日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Genome-wide host-pathogen analyses reveal genetic interaction points in tuberculosis disease

全基因组宿主-病原体分析揭示结核病中的遗传相互作用点

Phelan, Jody; Gomez-Gonzalez, Paula Josefina; Andreu, Nuria; Omae, Yosuke; Toyo-Oka, Licht; Yanai, Hideki; Miyahara, Reiko; Nedsuwan, Supalert; de Sessions, Paola Florez; Campino, Susana; Sallah, Neneh; Parkhill, Julian; Smittipat, Nat; Palittapongarnpim, Prasit; Mushiroda, Taisei; Kubo, Michiaki; Tokunaga, Katsushi; Mahasirimongkol, Surakameth; Hibberd, Martin L; Clark, Taane G

Detection of tuberculosis in cynomolgus macaques (Macaca fascicularis) using a supplementary Monkey Interferon Gamma Releasing Assay (mIGRA)

使用补充猴干扰素γ释放试验(mIGRA)检测食蟹猴(Macaca fascicularis)的结核病

S Warit, P Billamas, N Makhao, S Jaitrong, T Juthayothin, W Yindeeyoungyeon, K Dokladda, N Smittipat, T Kemthong, S Meesawat, N Kongsombat, C Kraitat, T Prammananan, T Palaga, A Chaiprasert, S Malaivijitnond

Identification and in silico functional prediction of lineage-specific SNPs distributed in DosR-related proteins and resuscitation-promoting factor proteins of Mycobacterium tuberculosis

结核分枝杆菌DosR相关蛋白和复苏促进因子蛋白中谱系特异性SNP的鉴定和计算机功能预测

Tantivitayakul, Pornpen; Juthayothin, Tada; Ruangchai, Wuthiwat; Smittipat, Nat; Disratthakit, Areeya; Mahasirimongkol, Surakameth; Tokunaga, Katsushi; Palittapongarnpim, Prasit

A novel Ancestral Beijing sublineage of Mycobacterium tuberculosis suggests the transition site to Modern Beijing sublineages

一种新的结核分枝杆菌祖先北京亚系揭示了向现代北京亚系过渡的地点

Ajawatanawong, Pravech; Yanai, Hideki; Smittipat, Nat; Disratthakit, Areeya; Yamada, Norio; Miyahara, Reiko; Nedsuwan, Supalert; Imasanguan, Worarat; Kantipong, Pacharee; Chaiyasirinroje, Boonchai; Wongyai, Jiraporn; Plitphonganphim, Supada; Tantivitayakul, Pornpen; Phelan, Jody; Parkhill, Julian; Clark, Taane G; Hibberd, Martin L; Ruangchai, Wuthiwat; Palittapongarnpim, Panawun; Juthayothin, Tada; Thawornwattana, Yuttapong; Viratyosin, Wasna; Tongsima, Sissades; Mahasirimongkol, Surakameth; Tokunaga, Katsushi; Palittapongarnpim, Prasit

Pathogen lineage-based genome-wide association study identified CD53 as susceptible locus in tuberculosis.

基于病原体谱系的基因组关联研究发现 CD53 是结核病的易感基因位点

Omae Yosuke, Toyo-Oka Licht, Yanai Hideki, Nedsuwan Supalert, Wattanapokayakit Sukanya, Satproedprai Nusara, Smittipat Nat, Palittapongarnpim Prasit, Sawanpanyalert Pathom, Inunchot Wimala, Pasomsub Ekawat, Wichukchinda Nuanjun, Mushiroda Taisei, Kubo Michiaki, Tokunaga Katsushi, Mahasirimongkol Surakameth

Genetic diversity and dynamic distribution of Mycobacterium tuberculosis isolates causing pulmonary and extrapulmonary tuberculosis in Thailand

泰国引起肺结核和肺外结核病的结核分枝杆菌分离株的遗传多样性和动态分布

Srilohasin, Prapaporn; Chaiprasert, Angkana; Tokunaga, Katsushi; Nishida, Nao; Prammananan, Therdsak; Smittipat, Nat; Mahasirimongkol, Surakameth; Chaiyasirinroje, Boonchai; Yanai, Hideki; Palittapongarnpim, Prasit

The 74-kilodalton immunodominant antigen of the pathogenic oomycete Pythium insidiosum is a putative exo-1,3-beta-glucanase

致病性卵菌腐霉菌(Pythium insidiosum)的74千道尔顿免疫优势抗原是一种推定的外切-1,3-β-葡聚糖酶。

Krajaejun, Theerapong; Keeratijarut, Angsana; Sriwanichrak, Kanchana; Lowhnoo, Tassanee; Rujirawat, Thidarat; Petchthong, Thanom; Yingyong, Wanta; Kalambaheti, Thareerat; Smittipat, Nat; Juthayothin, Tada; Sullivan, Thomas D