For: | Loreto &S, Tondolo JS, Zanette RA, Alves SH, Santurio JM. Update on pythiosis immunobiology and immunotherapy. World J Immunol 2014; 4(2): 88-97 [DOI: 10.5411/wji.v4.i2.88] |
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URL: | https://www.wjgnet.com/2219-2824/full/v4/i2/88.htm |
Number | Citing Articles |
1 |
Kimberly S. Coyner. Clinical Atlas of Canine and Feline Dermatology. 2019; : 133 doi: 10.1002/9781119226338.ch8
|
2 |
Erick Platiní F. Souto, Lisanka A. Maia, Eldine G. Miranda Neto, Glaucia D. Kommers, Felício Garino Junior, Franklin Riet-Correa, Glauco J.N. Galiza, Antonio F.M. Dantas. Pythiosis in Equidae in Northeastern Brazil: 1985–2020. Journal of Equine Veterinary Science 2021; 105: 103726 doi: 10.1016/j.jevs.2021.103726
|
3 |
F.P.K. Jesus, L. Ferreiro, K.S. Bizzi, É.S. Loreto, M.B. Pilotto, A. Ludwig, S.H. Alves, R.A. Zanette, J.M. Santurio. In vitro activity of carvacrol and thymol combined with antifungals or antibacterials against Pythium insidiosum. Journal de Mycologie Médicale 2015; 25(2): e89 doi: 10.1016/j.mycmed.2014.10.023
|
4 |
Pornphan Sukanan, Bongkot Suparp, Supattra Yongsiri, Piyarat Chansiripornchai, Sawang Kesdangsakonwut. Successful management of colonic pythiosis in two dogs in Thailand using antifungal therapy. Veterinary Medicine and Science 2022; 8(6): 2283 doi: 10.1002/vms3.955
|
5 |
Erico S. Loreto, Juliana S. M. Tondolo, Régis A. Zanette. Treating Pythiosis with Antibacterial Drugs Targeting Protein Synthesis: An Overview. Journal of Fungi 2024; 10(4): 234 doi: 10.3390/jof10040234
|
6 |
Lalit Kishore Ahirwar, Savitri Sharma.
Elevated Levels of Interleukins, Leukocyte Protein and Cathelicidin Antimicrobial Peptide are Strongly Associated with Early to Mid-Stage of
Pythium insidiosum
Infection in Rabbit Corneas
. Current Eye Research 2022; 47(5): 677 doi: 10.1080/02713683.2021.2023192
|
7 |
Carlos E.P. Santos, Erico S. Loreto, Régis A. Zanette, Juliano Bortolini, Janio M. Santurio, Luis C. Marques. Anti-Pythium insidiosum intradermal immunotherapy in horses: diagnosis and therapy. Pesquisa Veterinária Brasileira 2024; 44 doi: 10.1590/1678-5150-pvb-7370
|
8 |
Juliana S M Tondolo, Erico S Loreto, Francielli P K de Jesus, Pauline C Ledur, Camila M Verdi, Janio M Santurio. Immunotherapy based on Pythium insidiosum mycelia drives a Th1/Th17 response in mice. Medical Mycology 2020; 58(8): 1120 doi: 10.1093/mmy/myaa023
|
9 |
Hanna Yolanda, Theerapong Krajaejun. History and Perspective of Immunotherapy for Pythiosis. Vaccines 2021; 9(10): 1080 doi: 10.3390/vaccines9101080
|
10 |
E.S. Loreto, J.S.M. Tondolo, F.P.K. de Jesus, A.M. Engelmann, C.M. de Andrade, J.M. Santurio, R.A. Zanette, G.D. Kommers, T.M. Silva, S.H. Alves. Efficacy of miltefosine therapy against subcutaneous experimental pythiosis in rabbits. Journal de Mycologie Médicale 2020; 30(1): 100919 doi: 10.1016/j.mycmed.2019.100919
|
11 |
Renata GS Dória, Mariana B Carvalho, Silvio H Freitas, Luciane M Laskoski, Edson M Colodel, Fábio S Mendonça, Marco AG Silva, Renan Grigoletto, Paulo Fantinato Neto. Evaluation of intravenous regional perfusion with amphotericin B and dimethylsulfoxide to treat horses for pythiosis of a limb. BMC Veterinary Research 2015; 11(1) doi: 10.1186/s12917-015-0472-z
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12 |
Sadeep Medhasi, Naunpun Sangphech, Nitipong Permpalung, Pattama Torvorapanit, Rongpong Plongla, Navaporn Worasilchai. Functional characterization of macrophages and change of Th1/Th2 balance in patients with pythiosis after Pythium insidiosum antigen immunotherapy. Scientific Reports 2024; 14(1) doi: 10.1038/s41598-024-78756-x
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