-
1
-
-
85010931698
-
Primary human placental trophoblasts are permissive for Zika virus (ZIKV) replication
-
Aagaard, K.M., A. Lahon, M.A. Suter, R.P. Arya, M.D. Seferovic, M.B. Vogt, M. Hu, F. Stossi, M.A. Mancini, R.A. Harris, et al. 2017. Primary human placental trophoblasts are permissive for Zika virus (ZIKV) replication. Sci. Rep. 7:41389. http ://dx.doi.org /10.1038 /srep41389
-
(2017)
Sci. Rep
, vol.7
, pp. 41389
-
-
Aagaard, K.M.1
Lahon, A.2
Suter, M.A.3
Arya, R.P.4
Seferovic, M.D.5
Vogt, M.B.6
Hu, M.7
Stossi, F.8
Mancini, M.A.9
Harris, R.A.10
-
2
-
-
84979738780
-
A screen of FDA-approved drugs for inhibitors of Zika virus infection
-
Barrows, N.J., R.K. Campos, S.T. Powell, K.R. Prasanth, G. Schott-Lerner, R. Soto-Acosta, G. Galarza-Muñoz, E.L. McGrath, R. Urrabaz-Garza, J. Gao, et al. 2016. A screen of FDA-approved drugs for inhibitors of Zika virus infection. Cell Host Microbe. 20:259-270. http ://dx.doi.org /10.1016 /j.chom.2016.07.004
-
(2016)
Cell Host Microbe
, vol.20
, pp. 259-270
-
-
Barrows, N.J.1
Campos, R.K.2
Powell, S.T.3
Prasanth, K.R.4
Schott-Lerner, G.5
Soto-Acosta, R.6
Galarza-Muñoz, G.7
McGrath, E.L.8
Urrabaz-Garza, R.9
Gao, J.10
-
3
-
-
84962173518
-
Type III interferons produced by human placental trophoblasts confer protection against Zika virus infection
-
Bayer, A., N.J. Lennemann, Y. Ouyang, J.C. Bramley, S. Morosky, E.T. Marques Jr., S. Cherry, Y. Sadovsky, and C.B. Coyne. 2016. Type III interferons produced by human placental trophoblasts confer protection against Zika virus infection. Cell Host Microbe. 19:705-712. http ://dx.doi.org /10.1016 /j.chom.2016.03.008
-
(2016)
Cell Host Microbe
, vol.19
, pp. 705-712
-
-
Bayer, A.1
Lennemann, N.J.2
Ouyang, Y.3
Bramley, J.C.4
Morosky, S.5
Marques, E.T.6
Cherry, S.7
Sadovsky, Y.8
Coyne, C.B.9
-
4
-
-
56249135538
-
A key role for autophagy and the autophagy gene Atg16l1 in mouse and human intestinal Paneth cells
-
Cadwell, K., J.Y. Liu, S.L. Brown, H. Miyoshi, J. Loh, J.K. Lennerz, C. Kishi, W. Kc, J.A. Carrero, S. Hunt, et al. 2008. A key role for autophagy and the autophagy gene Atg16l1 in mouse and human intestinal Paneth cells. Nature. 456:259-263. http ://dx.doi.org /10.1038 /nature07416
-
(2008)
Nature
, vol.456
, pp. 259-263
-
-
Cadwell, K.1
Liu, J.Y.2
Brown, S.L.3
Miyoshi, H.4
Loh, J.5
Lennerz, J.K.6
Kishi, C.7
Kc, W.8
Carrero, J.A.9
Hunt, S.10
-
5
-
-
85019383903
-
ATG16L1 governs placental infection risk and preterm birth in mice and women
-
Cao, B., C. Macones, and I.U. Mysorekar. 2016. ATG16L1 governs placental infection risk and preterm birth in mice and women. JCI Insight. 1:e86654. http ://dx.doi.org /10.1172 /jci.insight.86654
-
(2016)
JCI Insight
, vol.1
-
-
Cao, B.1
Macones, C.2
Mysorekar, I.U.3
-
6
-
-
85023637676
-
Maternal-fetal transmission of Zika virus: routes and signals for infection
-
Cao, B., M.S. Diamond, and I.U. Mysorekar. 2017. Maternal-fetal transmission of Zika virus: routes and signals for infection. J. Interferon Cytokine Res. http ://dx.doi.org /10.1089 /jir.2017.0011
-
(2017)
J. Interferon Cytokine Res
-
-
Cao, B.1
Diamond, M.S.2
Mysorekar, I.U.3
-
7
-
-
84961223887
-
Guillain-Barré syndrome outbreak associated with Zika virus infection in French Polynesia: a case-control study
-
Cao-Lormeau, V.M., A. Blake, S. Mons, S. Lastère, C. Roche, J. Vanhomwegen, T. Dub, L. Baudouin, A. Teissier, P. Larre, et al. 2016. Guillain-Barré syndrome outbreak associated with Zika virus infection in French Polynesia: a case-control study. Lancet. 387:1531-1539. http ://dx.doi .org /10.1016 /S0140 -6736(16)00562 -6
-
(2016)
Lancet
, vol.387
, pp. 1531-1539
-
-
Cao-Lormeau, V.M.1
Blake, A.2
Mons, S.3
Lastère, S.4
Roche, C.5
Vanhomwegen, J.6
Dub, T.7
Baudouin, L.8
Teissier, A.9
Larre, P.10
-
8
-
-
84872113974
-
Interactions of pathogenic bacteria with autophagy systems
-
Cemma, M., and J.H. Brumell. 2012. Interactions of pathogenic bacteria with autophagy systems. Curr. Biol. 22:R540-R545. http ://dx.doi.org /10.1016 /j.cub.2012.06.001
-
(2012)
Curr. Biol
, vol.22
, pp. R540-R545
-
-
Cemma, M.1
Brumell, J.H.2
-
9
-
-
85021852721
-
Zika virus infection in pregnancy: a systematic review of disease course and complications
-
Chibueze, E.C., V. Tirado, K.D. Lopes, O.O. Balogun, Y. Takemoto, T. Swa, A. Dagvadorj, C. Nagata, N. Morisaki, C. Menendez, et al. 2017. Zika virus infection in pregnancy: a systematic review of disease course and complications. Reprod. Health. 14:28. http ://dx.doi.org /10.1186 /s12978 -017 -0285 -6
-
(2017)
Reprod. Health
, vol.14
, pp. 28
-
-
Chibueze, E.C.1
Tirado, V.2
Lopes, K.D.3
Balogun, O.O.4
Takemoto, Y.5
Swa, T.6
Dagvadorj, A.7
Nagata, C.8
Morisaki, N.9
Menendez, C.10
-
10
-
-
84880152406
-
Divergent roles of autophagy in virus infection
-
Chiramel, A.I., N.R. Brady, and R. Bartenschlager. 2013. Divergent roles of autophagy in virus infection. Cells. 2:83-104. http ://dx.doi.org /10.3390 /cells2010083
-
(2013)
Cells
, vol.2
, pp. 83-104
-
-
Chiramel, A.I.1
Brady, N.R.2
Bartenschlager, R.3
-
11
-
-
84880381903
-
Human placental trophoblasts confer viral resistance to recipient cells
-
Delorme-Axford, E., R.B. Donker, J.F. Mouillet, T. Chu, A. Bayer, Y. Ouyang, T. Wang, D.B. Stolz, S.N. Sarkar, A.E. Morelli, et al. 2013. Human placental trophoblasts confer viral resistance to recipient cells. Proc. Natl. Acad. Sci. USA. 110:12048-12053. http ://dx.doi.org /10.1073 /pnas.1304718110
-
(2013)
Proc. Natl. Acad. Sci. USA
, vol.110
, pp. 12048-12053
-
-
Delorme-Axford, E.1
Donker, R.B.2
Mouillet, J.F.3
Chu, T.4
Bayer, A.5
Ouyang, Y.6
Wang, T.7
Stolz, D.B.8
Sarkar, S.N.9
Morelli, A.E.10
-
12
-
-
85002273536
-
Chloroquine, an endocytosis blocking agent, inhibits Zika virus infection in different cell models
-
Delvecchio, R., L.M. Higa, P. Pezzuto, A.L. Valadão, P.P. Garcez, F.L. Monteiro, E.C. Loiola, A.A. Dias, F.J. Silva, M.T. Aliota, et al. 2016. Chloroquine, an endocytosis blocking agent, inhibits Zika virus infection in different cell models. Viruses. 8:322. http ://dx.doi.org /10.3390 /v8120322
-
(2016)
Viruses
, vol.8
, pp. 322
-
-
Delvecchio, R.1
Higa, L.M.2
Pezzuto, P.3
Valadão, A.L.4
Garcez, P.P.5
Monteiro, F.L.6
Loiola, E.C.7
Dias, A.A.8
Silva, F.J.9
Aliota, M.T.10
-
13
-
-
84992036157
-
ZIKA virus reveals broad tissue and cell tropism during the first trimester of pregnancy
-
El Costa, H., J. Gouilly, J.M. Mansuy, Q. Chen, C. Levy, G. Cartron, F. Veas, R. Al-Daccak, J. Izopet, and N. Jabrane-Ferrat. 2016. ZIKA virus reveals broad tissue and cell tropism during the first trimester of pregnancy. Sci. Rep. 6:35296. http ://dx.doi.org /10.1038 /srep35296
-
(2016)
Sci. Rep
, vol.6
, pp. 35296
-
-
El Costa, H.1
Gouilly, J.2
Mansuy, J.M.3
Chen, Q.4
Levy, C.5
Cartron, G.6
Veas, F.7
Al-Daccak, R.8
Izopet, J.9
Jabrane-Ferrat, N.10
-
14
-
-
84988421322
-
Zika viral polymerase inhibition using anti-HCV drugs both in market and under clinical trials
-
Elfiky, A.A. 2016. Zika viral polymerase inhibition using anti-HCV drugs both in market and under clinical trials. J. Med. Virol. 88:2044-2051. http ://dx.doi.org /10.1002 /jmv.24678
-
(2016)
J. Med. Virol
, vol.88
, pp. 2044-2051
-
-
Elfiky, A.A.1
-
15
-
-
84988943708
-
Nucleoside inhibitors of Zika virus
-
Eyer, L., R. Nencka, I. Huvarová, M. Palus, M. Joao Alves, E.A. Gould, E. De Clercq, and D. Ružek. 2016. Nucleoside inhibitors of Zika virus. J. Infect. Dis. 214:707-711. http ://dx.doi.org /10.1093 /infdis /jiw226
-
(2016)
J. Infect. Dis
, vol.214
, pp. 707-711
-
-
Eyer, L.1
Nencka, R.2
Huvarová, I.3
Palus, M.4
Joao Alves, M.5
Gould, E.A.6
De Clercq, E.7
Ružek, D.8
-
16
-
-
84901979394
-
Chloroquine interferes with dengue-2 virus replication in U937 cells
-
Farias, K.J., P.R. Machado, R.F. de Almeida Junior, A.A. de Aquino, and B.A. da Fonseca. 2014. Chloroquine interferes with dengue-2 virus replication in U937 cells. Microbiol. Immunol. 58:318-326. http ://dx.doi .org /10.1111 /1348 -0421.12154
-
(2014)
Microbiol. Immunol
, vol.58
, pp. 318-326
-
-
Farias, K.J.1
Machado, P.R.2
De Almeida Junior, R.F.3
De Aquino, A.A.4
Da Fonseca, B.A.5
-
17
-
-
84938919218
-
Biology of Zika virus infection in human skin cells
-
Hamel, R., O. Dejarnac, S. Wichit, P. Ekchariyawat, A. Neyret, N. Luplertlop, M. Perera-Lecoin, P. Surasombatpattana, L. Talignani, F. Thomas, et al. 2015. Biology of Zika virus infection in human skin cells. J. Virol. 89:8880-8896. http ://dx.doi.org /10.1128 /JVI.00354 -15
-
(2015)
J. Virol
, vol.89
, pp. 8880-8896
-
-
Hamel, R.1
Dejarnac, O.2
Wichit, S.3
Ekchariyawat, P.4
Neyret, A.5
Luplertlop, N.6
Perera-Lecoin, M.7
Surasombatpattana, P.8
Talignani, L.9
Thomas, F.10
-
18
-
-
85136186067
-
Zika virus productively infects primary human placenta-specific macrophages
-
Jurado, K.A., M.K. Simoni, Z. Tang, R. Uraki, J. Hwang, S. Householder, M. Wu, B.D. Lindenbach, V.M. Abrahams, S. Guller, and E. Fikrig. 2016. Zika virus productively infects primary human placenta-specific macrophages. JCI Insight. 1:e88461. http ://dx.doi.org /10.1172 /jci.insight.88461
-
(2016)
JCI Insight
, vol.1
-
-
Jurado, K.A.1
Simoni, M.K.2
Tang, Z.3
Uraki, R.4
Hwang, J.5
Householder, S.6
Wu, M.7
Lindenbach, B.D.8
Abrahams, V.M.9
Guller, S.10
Fikrig, E.11
-
19
-
-
84975763591
-
Reproductive outcomes following hydroxychloroquine use for autoimmune diseases: a systematic review and meta-analysis
-
Kaplan, Y.C., J. Ozsarfati, C. Nickel, and G. Koren. 2016. Reproductive outcomes following hydroxychloroquine use for autoimmune diseases: a systematic review and meta-analysis. Br. J. Clin. Pharmacol. 81:835-848. http ://dx.doi.org /10.1111 /bcp.12872
-
(2016)
Br. J. Clin. Pharmacol
, vol.81
, pp. 835-848
-
-
Kaplan, Y.C.1
Ozsarfati, J.2
Nickel, C.3
Koren, G.4
-
20
-
-
0035870827
-
Brucellosis in pregnant women
-
Khan, M.Y., M.W. Mah, and Z.A. Memish. 2001. Brucellosis in pregnant women. Clin. Infect. Dis. 32:1172-1177. http ://dx.doi.org /10.1086 /319758
-
(2001)
Clin. Infect. Dis
, vol.32
, pp. 1172-1177
-
-
Khan, M.Y.1
Mah, M.W.2
Memish, Z.A.3
-
21
-
-
85013763791
-
Guidelines for the use and interpretation of assays for monitoring autophagy
-
(publishederratumappearsinAuthophagy. 2016)
-
Klionsky, D.J., K. Abdelmohsen, A. Abe, M.J. Abedin, H. Abeliovich, A. Acevedo Arozena, H. Adachi, C.M. Adams, P.D. Adams, K. Adeli, et al. 2016. Guidelines for the use and interpretation of assays for monitoring autophagy. Autophagy. 12:1-222. (published erratum appears in Authophagy. 2016. http ://dx.doi.org /10.1080 /15548627.2016 .1147886) http ://dx.doi.org /10.1080 /15548627.2015.1100356
-
(2016)
Autophagy
, vol.12
, pp. 1-222
-
-
Klionsky, D.J.1
Abdelmohsen, K.2
Abe, A.3
Abedin, M.J.4
Abeliovich, H.5
Acevedo Arozena, A.6
Adachi, H.7
Adams, C.M.8
Adams, P.D.9
Adeli, K.10
-
22
-
-
79959950593
-
Listeriosis in human pregnancy: a systematic review
-
Lamont, R.F., J. Sobel, S. Mazaki-Tovi, J.P. Kusanovic, E. Vaisbuch, S.K. Kim, N. Uldbjerg, and R. Romero. 2011. Listeriosis in human pregnancy: a systematic review. J. Perinat. Med. 39:227-236. http ://dx.doi.org /10 .1515 /jpm.2011.035
-
(2011)
J. Perinat. Med
, vol.39
, pp. 227-236
-
-
Lamont, R.F.1
Sobel, J.2
Mazaki-Tovi, S.3
Kusanovic, J.P.4
Vaisbuch, E.5
Kim, S.K.6
Uldbjerg, N.7
Romero, R.8
-
23
-
-
85010636696
-
Dengue and Zika viruses subvert reticulophagy by NS2B3-mediated cleavage of FAM134B
-
Lennemann, N.J., and C.B. Coyne. 2017. Dengue and Zika viruses subvert reticulophagy by NS2B3-mediated cleavage of FAM134B. Autophagy. 13:322-332. http ://dx.doi.org /10.1080 /15548627.2016.1265192
-
(2017)
Autophagy
, vol.13
, pp. 322-332
-
-
Lennemann, N.J.1
Coyne, C.B.2
-
24
-
-
78751672975
-
Autophagy in immunity and inflammation
-
Levine, B., N. Mizushima, and H.W. Virgin. 2011. Autophagy in immunity and inflammation. Nature. 469:323-335. http ://dx.doi.org /10.1038 / nature09782
-
(2011)
Nature
, vol.469
, pp. 323-335
-
-
Levine, B.1
Mizushima, N.2
Virgin, H.W.3
-
25
-
-
84981742269
-
Zika virus NS4A and NS4B proteins deregulate Akt-mTOR signaling in human fetal neural stem cells to inhibit neurogenesis and induce autophagy
-
Liang, Q., Z. Luo, J. Zeng, W. Chen, S.S. Foo, S.A. Lee, J. Ge, S. Wang, S.A. Goldman, B.V. Zlokovic, et al. 2016. Zika virus NS4A and NS4B proteins deregulate Akt-mTOR signaling in human fetal neural stem cells to inhibit neurogenesis and induce autophagy. Cell Stem Cell. 19:663-671. http ://dx.doi.org /10.1016 /j.stem.2016.07.019
-
(2016)
Cell Stem Cell
, vol.19
, pp. 663-671
-
-
Liang, Q.1
Luo, Z.2
Zeng, J.3
Chen, W.4
Foo, S.S.5
Lee, S.A.6
Ge, J.7
Wang, S.8
Goldman, S.A.9
Zlokovic, B.V.10
-
26
-
-
84943736803
-
Reconciling West Nile virus with the autophagic pathway
-
Martín-Acebes, M.A., A.B. Blázquez, and J.C. Saiz. 2015. Reconciling West Nile virus with the autophagic pathway. Autophagy. 11:861-864. http :// dx.doi.org /10.1080 /15548627.2015.1037062
-
(2015)
Autophagy
, vol.11
, pp. 861-864
-
-
Martín-Acebes, M.A.1
Blázquez, A.B.2
Saiz, J.C.3
-
27
-
-
84873031729
-
Inhibition of cellular autophagy deranges dengue virion maturation
-
Mateo, R., C.M. Nagamine, J. Spagnolo, E. Méndez, M. Rahe, M. Gale Jr., J. Yuan, and K. Kirkegaard. 2013. Inhibition of cellular autophagy deranges dengue virion maturation. J. Virol. 87:1312-1321. http ://dx.doi.org /10 .1128 /JVI.02177 -12
-
(2013)
J. Virol
, vol.87
, pp. 1312-1321
-
-
Mateo, R.1
Nagamine, C.M.2
Spagnolo, J.3
Méndez, E.4
Rahe, M.5
Gale, M.6
Yuan, J.7
Kirkegaard, K.8
-
28
-
-
84969960228
-
Zika virus infection during pregnancy in mice causes placental damage and fetal demise
-
Miner, J.J., B. Cao, J. Govero, A.M. Smith, E. Fernandez, O.H. Cabrera, C. Garber, M. Noll, R.S. Klein, K.K. Noguchi, et al. 2016. Zika virus infection during pregnancy in mice causes placental damage and fetal demise. Cell. 165:1081-1091. http ://dx.doi.org /10.1016 /j.cell.2016.05 .008
-
(2016)
Cell
, vol.165
, pp. 1081-1091
-
-
Miner, J.J.1
Cao, B.2
Govero, J.3
Smith, A.M.4
Fernandez, E.5
Cabrera, O.H.6
Garber, C.7
Noll, M.8
Klein, R.S.9
Noguchi, K.K.10
-
29
-
-
84982187965
-
Modeling Zika virus infection in pregnancy
-
Mysorekar, I.U., and M.S. Diamond. 2016. Modeling Zika virus infection in pregnancy. N. Engl. J. Med. 375:481-484. http ://dx.doi.org /10.1056 /NEJMcibr1605445
-
(2016)
N. Engl. J. Med
, vol.375
, pp. 481-484
-
-
Mysorekar, I.U.1
Diamond, M.S.2
-
30
-
-
84903793405
-
Viruses customize autophagy protein for efficient viral entry
-
Pirooz, S., S. He, D. O'Connell, P. Khalilzadeh, Y. Yang, and C. Liang. 2014. Viruses customize autophagy protein for efficient viral entry. Autophagy. 10:1355-1356. http ://dx.doi.org /10.4161 /auto.29075
-
(2014)
Autophagy
, vol.10
, pp. 1355-1356
-
-
Pirooz, S.1
He, S.2
O'Connell, D.3
Khalilzadeh, P.4
Yang, Y.5
Liang, C.6
-
31
-
-
84969974909
-
Zika virus infects human placental macrophages
-
Quicke, K.M., J.R. Bowen, E.L. Johnson, C.E. McDonald, H. Ma, J.T. O'Neal, A. Rajakumar, J. Wrammert, B.H. Rimawi, B. Pulendran, et al. 2016. Zika virus infects human placental macrophages. Cell Host Microbe. 20:83-90. http ://dx.doi.org /10.1016 /j.chom.2016.05.015
-
(2016)
Cell Host Microbe
, vol.20
, pp. 83-90
-
-
Quicke, K.M.1
Bowen, J.R.2
Johnson, E.L.3
McDonald, C.E.4
Ma, H.5
O'Neal, J.T.6
Rajakumar, A.7
Wrammert, J.8
Rimawi, B.H.9
Pulendran, B.10
-
32
-
-
84890432985
-
p53 status determines the role of autophagy in pancreatic tumour development
-
Rosenfeldt, M.T., J. O'Prey, J.P. Morton, C. Nixon, G. MacKay, A. Mrowinska, A. Au, T.S. Rai, L. Zheng, R. Ridgway, et al. 2013. p53 status determines the role of autophagy in pancreatic tumour development. Nature. 504:296-300. http ://dx.doi.org /10.1038 /nature12865
-
(2013)
Nature
, vol.504
, pp. 296-300
-
-
Rosenfeldt, M.T.1
O'Prey, J.2
Morton, J.P.3
Nixon, C.4
MacKay, G.5
Mrowinska, A.6
Au, A.7
Rai, T.S.8
Zheng, L.9
Ridgway, R.10
-
33
-
-
0035406530
-
Placental development: lessons from mouse mutants
-
Rossant, J., and J.C. Cross. 2001. Placental development: lessons from mouse mutants. Nat. Rev. Genet. 2:538-548. http ://dx.doi.org /10.1038 /35080570
-
(2001)
Nat. Rev. Genet
, vol.2
, pp. 538-548
-
-
Rossant, J.1
Cross, J.C.2
-
34
-
-
85010023391
-
The clinically approved antiviral drug sofosbuvir inhibits Zika virus replication
-
Sacramento, C.Q., G.R. de Melo, C.S. de Freitas, N. Rocha, L.V. Hoelz, M. Miranda, N. Fintelman-Rodrigues, A. Marttorelli, A.C. Ferreira, G. Barbosa-Lima, et al. 2017. The clinically approved antiviral drug sofosbuvir inhibits Zika virus replication. Sci. Rep. 7:40920. http ://dx .doi.org /10.1038 /srep40920
-
(2017)
Sci. Rep
, vol.7
, pp. 40920
-
-
Sacramento, C.Q.1
De Melo, G.R.2
Dde Freitas, C.S.3
Rocha, N.4
Hoelz, L.V.5
Miranda, M.6
Fintelman-Rodrigues, N.7
Marttorelli, A.8
Ferreira, A.C.9
Barbosa-Lima, G.10
-
35
-
-
0242355070
-
Effects of chloroquine on viral infections: an old drug against today's diseases
-
Savarino, A., J.R. Boelaert, A. Cassone, G. Majori, and R. Cauda. 2003. Effects of chloroquine on viral infections: an old drug against today's diseases? Lancet Infect. Dis. 3:722-727. http ://dx.doi.org /10.1016 /S1473 -3099(03)00806 -5
-
(2003)
Lancet Infect. Dis
, vol.3
, pp. 722-727
-
-
Savarino, A.1
Boelaert, J.R.2
Cassone, A.3
Majori, G.4
Cauda, R.5
-
36
-
-
84906343057
-
Japanese encephalitis virus replication is negatively regulated by autophagy and occurs on LC3-Iand EDEM1-containing membranes
-
Sharma, M., S. Bhattacharyya, M. Nain, M. Kaur, V. Sood, V. Gupta, R. Khasa, M.Z. Abdin, S. Vrati, and M. Kalia. 2014. Japanese encephalitis virus replication is negatively regulated by autophagy and occurs on LC3-Iand EDEM1-containing membranes. Autophagy. 10:1637-1651. http :// dx.doi.org /10.4161 /auto.29455
-
(2014)
Autophagy
, vol.10
, pp. 1637-1651
-
-
Sharma, M.1
Bhattacharyya, S.2
Nain, M.3
Kaur, M.4
Sood, V.5
Gupta, V.6
Khasa, R.7
Abdin, M.Z.8
Vrati, S.9
Kalia, M.10
-
37
-
-
84873709314
-
Identification of a candidate therapeutic autophagy-inducing peptide
-
Shoji-Kawata, S., R. Sumpter, M. Leveno, G.R. Campbell, Z. Zou, L. Kinch, A.D. Wilkins, Q. Sun, K. Pallauf, D. MacDuff, et al. 2013. Identification of a candidate therapeutic autophagy-inducing peptide. Nature. 494:201- http ://dx.doi.org /10.1038 /nature11866
-
(2013)
Nature
, vol.494
, pp. 201
-
-
Shoji-Kawata, S.1
Sumpter, R.2
Leveno, M.3
Campbell, G.R.4
Zou, Z.5
Kinch, L.6
Wilkins, A.D.7
Sun, Q.8
Pallauf, K.9
MacDuff, D.10
-
38
-
-
79956071063
-
Autophagy in term normal human placentas
-
Signorelli, P., L. Avagliano, E. Virgili, V. Gagliostro, P. Doi, P. Braidotti, G.P. Bulfamante, R. Ghidoni, and A.M. Marconi. 2011. Autophagy in term normal human placentas. Placenta. 32:482-485. http ://dx.doi.org /10 .1016 /j.placenta.2011.03.005
-
(2011)
Placenta
, vol.32
, pp. 482-485
-
-
Signorelli, P.1
Avagliano, L.2
Virgili, E.3
Gagliostro, V.4
Doi, P.5
Braidotti, P.6
Bulfamante, G.P.7
Ghidoni, R.8
Marconi, A.M.9
-
39
-
-
84991629028
-
Zika virus targets different primary human placental cells, suggesting two routes for vertical transmission
-
Tabata, T., M. Petitt, H. Puerta-Guardo, D. Michlmayr, C. Wang, J. Fang- Hoover, E. Harris, and L. Pereira. 2016. Zika virus targets different primary human placental cells, suggesting two routes for vertical transmission. Cell Host Microbe. 20:155-166. http ://dx.doi.org /10.1016 /j.chom.2016.07.002
-
(2016)
Cell Host Microbe
, vol.20
, pp. 155-166
-
-
Tabata, T.1
Petitt, M.2
Puerta-Guardo, H.3
Michlmayr, D.4
Wang, C.5
Fang-Hoover, J.6
Harris, E.7
Pereira, L.8
-
40
-
-
78149265507
-
A randomized controlled trial of chloroquine for the treatment of dengue in Vietnamese adults
-
(publishederratumappearsinPLoS Negl. Trop. Dis. 2012)
-
Tricou, V., N.N. Minh, T.P. Van, S.J. Lee, J. Farrar, B. Wills, H.T. Tran, and C.P. Simmons. 2010. A randomized controlled trial of chloroquine for the treatment of dengue in Vietnamese adults. PLoS Negl. Trop. Dis. 4:e785. (published erratum appears in PLoS Negl. Trop. Dis. 2012. http ://dx.doi .org /10.1371 /annotation /e00ee8fb -4ab9 -46db -be8e -3696bb362db4) http ://dx.doi.org /10.1371 /journal.pntd.0000785
-
(2010)
PLoS Negl. Trop. Dis
, vol.4
-
-
Tricou, V.1
Minh, N.N.2
Van, T.P.3
Lee, S.J.4
Farrar, J.5
Wills, B.6
Tran, H.T.7
Simmons, C.P.8
-
41
-
-
84866642116
-
West Nile virus (WNV) replication is independent of autophagy in mammalian cells
-
Vandergaast, R., and B.L. Fredericksen. 2012. West Nile virus (WNV) replication is independent of autophagy in mammalian cells. PLoS One. 7:e45800. http ://dx.doi.org /10.1371 /journal.pone.0045800
-
(2012)
PLoS One
, vol.7
-
-
Vandergaast, R.1
Fredericksen, B.L.2
-
42
-
-
85013466557
-
Intrauterine Zika virus infection of pregnant immunocompetent mice models transplacental transmission and adverse perinatal outcomes
-
Vermillion, M.S., J. Lei, Y. Shabi, V.K. Baxter, N.P. Crilly, M. McLane, D.E. Griffin, A. Pekosz, S.L. Klein, and I. Burd. 2017. Intrauterine Zika virus infection of pregnant immunocompetent mice models transplacental transmission and adverse perinatal outcomes. Nat. Commun. 8:14575. http ://dx.doi.org /10.1038 /ncomms14575
-
(2017)
Nat. Commun
, vol.8
, pp. 14575
-
-
Vermillion, M.S.1
Lei, J.2
Shabi, Y.3
Baxter, V.K.4
Crilly, N.P.5
McLane, M.6
Griffin, D.E.7
Pekosz, A.8
Klein, S.L.9
Burd, I.10
-
43
-
-
34247240533
-
Expression of Cre recombinase in early diploid trophoblast cells of the mouse placenta
-
Wenzel, P.L., and G. Leone. 2007. Expression of Cre recombinase in early diploid trophoblast cells of the mouse placenta. Genesis. 45:129-134. http ://dx.doi.org /10.1002 /dvg.20276
-
(2007)
Genesis
, vol.45
, pp. 129-134
-
-
Wenzel, P.L.1
Leone, G.2
-
44
-
-
84984662505
-
Identification of small-molecule inhibitors of Zika virus infection and induced neural cell death via a drug repurposing screen
-
Xu, M., E.M. Lee, Z. Wen, Y. Cheng, W.K. Huang, X. Qian, J. Tcw, J. Kouznetsova, S.C. Ogden, C. Hammack, et al. 2016. Identification of small-molecule inhibitors of Zika virus infection and induced neural cell death via a drug repurposing screen. Nat. Med. 22:1101-1107. http ://dx .doi.org /10.1038 /nm.4184
-
(2016)
Nat. Med
, vol.22
, pp. 1101-1107
-
-
Xu, M.1
Lee, E.M.2
Wen, Z.3
Cheng, Y.4
Huang, W.K.5
Qian, X.6
Tcw, J.7
Kouznetsova, J.8
Ogden, S.C.9
Hammack, C.10
-
45
-
-
84983748570
-
Vaginal exposure to Zika virus during pregnancy leads to fetal brain infection
-
Yockey, L.J., L. Varela, T. Rakib, W. Khoury-Hanold, S.L. Fink, B. Stutz, K. Szigeti-Buck, A. Van den Pol, B.D. Lindenbach, T.L. Horvath, and A. Iwasaki. 2016. Vaginal exposure to Zika virus during pregnancy leads to fetal brain infection. Cell. 166:1247-1256.e4. http ://dx.doi.org /10 .1016 /j.cell.2016.08.004
-
(2016)
Cell
, vol.166
, pp. 1247-1256
-
-
Yockey, L.J.1
Varela, L.2
Rakib, T.3
Khoury-Hanold, W.4
Fink, S.L.5
Stutz, B.6
Szigeti-Buck, K.7
Van den Pol, A.8
Lindenbach, B.D.9
Horvath, T.L.10
Iwasaki, A.11
-
46
-
-
84971658665
-
The viral polymerase inhibitor 7-deaza-2'-C-methyladenosine is a potent inhibitor of in vitro Zika virus replication and delays disease progression in a robust mouse infection model
-
Zmurko, J., R.E. Marques, D. Schols, E. Verbeken, S.J. Kaptein, and J. Neyts. 2016. The viral polymerase inhibitor 7-deaza-2'-C-methyladenosine is a potent inhibitor of in vitro Zika virus replication and delays disease progression in a robust mouse infection model. PLoS Negl. Trop. Dis. 10:e0004695. http ://dx.doi.org /10.1371 /journal.pntd.0004695
-
(2016)
PLoS Negl. Trop. Dis
, vol.10
-
-
Zmurko, J.1
Marques, R.E.2
Schols, D.3
Verbeken, E.4
Kaptein, S.J.5
Neyts, J.6
|