References
- Addisu, A., Adriaensen, W., Balew, A., Asfaw, M., Diro, E., Djirmay, A.G., Gebree, D., Seid G., Begashaw, H., Harries, A.D. et al. (2019): Neglected tropical diseases and the sustainable development goals: an urgent call for action from the front line. BMJ Glob Health, 4(1): e001334. DOI: 10.1136/bmjgh-2018-001334
- Adepoju, P. (2020): NTDs in the time of COVID-19. Lancet Microbe, 1(6): e244. DOI: 10.1016/S2666-5247(20)30153-1
- Almanfaluthi, M., Widodo, S., Suttiprapa, S., Wongsaroj, T., Sripa, B. (2022): The burden of opisthorchiasis and leptospirosis in Thailand: A nationwide syndemic analysis. Acta Trop, 226: 106227. DOI: 10.1016/j.actatropica.2021.106227
- Alsaleh, M., Leftley, Z., Barbera, T. A., Sithithaworn, P., Khuntikeo, N., Loilome, W., Yongvanit, P., Cox, I.J., Chamodol, N., Syms, R.R., Andrews, R.H., Taylor-Robinson, S.D. (2019): Cholangiocarcinoma: a guide for the nonspecialist. Int J Gen Med, 12: 13 – 23. DOI: 10.2147/ijgm.s186854
- Arimatsu Y., Kaewkes S., Laha T., Hong S.-J., Sripa B. (2012): Rapid detection of Opisthorchis viverrini copro-DNA using loop-mediated isothermal amplification (LAMP). Parasitol Int, 61: 178 – 182. DOI: 10.1016/j.parint.2011.08.009
- Banks, L., Carbone, A., Blum, H., Cesarman, E. (2012): Biological agents: A review of human carcinogens. IARC Monogr, 100: 49.
- Bao, F., Liu, J., Chen, H., Miao, L., Xu, Z., Zhang, G. (2022): Diagnosis Biomarkers of Cholangiocarcinoma in Human Bile: An Evidence-Based Study. Cancers, 14(16): 3921. DOI: 10.3390/cancers14163921
- Brindley, P.J., Bachini, M., Ilyas, S.I., Khan, S.A., Loukas, A., Sirica, A.E., The, B.T., Gores, G.J. (2021): Cholangiocarcinoma. Nat Rev Dis Primers, 7(1): 65. DOI: 10.1038/s41572-021-00300-2
- Chai, J.-Y., Jung, B.-K. (2020): Foodborne intestinal flukes: A brief review of epidemiology and geographical distribution. Acta Trop, 201: 105210. DOI: 10.1016/j.actatropica.2019.105210
- Chaiyadet, S., Sotillo, J., Smout, M., Cantacessi, C., Jones, M.K., Johnson, M.S., Turnbull, L., Whitchurch. C.B., Potriquet, J., Laohaviroj, M. et al. (2015): Carcinogenic liver fluke secretes extracellular vesicles that promote cholangiocytes to adopt a tumorigenic phenotype. J Infect Dis, 212(10): 1636 – 1645. DOI: 10.1093/infdis/jiv291
- Chang, Y.-C., Chen, M.-H., Yeh, C.-N., Hsiao, M. (2020): Omics-Based Platforms: Current Status and Potential Use for Cholangiocarcinoma. Biomolecules, 10(10): 1377. DOI: 10.3390/biom10101377
- Chansitthichok, S., Chamnan, P., Sarkhampee, P., Lertsawatvicha, N., Voravisutthikul, P., Wattanarath, P. (2020): Survival of Patients with Cholangiocarcinoma Receiving Surgical Treatment in an O. viverrini Endemic Area in Thailand: A Retrospective Cohort Study. Asian Pac J Cancer Prev, 21(4): 903 – 909. DOI: 10.31557/apjcp.2020.21.4.903
- Charoensuk, L., Ribas, A., Chedtabud, K., Prakobwong, S. (2022): Infection rate of Opisthorchis viverrini metacercariae in cyprinoid fish from the markets and its association to human opisthorchiasis in the local community in the Northeast Thailand. Acta Trop, 225: 106216. DOI: 10.1016/j.actatropica.2021.106216
- Charoensuk, L., Subrungruang, I., Mungthin, M., Pinlaor, S., Suwannahitatorn, P. (2019): Comparison of stool examination techniques to detect Opisthorchis viverrini in low intensity infection. Acta Trop, 191: 13 – 16. DOI:10.1016/j.actatropica.2018.12.018
- Drurey, C., Maizels, R. M. (2021): Helminth extracellular vesicles: Interactions with the host immune system. Mol Immunol, 137: 124 – 133. DOI: 10.1016/j.molimm.2021.06.017
- Echaubard, P., Sripa, B., Mallory, F. F., Wilcox, B. A. (2016): The role of evolutionary biology in research and control of liver flukes in Southeast Asia. Infect Genet Evol, 43: 381 – 397. DOI: 10.1016/j.meegid.2016.05.019
- El Jabbour, T., Lagana, S. M., Lee, H. (2019): Update on hepatocellular carcinoma: Pathologists’ review. World J Gastroenterol, 25(14): 1653 – 1665. DOI: 10.3748/wjg.v25.i14.1653
- Fedorova, O.S., Fedotova, M.M., Zvonareva, O.I., Mazeina, S.V., Kovshirina, Y.V., Sokolova, T.S., Golovach, E.A., Kovshirina, A.E., Konovalova, U.V., Kolomeets, I.L., Gutor, S.S., Petrov, V.A., Hattendorf, J., Ogorodova, L.M., Odermatt, P. (2020): Opisthorchis felineus infection, risks, and morbidity in rural Western Siberia, Russian Federation. PLoS Negl Trop Dis, 14(6): e0008421. DOI: 10.1371/journal.pntd.0008421
- Fedorova, O.S., Kovshirina, A.E., Kovshirina, Y.V., Hattendorf, J., Onishchenko, S.V., Katanakhova, L.L., Taslicki, S.S., Chizhikov, A.V., Tataurov, I.A., Vtorushin, S.V., Sripa, B., Ogorodova, L.M., Odermatt, P. (2023): Opisthorchis felineus Infection is a Risk Factor for Cholangiocarcinoma in Western Siberia: A Hospital-based Case-control Study. Clin Infect Dis, 76(3): e1392 – e1398. DOI: 10.1093/cid/ciac497
- Fried, B., Abruzzi, A. (2010): Food-borne trematode infections of humans in the United States of America. Parasitol Res, 106(6): 1263 – 1280. DOI: 10.1007/s00436-010-1807-0
- Gao, Y., Li, Y., Liu, X., Zhang, T., Yu, G., Wang, Y., Shi, Y., Chi, X., Wang, X., Gao, X., Wu, R., Zhang, Y., Hang, L., Sun, S., Guan, Y., Xu, Y., Meng, J., Liu, X., Jiang, C., Ma, H., Luo, L., Yang, Q., Yin, X., Peng, F., Zhi, Y., Qu, W., Zhang, X., Ren, T., Liu, L., Zhao, J., Zhang, F., Yakepu, A., Pan, Y., Xu, H., Niu, J. (2020): High prevalence of Clonorchis sinensis infections and coinfection with hepatitis virus in riverside villages in northeast China. Sci Rep, 10(1): 11749. DOI: 10.1038/s41598-020-68684-x
- Haga, H., Yan, I., Takahashi, K., Wood, J., Patel, T. (2014): Emerging insights into the role of microRNAs in the pathogenesis of cholangiocarcinoma. Gene Expr, 16(2): 93 – 99. DOI: 10.3727/105221614X13919976902174
- Hotez, P.J. (2020): NTDs in the 2020s: An epic struggle of effective control tools versus the Anthropocene. PLoS Negl Trop Dis, 14(9): e0007872. DOI: 10.1371/journal.pntd.0007872
- Hughes, T., O’Connor, T., Techasen, A., Namwat, N., Loilome, W., Andrews, R.H., Khuntikeo, N., Yongvanit, P., Sithithaworn, P., Taylor-Robinson, S.D. (2017): Opisthorchiasis and cholangiocarcinoma in Southeast Asia: an unresolved problem. Int J Gen Med, 10: 227 – 237. DOI: 10.2147/IJGM.S133292
- Jaiswal, M., Larusso, N. F., Burgart, L. J., Gores, G. J. (2000): Inflammatory cytokines induce DNA damage and inhibit DNA repair in cholangiocarcinoma cells by a nitric oxide-dependent mechanism. Cancer Res, 60(1): 184 – 190. DOI: 10.1053/gast.2001.20875
- Jaiswal, M., Larusso, N.F., Gores, G.J. (2001): Nitric oxide in gastrointestinal epithelial cell carcinogenesis: linking inflammation to oncogenesis. Am J Physiol Gastrointest Liver Physiol, 281(3): G626 – G634. DOI: 10.1152/ajpgi.2001.281.3.G626
- Jiang, Z.-H., Wan, X.-L., Lv, G.-L., Zhang, W.-W., Lin, Y., Tang, W.-Q., Wei, H.Y., Ou, F.Q., Shi, Y.L., Yang, Y.C., Liu, J., Chan, C.H.F. (2021): High prevalence of Clonorchis sinensis infection in Guangxi, Southern China. Trop Med Health, 49(1): 6. DOI: 10.1186/s41182-021-00297-0
- Joo, K.R., Kim, D.H., Park, J.H., Bang, S.J., Shin, J.W., Park, N.H., Park, J.H. (2003): The role of bile carcinoembryonic antigen in diagnosing bile duct cancer. J Korean Med Sci, 18(6): 855 – 858. DOI: 10.3346/jkms.2003.18.6.855
- Kaewkes, S. (2003): Taxonomy and biology of liver flukes. Acta Trop, 88(3): 177 – 186. DOI: 10.1016/j.actatropica.2003.05.001
- Kaewkong, W., Intapan, P.M., Sanpool, O., Janwan, P., Thanchomnang, T., Laummaunwai, P., Lulitanond., V., Doanh, P.N., Maleewong, W. (2013): Molecular differentiation of Opisthorchis viverrini and Clonorchis sinensis eggs by multiplex real-time PCR with high resolution melting analysis. Korean J Parasitol, 51(6): 689 – 694. DOI: 10.3347/kjp.2013.51.6.689
- Kawanishi, S., Hiraku, Y., Pinlaor, S, Ma, N. (2006): Oxidative and nitrative DNA damage in animals and patients with inflammatory diseases in relation to inflammation-related carcinogenesis. Biol Chem, 387(4):365 – 372. DOI: 10.1515/BC.2006.049.
- Khan, S.A., Tavolari, S., Brandi, G. (2019): Cholangiocarcinoma: Epidemiology and risk factors. Liver Int, 39(S1): 19 – 31. DOI: 10.1111/liv.14095
- Khieu, V., Fürst, T., Miyamoto, K., Yong, T.-S., Chai, J.-Y., Huy, R., Sinuon, M., Odermatt, P. (2019): Is Opisthorchis viverrini emerging in Cambodia?. Adv Parasitol, 103: 31 – 73. DOI: 10.1016/bs.apar.2019.02.002
- Kiatsopit, N., Sithithaworn, P., Saijuntha, W., Pitaksakulrat, O., Petney, T.N., Webster, J.P., Andrews, R.H. (2014): Analysis of the population genetics of Opisthorchis viverrini sensu lato in the Nam Ngum River wetland, Lao PDR, by multilocus enzyme electrophoresis. Parasitol Res, 113(8): 2973 – 2981. DOI: 10.1007/s00436-014-3959-9
- Kim, H.S., Han, Y., Kang, J.S., Kang, Y.H., Lee, M., Sohn, H.J., Kim, H., Kwon, W., Jang, J.Y. (2021): Serum carcinoembryonic antigen and carbohydrate antigen 19-9 as preoperative diagnostic biomarkers of extrahepatic bile duct cancer. BJS Open, 5(6). DOI: 10.1093/bjsopen/zrab127
- Lapitz, A., Azkargorta, M., Milkiewicz, P., Olaizola, P., Zhuravleva, E., Grimsrud, M.M., Schramm, C., Arbelaiz, A., O’rourke, C.J., La Casta, A., Milkiewicz, M., Pastor, T., Vesterhus, M., Jimenez-Agüero, R., Dill, M.T., Lamarca, A., Valle, J.W., Macias, Rir., Izquierdo-Sanchez, L., Pérez Castaño, Y., Caballero-Camino, F.J., Riaño, I., Krawczyk, M., Ibarra. C., Bustamante, J., Nova-Camacho, L.M., Falcon-Perez, J.M., Elortza, F., Perugorria, M.J., Andersen, J.B., Bujanda, L., Karlsen, T.H., Folseraas, T., Rodrigues, P.M., Banales, J. M. (2023): Liquid biopsy-based protein biomarkers for risk prediction, early diagnosis, and prognostication of cholangiocarcinoma. J Hepatol, 79(1): 93 – 108. DOI: 10.1016/j.jhep.2023.02.027
- Lee, T., Teng, T. Z. J., Shelat, V.G. (2020): Carbohydrate antigen 19-9 - tumor marker: Past, present, and future. World J Gastrointest Surg, 12(12): 468 – 490. DOI: 10.4240/wjgs.v12.i12.468
- Liang, B., Zhong, L., He, Q., Wang, S., Pan, Z., Wang, T., Zhao, Y. (2015): Diagnostic Accuracy of Serum CA19-9 in Patients with Cholangiocarcinoma: A Systematic Review and Meta-Analysis. Med Sci Monit, 21: 3555 – 3563. DOI: 10.12659/msm.895040
- Liau, M.Y.Q., Toh, E.Q., Shelat, V.G. (2023): Opisthorchis viverrini-Current Understanding of the Neglected Hepatobiliary Parasite. Pathogens, 12(6). DOI: 10.3390/pathogens12060795
- Lin, Y., Fang, K., Zheng, Y., Wang, H.-L., Wu, J. (2022): Global burden and trends of neglected tropical diseases from 1990 to 2019. J Travel Med, 29(3): taac031. DOI: 10.1093/jtm/taac031
- Loosen, S.H., Roderburg, C., Kauertz, K.L., Koch, A., Vucur, M., Schneider, A.T., Binnebösel, M., Ulmer, T.F., Lurje, G., Schoening, W., Tacke, F., Trautwein, C., Longerich, T., Dejong, C.H., Neumann, U.P., Luedde, T. (2017): CEA but not CA19-9 is an independent prognostic factor in patients undergoing resection of cholangiocarcinoma. Sci Rep, 7(1): 16975. DOI: 10.1038/s41598-017-17175-7
- Lu, X.-T., Gu, Q.-Y., Limpanont, Y., Song, L.-G., Wu, Z.-D., Okanurak, K., Lv, Z.-Y. (2018): Snail-borne parasitic diseases: an update on global epidemiological distribution, transmission interruption and control methods. Infect Dis Poverty, 7(1): 28. DOI: 10.1186/s40249-018-0414-7
- Machicado, C., Marcos, L.A. (2016): Carcinogenesis associated with parasites other than Schistosoma, Opisthorchis and Clonorchis: A systematic review. Int J Cancer, 138(12): 2915 – 2921. DOI: 10.1002/ijc.30028
- Mairiang E., Laha T., Bethony J.M., Thinkhamrop B., Kaewkes S., Sithithaworn P., Tesana S., Loukas A., Brindley P.J., Sripa B. (2012): Ultrasonography assessment of hepatobiliary abnormalities in 3359 subjects with Opisthorchis viverrini infection in endemic areas of Thailand. Parasitol Int, 61: 208 – 211. DOI: 10.1016/j.parint.2011.07.009
- Massarweh, N.N., El-Serag, H B. (2017): Epidemiology of hepatocellular carcinoma and intrahepatic cholangiocarcinoma. Cancer control, 24(3): 1073274817729245. DOI: 10.1177/1073274817729245
- Mitra, A. K., Mawson, A. R. (2017): Neglected Tropical Diseases: Epidemiology and Global Burden. Trop Med Infect Dis, 2(3). DOI: 10.3390/tropicalmed2030036
- Nakagawa, H., Hayata, Y., Yamada, T., Kawamura, S., Suzuki, N., Koike, K. (2018): Peribiliary Glands as the Cellular Origin of Biliary Tract Cancer. Int. J. Mol. Sci, 19(6): 1745. DOI: 10.3390/ijms19061745
- Namsanor, J., Pitaksakulrat, O., Kopolrat, K., Kiatsopit, N., Webster, B. L., Gower, C.M., Webster, J.P., Laha, T., Saijuntha, W., Laoprom, N., Andrews, R.H., Petney, T.N., Blair, D., Sithithaworn, P. (2020): Impact of geography and time on genetic clusters of Opisthorchis viverrini identified by microsatellite and mitochondrial DNA analysis. Int J Parasitol, 50(14): 1133 – 1144. DOI: 10.1016/j.ijpara.2020.06.011
- Ovchinnikov, V.Y., Mordvinov, V.A., Fromm, B. (2017): Extreme conservation of miRNA complements in opisthorchiids. Parasitol Int, 66(6): 773 – 776. DOI: 10.1016/j.parint.2017.09.006
- Pakharukova, M.Y., Da Costa, J.M.C., Mordvinov, V.A. (2019): The liver fluke Opisthorchis felineus as a group III or group I carcinogen. 4open, 2: 23. DOI: 10.1051/fopen/2019016
- Pakharukova, M.Y., Lishai, E.A., Zaparina, O., Baginskaya, N.V., Hong, S.-J., Sripa, B., Mordvinov, V.A. (2023): Opisthorchis viverrini, Clonorchis sinensis and Opisthorchis felineus liver flukes affect mammalian host microbiome in a species-specific manner. PLoS Negl Trop Dis, 17(2): e0011111. DOI: 10.1371/journal.pntd.0011111
- Pakharukova, M.Y., Mordvinov, V.A. (2022): Similarities and differences among the Opisthorchiidae liver flukes: insights from Opisthorchis felineus. Parasitology, 149(10): 1306 – 1318. DOI: 10.1017/s0031182022000397
- Pakharukova, M.Y., Zaparina, O., Baginskaya, N.V., Mordvinov, V.A. (2022): Global changes in gene expression related to Opisthorchis felineus liver fluke infection reveal temporal heterogeneity of a mammalian host response. Food Waterborne Parasitol, 27: e00159. DOI: 10.1016/j.fawpar.2022.e00159
- Petney, T.N., Andrews, R.H., Saijuntha, W., Tesana, S., Prasopdee, S., Kiatsopit, N., Sithithaworn, P. (2018): Chapter One - Taxonomy, Ecology and Population Genetics of Opisthorchis viverrini and its Intermediate Hosts. In Sripa, B., Brindley, P.J. (Eds) Advances in Parasitology. Volume 101. Massachusetts, USA: Academic Press, pp. 1 – 39. DOI: 10.1016/bs.apar.2018.05.001
- Phimpraphai, W., Tangkawattana, S., Kasemsuwan, S., Sripa, B. (2018): Chapter Four - Social Influence in Liver Fluke Transmission: Application of Social Network Analysis of Food Sharing in Thai Isaan Culture. In B. Sripa, Brindley, P.J. (Eds) Advances in Parasitology. Volume 101. Massachusetts, USA: Academic Press, pp. 97 – 124. DOI: 10.1016/bs.apar.2018.05.004
- Phupiewkham, W., Sadaow, L., Sanpool, O., Rodpai, R., Yamasaki, H., Ittiprasert, W., Mann, V.H., Brindley, P.J., Maleewong, W., Intapan, P.M. (2021): Comparative assessment of immunochromatographic test kits using somatic antigens from adult Opisthorchis viverrini and IgG and IgG4 conjugates for serodiagnosis of human opisthorchiasis. Parasitol Res 120: 2839 – 2846. DOI: 10.1007/s00436-021-07224-6
- Pitaksakulrat, O., Kiatsopit, N., Laoprom, N., Webster, B.L., Webster, J.P., Lamberton, P.H.L., Laha, T., Andrews, R.H., Petney, T.N., Blair, D., Carlton, E.J., Spear, R.C., Sithithaworn, P. (2017): Preliminary genetic evidence of two different populations of Opisthorchis viverrini in Lao PDR. Parasitol Res, 116(4): 1247 – 1256. DOI: 10.1007/s00436-017-5401-6
- Pitaksakulrat, O., Webster, B.L., Webster, J.P., Laha, T., Saijuntha, W., Lamberton, P.H., Kiatsopit, N., Andrews, R.H., Petney, T.N., Sithithaworn, P. (2018): Phylogenetic relationships within the Opisthorchis viverrini species complex with specific analysis of O. viverrini sensu lato from Sakon Nakhon, Thailand by mitochondrial and nuclear DNA sequencing. Infect Genet Evol, 62: 86 – 94. DOI: 10.1016/j.meegid.2018.04.022
- Prakobwong, S., Suwannatrai, K. (2020): Reduction of Reinfection Rates with Opisthorchis viverrini through a Three-Year Management Program in Endemic Areas of Northeastern Thailand. Korean J Parasitol, 58(5): 527 – 535. DOI: 10.3347/kjp.2020.58.5.527
- Pratap, P., Raza, S.T., Pratap, S. (2018): Cholangiocarcinoma: Etiology, Pathogenesis, Diagnosis, and Management. In: Waly, M., Rahman, M. (Eds) Bioactive Components, Diet and Medical Treatment in Cancer Prevention. Volume 1. Berlin, Germany: Springer, Cham, pp. 201 – 213. DOI: 10.1007/978-3-319-75693-6_16
- Rachprakhon, P., Purivirojkul, W. (2021): Very low prevalence of Opisthorchis viverrini s.l. cercariae in Bithynia siamensis siamensis snails from the canal network system in the Bangkok Metropolitan Region, Thailand. [Très faible prévalence des cercaires d’Opisthorchis viverrini s.l. chez les mollusques Bithynia siamensis siamensis du réseau de canaux dans la région métropolitaine de Bangkok, Thaïlande]. Parasite, 28: 2. DOI: 10.1051/parasite/2020072
- Redekop, W. K., Lenk, E. J., Luyendijk, M., Fitzpatrick, C., Niessen, L., Stolk, W. A., Tediosi, F., Rijnsburger, A.J., Bakker, R., Hontelez, J.A., Richardus, J.H., Jacobson, J., de Vlas, S.J., Severens, J.L. (2017): The socioeconomic benefit to individuals of achieving the 2020 targets for five preventive chemotherapy neglected tropical diseases. PLoS Negl Trop Dis, 11(1): e0005289. DOI: 10.1371/journal.pntd.0005289
- Rizvi, S., Gores, G.J. (2013): Pathogenesis, diagnosis, and management of cholangiocarcinoma. Gastroenterology, 145(6): 1215 – 1229. DOI: 10.1053/j.gastro.2013.10.013
- Robinson, M.W., Sotillo, J. (2022): Foodborne trematodes: old foes, new kids on the block and research perspectives for control and understanding host-parasite interactions. Parasitology, 149(10): 1257 – 1261. DOI: 10.1017/S0031182022000877
- Rodrigues, P.M., Vogel, A., Arrese, M., Balderramo, D.C., Valle, J.W., Banales, J.M. (2021). Next-Generation Biomarkers for Cholangiocarcinoma. Cancers (Basel), 13(13): 3222. DOI: 10.3390/cancers13133222
- Sadaow L., Rodpai R., Janwan P., Boonroumkaew P., Sanpool O., Thanchomnang T., Yamasaki H., Ittiprasert W., Mann V.H., Brindley P.J., Maleewong W., Intapan P.M. (2022): An Innovative Test for the Rapid Detection of Specific IgG Antibodies in Human Whole-Blood for the Diagnosis of Opisthorchis viverrini Infection. Trop Med Infect Dis 7. DOI: 10.3390/tropicalmed7100308
- Saengsawang P., Promthet S., Bradshaw P. (2016): Reinfection by Opisthorchis viverrini after treatment with praziquantel. Asian Pac. J. Health Sci, 17: 857 – 862. DOI: 10.7314/APJCP.2016.17.2.857
- Saenna, P., Hurst, C., Echaubard, P., Wilcox Bruce, A., Sripa, B. (2017): Fish sharing as a risk factor for Opisthorchis viverrini infection: evidence from two villages in north-eastern Thailand. Infect Dis Poverty, 06(02): 48 – 56. DOI: 10.1186/s40249-017-0281-7
- Saijuntha, W. (2007): A comprehensive investigation of genetic variation among natural populations of Opisthorchis viverrini in Thailand and Lao PDR. Ph. D Thesis, Khon Kaen: Khon Kaen University.
- Saijuntha, W., Sithithaworn, P., Kaitsopit, N., Andrews, R.H., Petney, T.N. (2014). Liver Flukes: Clonorchis and Opisthorchis. In: Toledo, R., Fried, B. (Eds) Digenetic Trematodes. New York, NY: Springer New York, pp. 153 – 199: DOI: 10.1007/978-1-4939-0915-5_6
- Saijuntha, W., Sithithaworn, P., Kiatsopit, N., Andrews, R.H., Petney, T.N. (2019): Liver Flukes: Clonorchis and Opisthorchis. Adv Exp Med Biol, 1154: 139–180. DOI: 10.1007/978-3-030-18616-6_6
- Salem, P.E.S., Ghazala, R.A., El Gendi, A.M., Emara, D.M., Ahmed, N.M. (2020). The association between circulating MicroRNA-150 level and cholangiocarcinoma. J Clin Lab Anal, 34(11): e23397. DOI: 10.1002/jcla.23397
- Saltykova, I.V., Petrov, V.A., Brindley, P.J. (2018): Chapter One - Opisthorchiasis and the Microbiome. In: Sripa, B., Brindley, P.J. (Eds) Advances in Parasitology. Volume 102. Massachusetts, USA: Academic Press, pp. 1 – 23. DOI: 10.1016/bs.apar.2018.07.001
- Sawanyawisuth, K., Sashida, G., Sheng, G. (2021). Epithelial-Mesenchymal Transition in Liver Fluke-Induced Cholangiocarcinoma. Cancers, 13(4): 791. DOI: 10.3390/cancers13040791
- Shin, D.W., Moon, S.-H., Kim, J.H. (2023). Diagnosis of Cholangiocarcinoma. Diagnostics, 13(2): 233. DOI: 10.3390/diagnostics13020233
- Silsirivanit, A., Sawanyawisuth, K., Riggins, G.J., Wongkham, C. (2014). Cancer biomarker discovery for cholangiocarcinoma: the high-throughput approaches. J Hepatobiliary Pancreat Sci, 21(6): 388 – 396. DOI: 10.1002/jhbp.68
- Singal, A.G., Lampertico, P., Nahon, P. (2020). Epidemiology and surveillance for hepatocellular carcinoma: New trends. J Hepatol, 72(2): 250 – 261. DOI: 10.1016/j.jhep.2019.08.025
- Smout, M.J., Sripa, B., Laha, T., Mulvenna, J., Gasser, R.B., Young, N.D., Bethony, J.M., Brindley, P.J., Loukas, A. (2011): Infection with the carcinogenic human liver fluke, Opisthorchis viverrini. Mol Biosyst, 7(5): 1367 – 1375. DOI: 10.1039/c0mb00295j
- Sota, P., Suttiprapa, S., Tangkawattana, S., Sripa, M., Blair, D., Sripa, B. (2022): Does Opisthorchis viverrini circulate between humans and domestic cats in an endemic area in Thailand? Parasitology, 149(10): 1334 – 1338. DOI: 10.1017/S0031182022000646
- Sripa, B., Echaubard, P. (2017): Prospects and Challenges towards Sustainable Liver Fluke Control. Trends Parasitol, 33(10): 799 – 812. DOI:10.1016/j.pt.2017.06.002
- Sripa, B., Jumnainsong, A., Tangkawattana, S., Haswell, M.R. (2018). Immune response to Opisthorchis viverrini infection and its role in pathology. Adv Parasitol, 102: 73 – 95. DOI: 10.1016/bs.apar.2018.08.003
- Sripa, B., Suwannatrai, A.T., Sayasone, S., Do, D.T., Khieu, V., Yang, Y. (2021): Current status of human liver fluke infections in the Greater Mekong Subregion. Acta Trop, 224: 106133. DOI: 10.1016/j.actatropica.2021.106133
- Sripa, B., Tangkawattana, S., Brindley, P.J. (2018): Chapter Five - Update on Pathogenesis of Opisthorchiasis and Cholangiocarcinoma. In: Sripa, B., Brindley, P.J. (Eds) Advances in Parasitology. Volume 102. Massachusetts, USA: Academic Press, pp. 97 – 113. DOI: 10.1016/bs.apar.2018.10.001
- Sripa, B., Tangkawattana, S., Sangnikul, T. (2017): The Lawa model: A sustainable, integrated opisthorchiasis control program using the EcoHealth approach in the Lawa Lake region of Thailand. Parasitol Int, 66(4): 346 – 354. DOI: 10.1016/j.parint.2016.11.013
- Steele, J.A., Richter, C.H., Echaubard, P., Saenna, P., Stout, V., Sithithaworn, P., Wilcox, B.A. (2018). Thinking beyond Opisthorchis viverrini for risk of cholangiocarcinoma in the lower Mekong region: a systematic review and meta-analysis. Infect Dis Poverty, 7(1): 44. DOI: 10.1186/s40249-018-0434-3
- Sueblinvong, T., Piyamputra, A., Priyanont, S., Thaithong, S. (1993): Isoenzyme characterization of Opisthorchis viverrini from man. Chula Med J, 37(6): 375 – 385
- Suwannahitatorn, P., Webster, J., Riley, S., Mungthin, M., Donnelly, C. A. (2019). Uncooked fish consumption among those at risk of Opisthorchis viverrini infection in central Thailand. PLoS One, 14(1): e0211540. DOI:10.1371/journal.pone.0211540
- Suwannatrai, A., Saichua, P., Haswell, M. (2018). Chapter Two - Epidemiology of Opisthorchis viverrini Infection. In: Sripa, B., Brindley, P.J. (Eds) Advances in Parasitology, Volume 101. Massachusetts, USA: Academic Press, pp. 41 – 67. DOI: 10.1016/bs.apar.2018.05.002
- Tangkawattana, S., Sereerak, P., Upontain, S., Tangkawattana, P., Sripa, B. (2021). Investigation of possible alternate animal reservoir hosts of Opisthorchis viverrini. Acta Trop, 217: 105850. DOI: 10.1016/j.actatropica.2021.105850
- Tangkawattana, S., Sripa, B. (2018): Chapter Six - Integrative Eco-Health/One Health Approach for Sustainable Liver Fluke Control: The Lawa Model. In: Sripa, B., Brindley, P.J. (Eds) Advances in Parasitology, Volume 101. Massachusetts, USA: Academic Press, pp. 115 – 139. DOI: 10.1016/bs.apar.2018.07.002
- Tantrawatpan, C., Saijuntha, W., Bunchom, N., Suksavate, W., Pilap, W., Walalite, T., Agatsuma, T., Tawong, W., Sithithaworn, P., Andrews, R.H., Petney, T.N. (2020): Genetic structure and geographical variation of Bithynia siamensis goniomphalos sensu lato (Gastropoda: Bithyniidae), the snail intermediate host of Opisthorchis viverrini sensu lato (Digenea: Opisthorchiidae) in the Lower Mekong Basin revealed by mitochondrial DNA sequences. Int J Parasitol, 50(1): 55 – 62. DOI: 10.1016/j.ijpara.2019.10.007
- Thaenkham, U., Nuamtanong, S., Sa-Nguankiat, S., Yoonuan, T., Touch, S., Manivong, K., Vonghachack, Y., Sato, M., Waikagul, J. (2010): Monophyly of Opisthorchis viverrini populations in the lower Mekong Basin, using mitochondrial DNA nad1 gene as the marker. Parasitol Int, 59(2): 242 – 247. DOI: 10.1016/j.parint.2010.02.009
- Thaewnongiew, K., Singthong, S., Kutchamart, S., Tangsawad, S., Promthet, S., Sailugkum, S., Wongba, N. (2014): Prevalence and risk factors for Opisthorchis viverrini infections in upper Northeast Thailand. Asian Pac J Cancer Prev, 15(16): 6609 – 6612. DOI: 10.7314/apjcp.2014.15.16.6609
- Thinkhamrop, K., Khuntikeo, N., Sithithaworn, P., Thinkhamrop, W., Wangdi, K., Kelly, M.J., Suwannatrai, A.T., Gray, D.J. (2019): Repeated praziquantel treatment and Opisthorchis viverrini infection: a population-based cross-sectional study in northeast Thailand. Infect Dis Poverty, 08(02): 34 – 42. DOI: 10.1186/s40249-019-0529-5
- Tilli, M., Olliaro, P., Gobbi, F., Bisoffi, Z., Bartoloni, A., Zammarchi, L. (2021). Neglected tropical diseases in non-endemic countries in the era of COVID-19 pandemic: the great forgotten. J Travel Med, 28(1): taaa179. DOI: 10.1093/jtm/taaa179
- Tshering, G., Dorji, P.W., Chaijaroenkul, W., Na-Bangchang, K. (2018): Biomarkers for the Diagnosis of Cholangiocarcinoma: A Systematic Review. Am J Trop Med Hyg, 98(6): 1788 – 1797. DOI: 10.4269/ajtmh.17-0879
- Vale, N., Gouveia, M.J., Botelho, M., Sripa, B., Suttiprapa, S., Rinaldi, G., Gomes, P., Brindley, P.J., Da Costa, J.M.C. (2013): Carcinogenic liver fluke Opisthorchis viverrini oxysterols detected by LC-MS/MS survey of soluble fraction parasite extract. Parasitol Int, 62(6): 535 – 542. DOI: 10.1016/j.parint.2013.08.001
- Worasith, C., Wangboon, C., Kopolrat, K.Y., Homwong, C., Sithithaworn, J., Techasen, A., Thanan, R., Khuntikeo, N., Sithithaworn, P. (2020): Application of urine antigen assay to evaluate outcomes of praziquantel treatment and reinfection in opisthorchiasis in northeast Thailand. Trans R Soc Trop Med Hyg, 114: 751 – 761. DOI: 10.1093/trstmh/traa057
- Wu, Y., Hayat, K., Hu, Y., Yang, J. (2022): Long Non-Coding RNAs as Molecular Biomarkers in Cholangiocarcinoma. Front Cell Dev Biol, 10: 890605 – 890605. DOI: 10.3389/fcell.2022.890605
- Yang, Y., Deng, X., Li, Q., Wang, F., Miao, L., Jiang, Q. (2020): Emerging roles of long noncoding RNAs in cholangiocarcinoma: Advances and challenges. Cancer Commun (Lond), 40(12): 655 – 680. DOI: 10.1002/cac2.12109
- Zeng, X., Tao, H. (2015): Diagnostic and prognostic serum marker of cholangiocarcinoma (Review). Oncol Lett, 9(1): 3 – 8. DOI: 10.3892/ol.2014.2696
- Zimmermann, A. (2019): Tumors and tumor-like lesions of the hepatobiliary tract. 1st Edition, Switzerland, Springer International Publishing, 3559pp.