-
1
-
-
85079493394
-
-
WHO. Statement on the second meeting of the International Health Regulations, (accessed Janaury 30, 2020)
-
WHO. Statement on the second meeting of the International Health Regulations (2005) Emergency Committee regarding the outbreak of novel coronavirus (2019-nCoV). 2020. https://www.who.int/news-room/detail/30-01-2020-statement-on-the-second-meeting-of-the-international-health-regulations-(2005)-emergency-committee-regarding-the-outbreak-of-novel-coronavirus-(2019-ncov) (accessed Janaury 30, 2020)
-
(2005)
Emergency Committee regarding the Outbreak of Novel Coronavirus (2019-Ncov)
, pp. 2020
-
-
-
2
-
-
85078718430
-
Evolution of the novel coronavirus from the ongoing Wuhan outbreak and modeling of its spike protein for risk of human transmission
-
Xu X, Chen P, Wang J, Feng J, Zhou H, Li X, Zhong W, Hao P. Evolution of the novel coronavirus from the ongoing Wuhan outbreak and modeling of its spike protein for risk of human transmission. Sci China Life Sci 2020 Jan 21. [Epub ahead of print] doi: 10.1007/s11427-020-1637-5
-
(2020)
Science China Life Sciences
, vol.63
, Issue.3
, pp. 457-460
-
-
Xu, X.1
Chen, P.2
Wang, J.3
Feng, J.4
Zhou, H.5
Li, X.6
Zhong, W.7
Hao, P.8
-
3
-
-
85081624816
-
A pneumonia outbreak associated with a new coronavirus of probable bat origin
-
Zhou P, Yang XL, Wang XG, Hu B, Zhang L, Zhang W, Si HR, Zhu Y, Li B, Huang CL, Chen HD, Chen J, Luo Y, Guo H, Jiang RD, Liu MQ, Chen Y, Shen XR, Wang X, Zheng XS, Zhao K, Chen QJ, Deng F, Liu LL, Yan B, Zhan FX, Wang YY, Xiao GF, Shi ZL. A pneumonia outbreak associated with a new coronavirus of probable bat origin. Nature 2020 Feb 3. [Epub ahead of print] doi: 10.1038/s41586-020-2012-7
-
(2020)
Nature
, vol.579
, Issue.7798
, pp. 270-273
-
-
Zhou, P.1
Yang, X.-L.2
Wang, X.-G.3
Hu, B.4
Zhang, L.5
Zhang, W.6
Si, H.-R.7
Zhu, Y.8
Li, B.9
Huang, C.-L.10
Chen, H.-D.11
Chen, J.12
Luo, Y.13
Guo, H.14
Jiang, R.-D.15
Liu, M.-Q.16
Chen, Y.17
Shen, X.-R.18
Wang, X.19
Zheng, X.-S.20
Zhao, K.21
Chen, Q.-J.22
Deng, F.23
Liu, L.-L.24
Yan, B.25
Zhan, F.-X.26
Wang, Y.-Y.27
Xiao, G.-F.28
Shi, Z.-L.29
more..
-
4
-
-
85063607222
-
Single-cell transcriptomic analysis of human lung provides insights into the pathobiology of pulmonary fibrosis
-
COI: 1:CAS:528:DC%2BC1MXhvFehtLbJ, PID: 30554520
-
Reyfman PA, Walter JM, Joshi N, Anekalla KR, McQuattie-Pimentel AC, Chiu S, Fernandez R, Akbarpour M, Chen CI, Ren Z, Verma R, Abdala-Valencia H, Nam K, Chi M, Han S, Gonzalez-Gonzalez FJ, Soberanes S, Watanabe S, Williams KJN, Flozak AS, Nicholson TT, Morgan VK, Winter DR, Hinchcliff M, Hrusch CL, Guzy RD, Bonham CA, Sperling AI, Bag R, Hamanaka RB, Mutlu GM, Yeldandi AV, Marshall SA, Shilatifard A, Amaral LAN, Perlman H, Sznajder JI, Argento AC, Gillespie CT, Dematte J, Jain M, Singer BD, Ridge KM, Lam AP, Bharat A, Bhorade SM, Gottardi CJ, Budinger GRS, Misharin AV. Single-cell transcriptomic analysis of human lung provides insights into the pathobiology of pulmonary fibrosis. Am J Respir Crit Care Med 2019; 199(12): 1517–1536
-
(2019)
Am J Respir Crit Care Med
, vol.199
, Issue.12
, pp. 1517-1536
-
-
Reyfman, P.A.1
Walter, J.M.2
Joshi, N.3
Anekalla, K.R.4
McQuattie-Pimentel, A.C.5
Chiu, S.6
Fernandez, R.7
Akbarpour, M.8
Chen, C.I.9
Ren, Z.10
Verma, R.11
Abdala-Valencia, H.12
Nam, K.13
Chi, M.14
Han, S.15
Gonzalez-Gonzalez, F.J.16
Soberanes, S.17
Watanabe, S.18
Williams, K.J.N.19
Flozak, A.S.20
Nicholson, T.T.21
Morgan, V.K.22
Winter, D.R.23
Hinchcliff, M.24
Hrusch, C.L.25
Guzy, R.D.26
Bonham, C.A.27
Sperling, A.I.28
Bag, R.29
Hamanaka, R.B.30
Mutlu, G.M.31
Yeldandi, A.V.32
Marshall, S.A.33
Shilatifard, A.34
Amaral, L.A.N.35
Perlman, H.36
Sznajder, J.I.37
Argento, A.C.38
Gillespie, C.T.39
Dematte, J.40
Jain, M.41
Singer, B.D.42
Ridge, K.M.43
Lam, A.P.44
Bharat, A.45
Bhorade, S.M.46
Gottardi, C.J.47
Budinger, G.R.S.48
Misharin, A.V.49
more..
-
5
-
-
85074118422
-
Novel dynamics of human mucociliary differentiation revealed by single-cell RNA sequencing of nasal epithelial cultures
-
Ruiz García S, Deprez M, Lebrigand K, Cavard A, Paquet A, Arguel MJ, Magnone V, Truchi M, Caballero I, Leroy S, Marquette CH, Marcet B, Barbry P, Zaragosi LE. Novel dynamics of human mucociliary differentiation revealed by single-cell RNA sequencing of nasal epithelial cultures. Development 2019; 146(20): 146
-
(2019)
Development
, vol.146
, Issue.20
, pp. 146
-
-
Ruiz García, S.1
Deprez, M.2
Lebrigand, K.3
Cavard, A.4
Paquet, A.5
Arguel, M.J.6
Magnone, V.7
Truchi, M.8
Caballero, I.9
Leroy, S.10
Marquette, C.H.11
Marcet, B.12
Barbry, P.13
Zaragosi, L.E.14
-
6
-
-
85061148402
-
Single-cell transcriptome analysis maps the developmental track of the human heart
-
COI: 1:CAS:528:DC%2BC1MXivFyktrg%3D, PID: 30759401, e5
-
Cui Y, Zheng Y, Liu X, Yan L, Fan X, Yong J, Hu Y, Dong J, Li Q, Wu X, Gao S, Li J, Wen L, Qiao J, Tang F. Single-cell transcriptome analysis maps the developmental track of the human heart. Cell Rep 2019; 26(7): 1934–1950.e5
-
(2019)
Cell Rep
, vol.26
, Issue.7
, pp. 1934-1950
-
-
Cui, Y.1
Zheng, Y.2
Liu, X.3
Yan, L.4
Fan, X.5
Yong, J.6
Hu, Y.7
Dong, J.8
Li, Q.9
Wu, X.10
Gao, S.11
Li, J.12
Wen, L.13
Qiao, J.14
Tang, F.15
-
7
-
-
85077442826
-
scRNA-seq assessment of the human lung, spleen, and esophagus tissue stability after cold preservation
-
COI: 1:CAS:528:DC%2BB3cXmtVOktQ%3D%3D
-
Madissoon E, Wilbrey-Clark A, Miragaia RJ, Saeb-Parsy K, Mahbubani KT, Georgakopoulos N, Harding P, Polanski K, Huang N, Nowicki-Osuch K, Fitzgerald RC, Loudon KW, Ferdinand JR, Clatworthy MR, Tsingene A, van Dongen S, Dabrowska M, Patel M, Stubbington MJT, Teichmann SA, Stegle O, Meyer KB. scRNA-seq assessment of the human lung, spleen, and esophagus tissue stability after cold preservation. Genome Biol 2020; 21(1): 1
-
(2020)
Genome Biol
, vol.21
, Issue.1
, pp. 1
-
-
Madissoon, E.1
Wilbrey-Clark, A.2
Miragaia, R.J.3
Saeb-Parsy, K.4
Mahbubani, K.T.5
Georgakopoulos, N.6
Harding, P.7
Polanski, K.8
Huang, N.9
Nowicki-Osuch, K.10
Fitzgerald, R.C.11
Loudon, K.W.12
Ferdinand, J.R.13
Clatworthy, M.R.14
Tsingene, A.15
van Dongen, S.16
Dabrowska, M.17
Patel, M.18
Stubbington, M.J.T.19
Teichmann, S.A.20
Stegle, O.21
Meyer, K.B.22
more..
-
8
-
-
85064889469
-
Dissecting the single-cell transcriptome network underlying gastric premalignant lesions and early gastric cancer
-
COI: 1:CAS:528:DC%2BC1MXptFertLg%3D, PID: 31067475, e5
-
Zhang P, Yang M, Zhang Y, Xiao S, Lai X, Tan A, Du S, Li S. Dissecting the single-cell transcriptome network underlying gastric premalignant lesions and early gastric cancer. Cell Rep 2019; 27(6): 1934–1947.e5
-
(2019)
Cell Rep
, vol.27
, Issue.6
, pp. 1934-1947
-
-
Zhang, P.1
Yang, M.2
Zhang, Y.3
Xiao, S.4
Lai, X.5
Tan, A.6
Du, S.7
Li, S.8
-
9
-
-
85055156175
-
Single cell RNA sequencing of human liver reveals distinct intrahepatic macrophage populations
-
PID: 30348985
-
MacParland SA, Liu JC, Ma XZ, Innes BT, Bartczak AM, Gage BK, Manuel J, Khuu N, Echeverri J, Linares I, Gupta R, Cheng ML, Liu LY, Camat D, Chung SW, Seliga RK, Shao Z, Lee E, Ogawa S, Ogawa M, Wilson MD, Fish JE, Selzner M, Ghanekar A, Grant D, Greig P, Sapisochin G, Selzner N, Winegarden N, Adeyi O, Keller G, Bader GD, McGilvray ID. Single cell RNA sequencing of human liver reveals distinct intrahepatic macrophage populations. Nat Commun 2018; 9(1): 4383
-
(2018)
Nat Commun
, vol.9
, Issue.1
, pp. 4383
-
-
MacParland, S.A.1
Liu, J.C.2
Ma, X.Z.3
Innes, B.T.4
Bartczak, A.M.5
Gage, B.K.6
Manuel, J.7
Khuu, N.8
Echeverri, J.9
Linares, I.10
Gupta, R.11
Cheng, M.L.12
Liu, L.Y.13
Camat, D.14
Chung, S.W.15
Seliga, R.K.16
Shao, Z.17
Lee, E.18
Ogawa, S.19
Ogawa, M.20
Wilson, M.D.21
Fish, J.E.22
Selzner, M.23
Ghanekar, A.24
Grant, D.25
Greig, P.26
Sapisochin, G.27
Selzner, N.28
Winegarden, N.29
Adeyi, O.30
Keller, G.31
Bader, G.D.32
McGilvray, I.D.33
more..
-
10
-
-
85071606794
-
Single-cell analysis of Crohn’s disease lesions identifies a pathogenic cellular module associated with resistance to anti-TNF therapy
-
COI: 1:CAS:528:DC%2BC1MXhslSqur7N, PID: 31474370, e20
-
Martin JC, Chang C, Boschetti G, Ungaro R, Giri M, Grout JA, Gettler K, Chuang LS, Nayar S, Greenstein AJ, Dubinsky M, Walker L, Leader A, Fine JS, Whitehurst CE, Mbow ML, Kugathasan S, Denson LA, Hyams JS, Friedman JR, Desai PT, Ko HM, Laface I, Akturk G, Schadt EE, Salmon H, Gnjatic S, Rahman AH, Merad M, Cho JH, Kenigsberg E. Single-cell analysis of Crohn’s disease lesions identifies a pathogenic cellular module associated with resistance to anti-TNF therapy. Cell 2019; 178(6): 1493–1508.e20
-
(2019)
Cell
, vol.178
, Issue.6
, pp. 1493-1508
-
-
Martin, J.C.1
Chang, C.2
Boschetti, G.3
Ungaro, R.4
Giri, M.5
Grout, J.A.6
Gettler, K.7
Chuang, L.S.8
Nayar, S.9
Greenstein, A.J.10
Dubinsky, M.11
Walker, L.12
Leader, A.13
Fine, J.S.14
Whitehurst, C.E.15
Mbow, M.L.16
Kugathasan, S.17
Denson, L.A.18
Hyams, J.S.19
Friedman, J.R.20
Desai, P.T.21
Ko, H.M.22
Laface, I.23
Akturk, G.24
Schadt, E.E.25
Salmon, H.26
Gnjatic, S.27
Rahman, A.H.28
Merad, M.29
Cho, J.H.30
Kenigsberg, E.31
more..
-
11
-
-
85050280939
-
Single-cell transcriptomics of a human kidney allograft biopsy specimen defines a diverse inflammatory response
-
COI: 1:CAS:528:DC%2BC1MXislyiuro%3D, PID: 29980650
-
Wu H, Malone AF, Donnelly EL, Kirita Y, Uchimura K, Ramakrishnan SM, Gaut JP, Humphreys BD. Single-cell transcriptomics of a human kidney allograft biopsy specimen defines a diverse inflammatory response. J Am Soc Nephrol 2018; 29(8): 2069–2080
-
(2018)
J Am Soc Nephrol
, vol.29
, Issue.8
, pp. 2069-2080
-
-
Wu, H.1
Malone, A.F.2
Donnelly, E.L.3
Kirita, Y.4
Uchimura, K.5
Ramakrishnan, S.M.6
Gaut, J.P.7
Humphreys, B.D.8
-
12
-
-
85074378875
-
Single-cell transcriptomic map of the human and mouse bladders
-
PID: 31462402
-
Yu Z, Liao J, Chen Y, Zou C, Zhang H, Cheng J, Liu D, Li T, Zhang Q, Li J, Yang X, Ye Y, Huang Z, Long X, Yang R, Mo Z. Single-cell transcriptomic map of the human and mouse bladders. J Am Soc Nephrol 2019; 30(11): 2159–2176
-
(2019)
J Am Soc Nephrol
, vol.30
, Issue.11
, pp. 2159-2176
-
-
Yu, Z.1
Liao, J.2
Chen, Y.3
Zou, C.4
Zhang, H.5
Cheng, J.6
Liu, D.7
Li, T.8
Zhang, Q.9
Li, J.10
Yang, X.11
Ye, Y.12
Huang, Z.13
Long, X.14
Yang, R.15
Mo, Z.16
-
13
-
-
85059628259
-
Dimensionality reduction for visualizing single-cell data using UMAP
-
COI: 1:CAS:528:DC%2BC1cXitl2isbrN
-
Becht E, McInnes L, Healy J, Dutertre CA, Kwok IWH, Ng LG, Ginhoux F, Newell EW. Dimensionality reduction for visualizing single-cell data using UMAP. Nat Biotechnol 2019; 37: 38–44
-
(2019)
Nat Biotechnol
, vol.37
, pp. 38-44
-
-
Becht, E.1
McInnes, L.2
Healy, J.3
Dutertre, C.A.4
Kwok, I.W.H.5
Ng, L.G.6
Ginhoux, F.7
Newell, E.W.8
-
14
-
-
2642539225
-
Tissue distribution of ACE2 protein, the functional receptor for SARS coronavirus. A first step in understanding SARS pathogenesis
-
COI: 1:CAS:528:DC%2BD2cXlsVWktbY%3D, PID: 7167720
-
Hamming I, Timens W, Bulthuis MLC, Lely AT, Navis G, van Goor H. Tissue distribution of ACE2 protein, the functional receptor for SARS coronavirus. A first step in understanding SARS pathogenesis. J Pathol 2004; 203(2): 631–637
-
(2004)
J Pathol
, vol.203
, Issue.2
, pp. 631-637
-
-
Hamming, I.1
Timens, W.2
Bulthuis, M.L.C.3
Lely, A.T.4
Navis, G.5
van Goor, H.6
-
15
-
-
0037142101
-
Angiotensin-converting enzyme 2 is an essential regulator of heart function
-
COI: 1:CAS:528:DC%2BD38Xks1Wmurg%3D, PID: 12075344
-
Crackower MA, Sarao R, Oudit GY, Yagil C, Kozieradzki I, Scanga SE, Oliveira-dos-Santos AJ, da Costa J, Zhang L, Pei Y, Scholey J, Ferrario CM, Manoukian AS, Chappell MC, Backx PH, Yagil Y, Penninger JM. Angiotensin-converting enzyme 2 is an essential regulator of heart function. Nature 2002; 417(6891): 822–828
-
(2002)
Nature
, vol.417
, Issue.6891
, pp. 822-828
-
-
Crackower, M.A.1
Sarao, R.2
Oudit, G.Y.3
Yagil, C.4
Kozieradzki, I.5
Scanga, S.E.6
Oliveira-dos-Santos, A.J.7
da Costa, J.8
Zhang, L.9
Pei, Y.10
Scholey, J.11
Ferrario, C.M.12
Manoukian, A.S.13
Chappell, M.C.14
Backx, P.H.15
Yagil, Y.16
Penninger, J.M.17
-
16
-
-
48749084616
-
A protein complex in the brush-border membrane explains a Hartnup disorder allele
-
COI: 1:CAS:528:DC%2BD1cXpsVygsbc%3D, PID: 18424768
-
Kowalczuk S, Bröer A, Tietze N, Vanslambrouck JM, Rasko JEJ, Bröer S. A protein complex in the brush-border membrane explains a Hartnup disorder allele. FASEB J 2008; 22(8): 2880–2887
-
(2008)
FASEB J
, vol.22
, Issue.8
, pp. 2880-2887
-
-
Kowalczuk, S.1
Bröer, A.2
Tietze, N.3
Vanslambrouck, J.M.4
Rasko, J.E.J.5
Bröer, S.6
-
17
-
-
0038053724
-
A novel angiotensin-converting enzyme-related carboxypeptidase (ACE2) converts angiotensin I to angiotensin 1–9
-
COI: 1:CAS:528:DC%2BD3MXhslOisr8%3D, PID: 10969042
-
Donoghue M, Hsieh F, Baronas E, Godbout K, Gosselin M, Stagliano N, Donovan M, Woolf B, Robison K, Jeyaseelan R, Breitbart RE, Acton S. A novel angiotensin-converting enzyme-related carboxypeptidase (ACE2) converts angiotensin I to angiotensin 1–9. Circ Res 2000; 87(5): E1–E9
-
(2000)
Circ Res
, vol.87
, Issue.5
, pp. E1-E9
-
-
Donoghue, M.1
Hsieh, F.2
Baronas, E.3
Godbout, K.4
Gosselin, M.5
Stagliano, N.6
Donovan, M.7
Woolf, B.8
Robison, K.9
Jeyaseelan, R.10
Breitbart, R.E.11
Acton, S.12
-
18
-
-
0037021454
-
Quantitative mRNA expression profiling of ACE 2, a novel homologue of angiotensin converting enzyme
-
COI: 1:CAS:528:DC%2BD38XovFGksrs%3D, PID: 12459472
-
Harmer D, Gilbert M, Borman R, Clark KL. Quantitative mRNA expression profiling of ACE 2, a novel homologue of angiotensin converting enzyme. FEBS Lett 2002; 532(1–2): 107–110
-
(2002)
FEBS Lett
, vol.532
, Issue.1-2
, pp. 107-110
-
-
Harmer, D.1
Gilbert, M.2
Borman, R.3
Clark, K.L.4
-
19
-
-
20044377209
-
Myocardial infarction increases ACE2 expression in rat and humans
-
COI: 1:CAS:528:DC%2BD2MXksFGgu7Y%3D, PID: 15671045, discussion 322–324
-
Burrell LM, Risvanis J, Kubota E, Dean RG, MacDonald PS, Lu S, Tikellis C, Grant SL, Lew RA, Smith AI, Cooper ME, Johnston CI. Myocardial infarction increases ACE2 expression in rat and humans. Eur Heart J 2005; 26(4): 369–375, discussion 322–324
-
(2005)
Eur Heart J
, vol.26
, Issue.4
, pp. 369-375
-
-
Burrell, L.M.1
Risvanis, J.2
Kubota, E.3
Dean, R.G.4
MacDonald, P.S.5
Lu, S.6
Tikellis, C.7
Grant, S.L.8
Lew, R.A.9
Smith, A.I.10
Cooper, M.E.11
Johnston, C.I.12
|