[1] |
Yue Y, Ren D, Liu X, et al. Spatio-temporal patterns of scrub typhus in mainland China, 2006-2017[J]. PLoS Negl Trop Dis, 2019, 13(12):e0007916.
|
[2] |
Musa TH, Ahmad T, Wana MN, et al. The epidemiology, diagnosis and management of scrub typhus disease in China[J]. Hum Vaccin Immunother, 2021, 17(10):3795-3805.
|
[3] |
Itoh K, Kabata D, Shigemi H, et al. Evaluation of tetracycline and fluoroquinolone therapy against Japanese spotted fever: Analysis based on individual data from case reports and case series[J]. Int J Antimicrob Agents, 2023, 62(2):106895.
|
[4] |
Weitzel T, Martínez-Valdebenito C, Acosta-Jamett G, et al. Notes from the field: Scrub typhus outbreak-Los Lagos Region, Chile, January-February 2023[J]. MMWR Morb Mortal Wkly Rep, 2023, 72(27):753-754.
|
[5] |
Huang X, Xie B, Long J, et al. Prediction of risk factors for scrub typhus from 2006 to 2019 based on random forest model in Guangzhou, China[J]. Trop Med Int Health, 2023, 28(7):551-561.
|
[6] |
Singh H, Selvam S, Suri V, et al. Multiple eschars in scrub typhus[J]. Am J Trop Med Hyg, 2023, 109(3):499-500.
|
[7] |
Chung MH, Lee JS, Im JH. Antibiotic combination therapy for severe scrub typhus: Is it necessary[J]Infect Chemother, 2023, 55(2):179-184.
|
[8] |
Singh J, Dinkar A, Kumar N, et al. Digital gangrene associated with scrub typhus: A case series[J]. Am J Trop Med Hyg, 2024, 110(3):497-500.
|
[9] |
Lu M, Zhou D, Xie S, et al. Genetic recombination of Orientia tsutsugamushi strains from scrub typhus patients in Guangxi, Southwest China, and the analysis of clinical features[J]. Microbes Infect, 2023, 25(5):105098.
|
[10] |
Nallan K, Rajan G, Sivathanu L, et al. Molecular detection of multiple genotypes of Orientia tsutsugamushi causing scrub typhus in febrile patients from theni district, South India[J]. Trop Med Infect Dis, 2023, 8(3):174.
|
[11] |
Xu G, Walker DH, Jupiter D, et al. A review of the global epidemiology of scrub typhus[J]. PLoS Negl Trop Dis, 2017, 11(11):e0006062.
|
[12] |
Alam AM, Gillespie CS, Goodall J, et al. Neurological manifestations of scrub typhus infection: A systematic review and meta-analysis of clinical features and case fatality[J]. PLoS Negl Trop Dis, 2022, 16(11):e0010952.
|
[13] |
Raghunathan V, Dhaliwal M, Singhi P, et al. Scrub typhus associated with Guillain-Barré syndrome (GBS)[J]. Indian J Pediatr, 2022, 89(11):1129-1130.
|
[14] |
Zaman K. Scrub typhus, a salient threat: Needs attention[J]. PLoS Negl Trop Dis, 2023, 17(6):e0011427.
|
[15] |
Trent B, Fisher J, Soong L. Scrub typhus pathogenesis: Innate immune response and lung injury during orientia tsutsugamushi infection[J]. Front Microbiol, 2019, 10:2065.
|
[16] |
Kim J, Seok H, Jeon JH, et al. Association of scrub typhus with incidence of dementia: A nationwide population-based cohort study in Korea[J]. BMC Infect Dis, 2023, 23(1):127.
doi: 10.1186/s12879-023-08107-0
pmid: 36859244
|
[17] |
Liang Y, Aditi, Onyoni F, et al. Brain transcriptomics reveal the activation of neuroinflammation pathways during acute Orientia tsutsugamushi infection in mice[J]. Front Immunol, 2023, 14:1194881.
|
[18] |
Trent B, Liang Y, Xing Y, et al. Polarized lung inflammation and Tie2/angiopoietin-mediated endothelial dysfunction during severe Orientia tsutsugamushi infection[J]. PLoS Negl Trop Dis, 2020, 14(3):e0007675.
|
[19] |
Evans SM, Rodino KG, Adcox HE, et al. Orientia tsutsugamushi uses two Ank effectors to modulate NF-κB p65 nuclear transport and inhibit NF-κB transcriptional activation[J]. PLoS Pathog, 2018, 14(5):e1007023.
|
[20] |
Gonzales C, Liang Y, Fisher J, et al. Alterations in germinal center formation and B cell activation during severe Orientia tsutsugamushi infection in mice[J]. PLoS Negl Trop Dis, 2023, 17(5):e0011090.
|
[21] |
姜天俊, 江佳富, 齐文杰. 恙虫病临床诊疗专家共识[J]. 中国人兽共患病学报, 2024, 40(1):1-6.
|
[22] |
PLOS Neglected Tropical Diseases Editors. Expression of concern: Use of eschar swabbing for the molecular diagnosis and genotyping of Orientia tsutsugamushi causing scrub typhus in Quang Nam province, Vietnam[J]. PLoS Negl Trop Dis, 2022, 16(12):e0010975.
|
[23] |
Sharda SC, Bisht K, Sharma V, et al. Direct diagnosis of scrub typhus by full-length 16S ribosomal RNA gene analysis using Oxford Nanopore sequencing[J]. Int J Infect Dis, 2022, 125:132-134.
doi: 10.1016/j.ijid.2022.10.040
pmid: 36332903
|
[24] |
Sun CB, Ma Z, Liu Z. Case report: Optic neuritis as the initial presentation of Orientia tsutsugamushi infection detected by metagenomic next-generation sequencing[J]. Front Immunol, 2023, 14:1129246.
|
[25] |
Guan XG, Zhou SX, Zhang AR, et al. Clinical outcomes of doxycycline, azithromycin and chloramphenicol for the treatment of patients with severe scrub typhus[J]. Int J Antimicrob Agents, 2022, 60(4):106647.
|
[26] |
Varghese GM, Dayanand D, Gunasekaran K, et al. Intravenous doxycycline, azithromycin, or both for severe scrub typhus[J]. N Engl J Med, 2023, 388(9):792-803.
|