rivera, C. R., Mulvihill, S. J., Malloy, M. J., and Kane, J. P.: Human cholesterol 7alpha-hydroxylase (CYP7A1) deficiency has a hypercholesterolemic phenotype, J. Clin. Invest., 110, 109–117, https://doi.org/10.1172/JCI15387, 2002.
Rosmorduc, O., Hermelin, B., Boelle, P., Parc, R., Taboury, J., and Poupon, R.: ABCB4 gene mutation – associated cholelithiasis in adults, Gastroenterology, 125, 452–459, https://doi.org/10.1016/S0016-5085(03)00898-9, 2003.
Rudel, L., Deckelman, C., Wilson, M., Scobey, M., and Anderson, R.: Dietary cholesterol and downregulation of cholesterol 7 alpha-hydroxylase and cholesterol absorption in African green monkeys, J. Clin. Invest., 93, 2463–2472, https://doi.org/10.1172/JCI117255, 1994.
Rudel, L. L., Davis, M., Sawyer, J., Shah, R., and Wallace, J.: Primates highly responsive to dietary cholesterol up-regulate hepatic ACAT2, and less responsive primates do not, J. Biol. Chem., 277, 31401–31406, https://doi.org/10.1074/jbc.M204106200, 2002.
Shaffer, E. A.: Epidemiology and risk factors for gallstone disease: has the paradigm changed in the 21st century?, Current gastroenterology Reports, 7, 132–140, 2005.
Shaffer, E. A.: Gallstone disease: Epidemiology of gallbladder stone disease, Best practice & research, Clin. Gastroenterol. H., 20, 981–996, https://doi.org/10.1016/j.bpg.2006.05.004, 2006.
Slingluff, J. L., Williams, J. T., Blau, L., Blau, A., Dick, E. J. J. R., and Hubbard, G. B.: Spontaneous gallbladder pathology in baboons, J. Med. Primatol., 39, 92–96, https://doi.org/10.1111/j.1600-0684.2009.00387.x, 2010.
Smith, K. M., Calle, P., Raphael, B. L., James, S., Moore, R., McAloose, D., and Baitchman, E.: Cholelithiasis in four callitrichid species (Leontopithecus, Callithrix), J. Zoo Wildlife Med., 37, 44–48, https://doi.org/10.1638/05-032.1, 2006.
Swidsinski, A.: Bacterial colonization of gallstones, Zeitschrift fur arztliche Fortbildung, 86, 363–366, 1992.
Swidsinski, A. and Lee, S. P.: The role of bacteria in gallstone pathogenesis, Frontiers in bioscience a journal and virtual library, 6, 93–103, 2001.
Swidsinski, A., Ludwig, W., Pahlig, H., and Priem, F.: Molecular genetic evidence of bacterial colonization of cholesterol gallstones, Gastroenterology, 108, 860–864, 1995.
Tanaka, N., Portman, O. W., and Osuga, T.: Effect of type of dietary fat, cholesterol and chenodeoxycholic acid on gallstone formation, bile acid kinetics and plasma lipids in squirrel monkeys, J. Nutr., 106, 1123–1134, 1976.
Tazuma, S.: Gallstone disease: Epidemiology, pathogenesis, and classification of biliary stones (common bile duct and intrahepatic), Best practice & research, Clin. Gastroenterol. H., 20, 1075–1083, https://doi.org/10.1016/j.bpg.2006.05.009, 2006.
van Mil, S. W., van der Woerd, Wendy L., van der Brugge, G., Sturm, E., Jansen, P. L., Bull, L. N., van den Berg, Inge E.T., Berger, R., Houwen, R. H., and Klomp, L. W.: Benign recurrent intrahepatic cholestasis type 2 is caused by mutations in ABCB11, Gastroenterology, 127, 379–384, https://doi.org/10.1053/j.gastro.2004.04.065, 2004.
Wang, D. Q.-H. and Lee, S. P.: Physical chemistry of intestinal absorption of biliary cholesterol in mice, Hepatology, 48, 177–185, https://doi.org/10.1002/hep.22286, 2008.