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中华乳腺病杂志(电子版) ›› 2020, Vol. 14 ›› Issue (04) : 244 -247. doi: 10.3877/cma.j.issn.1674-0807.2020.04.009

所属专题: 文献

综述

肉芽肿性小叶性乳腺炎细菌学研究进展
李昕倩1, 吴红丽2, 罗澜1, 孙圣荣1, 陈创1,()   
  1. 1. 430060 武汉大学人民医院乳腺甲状腺外科
    2. 750000 银川,宁夏回族自治区人民医院乳腺科
  • 收稿日期:2019-07-11 出版日期:2020-08-01
  • 通信作者: 陈创

Bacteriological advancement of granulomatous lobular mastitis

Xinqian Li1, Hongli Wu2, Lan Luo1   

  • Received:2019-07-11 Published:2020-08-01
引用本文:

李昕倩, 吴红丽, 罗澜, 孙圣荣, 陈创. 肉芽肿性小叶性乳腺炎细菌学研究进展[J]. 中华乳腺病杂志(电子版), 2020, 14(04): 244-247.

Xinqian Li, Hongli Wu, Lan Luo. Bacteriological advancement of granulomatous lobular mastitis[J]. Chinese Journal of Breast Disease(Electronic Edition), 2020, 14(04): 244-247.

肉芽肿性小叶性乳腺炎(GLM),又称为特发性肉芽肿性乳腺炎,是一种病因尚不明确的慢性乳腺炎症,近几年中国发病率有上升的趋势。目前国内外有关其病因的研究尚有争议,主要以自身免疫和细菌感染占主导。笔者就GLM细菌学的研究进展予以综述,从而进一步认识细菌在GLM中的作用,为指导临床的诊疗提供依据。

表1 正常乳腺菌群[10,11,12,13,14]
表2 肉芽肿性小叶性乳腺炎菌群[7,15,16,17,18,19,20,21,22,23,24,25,26,27]
图1 肉芽肿性小叶性乳腺炎的发病机制[2,6,39,43,45,46,47,48]
[2]
Li J. Diagnosis and treatment of 75 patients with idiopathic lobular granulomatous mastitis[J]. J Invest Surg,2019,32(5): 414-420.
[3]
Uysal E, Soran A, Sezgin E. Factors related to recurrence of idiopathic granulomatous mastitis: what do we learn from a multicentre study?[J]. ANZ J Surg,2018,88(6): 635-639.
[4]
Pluguez-Turull CW, Nanyes JE, Quintero CJ, et al. Idiopathic granulomatous mastitis: manifestations at multimodality imaging and pitfalls[J]. Radiographics,2018,38(2): 330-356.
[5]
Koksal H. Human leukocyte antigens class I and Ⅱ in patients with idiopathic granulomatous mastitis[J]. Am J Surg,2019, 218 (3): 605-608.
[6]
Wong SCY, Poon RWS, Chen JHK, et al. Corynebacterium kroppenstedtii is an emerging cause of mastitis especially in patients with psychiatric illness on antipsychotic medication[J]. Open Forum Infect Dis,2017,4(2): ofx096.
[7]
Yu HJ, Deng H, Ma J, et al. Clinical metagenomic analysis of bacterial communities in breast abscesses of granulomatous mastitis[J]. Int J Infect Dis,2016,53: 30-33.
[8]
Moossavi S, Sepehri S, Robertson B, et al. Composition and variation of the human milk microbiota are influenced by maternal and early-life factors[J]. Cell Host Microbe,2019,25(2): 324-335.
[9]
Chan AA, Bashir M, Rivas MN, et al. Characterization of the microbiome of nipple aspirate fluid of breast cancer survivors[J]. Sci Rep,2016,6: 28 061.
[10]
Urbaniak C, Cummins J, Brackstone M, et al. Microbiota of human breast tissue [J]. Appl Environ Microbiol,2014,80(10): 3007-3014.
[11]
Thornton JW, Argenta LC, Mcclatchey KD, et al. Studies on the endogenous flora of the human breast[J]. Ann Plast Surg,1988,20(1): 39-42.
[12]
Urbaniak C, Gloor GB, Brackstone M, et al. The microbiota of breast tissue and its association with breast cancer[J]. Appl Environ Microbiol,2016,82(16): 5039-5048.
[13]
Wang H, Altemus J, Niazi F, et al. Breast tissue, oral and urinary microbiomes in breast cancer[J]. Oncotarget,2017,8(50): 88 122-88 138.
[14]
Thompson KJ, Ingle JN, Tang X, et al. A comprehensive analysis of breast cancer microbiota and host gene expression[J]. PLoS One,2017,12(11): e188 873.
[15]
Wang J, Xu H, Li Z, et al. Pathogens in patients with granulomatous lobular mastitis[J]. Int J Infect Dis,2019,81: 123-127.
[16]
Shoyele O, Vidhun R, Dodge J, et al. Cystic neutrophilic granulomatous mastitis: a clinicopathologic study of a distinct entity with supporting evidence of a role for corynebacterium-targeted therapy[J]. Ann Diagn Pathol,2018,37: 51-56.
[17]
Fujii M, Mizutani Y, Sakuma T, et al. Corynebacterium kroppenstedtii in granulomatous mastitis: Analysis of formalin-fixed, paraffin-embedded biopsy specimens by immunostaining using low-specificity bacterial antisera and real-time polymerase chain reaction[J]. Pathol Int,2018,68(7): 409-418.
[1]
Kessler E, Wolloch Y. Granulomatous mastitis: a lesion clinically simulating carcinoma[J]. Am J Clin Pathol, 1972, 58(6): 642-646.
[18]
Johnstone KJ, Robson J, Cherian SG, et al. Cystic neutrophilic granulomatous mastitis associated with corynebacterium including corynebacterium kroppenstedtii[J]. Pathology,2017,49(4): 405-412.
[19]
Wang YS, Li QW, Zhou L, et al. Granulomatous lobular mastitis associated with mycobacterium abscessus in South China: a case report and review of the literature[J]. Case Rep Infect Dis,2017,2017: 7 052 908.
[20]
赵中华,高丹,程丽萍,等. 细菌感染在肉芽肿性小叶性乳腺炎发病中的作用及病原菌分布和药敏性分析[J]. 中国妇幼健康研究,2017,28(9): 1127-1129.
[21]
Troxell ML, Gordon NT, Doggett JS, et al. Cystic neutrophilic granulomatous mastitis: association with Gram-positive bacilli and corynebacterium[J]. Am J Clin Pathol,2016,145(5): 635-645.
[22]
Kamyab A. Granulomatous lobular mastitis secondary to mycobacterium fortuitum[J]. World J Clin Cases,2016,4(12): 409-412.
[23]
Dobinson HC, Anderson TP, Chambers ST, et al. Antimicrobial treatment options for granulomatous mastitis caused by corynebacterium species[J]. J Clin Microbiol,2015,53(9): 2895-2899.
[24]
Nath SR, Mathew AP, Mohan A, et al. Rhodococcus equi granulomatous mastitis in an immunocompetent patient[J]. J Med Microbiol,2013,62(Pt 8): 1253-1255.
[25]
Ang LM, Brown H. Corynebacterium accolens isolated from breast abscess: possible association with granulomatous mastitis[J]. J Clin Microbiol,2007,45(5): 1666-1668.
[26]
Mathelin C, Riegel P, Chenard MP, et al. Granulomatous mastitis and corynebacteria: clinical and pathologic correlations[J]. Breast J,2005,11(5): 357.
[27]
Taylor GB, Paviour SD, Musaad S, et al. A clinicopathological review of 34 cases of inflammatory breast disease showing an association between corynebacteria infection and granulomatous mastitis[J]. Pathology,2003,35(2): 109-119.
[28]
Funke G, von Graevenitz A, Clarridge JE 3rd, et al. Clinical microbiology of coryneform bacteria[J]. Clin Microbiol Rev,1997,10(1): 125-159.
[29]
Chen L, Zhang XY, Wang YW, et al.Granulomatous lobular mastitis: a clinicopathological analysis of 300 cases[J]. Zhonghua Bing Li Xue Za Zhi,2019,48(3): 231-236.
[30]
Renshaw AA, Derhagopian RP, Gould EW. Cystic neutrophilic granulomatous mastitis: an underappreciated pattern strongly associated with gram-positive bacilli[J]. Am J Clin Pathol,2011,136(3): 424-427.
[31]
Collins MD, Falsen E, Akervall E, et al. Corynebacterium kroppenstedtii sp. nov., a novel corynebacterium that does not contain mycolic acids[J]. Int J Syst Bacteriol,1998,48 Pt 4: 1449-1454.
[32]
Saraiya N, Corpuz M. Corynebacterium kroppenstedtii: a challenging culprit in breast abscesses and granulomatous mastitis[J]. Curr Opin Obstet Gynecol,2019,31(5): 325-332.
[33]
Wong SCY, Poon RWS, Foo CH, et al. Novel selective medium for the isolation of corynebacterium kroppenstedtii from heavily colonised clinical specimens[J]. J Clin Pathol,2018,71(9): 781-786.
[34]
Maione C, Palumbo VD, Maffongelli A, et al. Diagnostic techniques and multidisciplinary approach in idiopathic granulomatous mastitis: a revision of the literature[J]. Acta Biomed,2019,90(1): 11-15.
[35]
Fernández-Natal I, Rodríguez-Lázaro D, Marrodán-Ciordia T, et al. Characterization and antimicrobial susceptibility of one antibiotic-sensitive and one multidrug-resistant corynebacterium kroppenstedtii strain isolated from patients with granulomatous mastitis[J]. New Microbes New Infect,2016,14: 93-97.
[36]
Tauch A, Fernández-Natal I, Soriano F. A microbiological and clinical review on corynebacterium kroppenstedtii[J]. Int J Infect Dis,2016,48: 33-39.
[37]
Tan QT, Tay SP, Gudi MA, et al. Granulomatous mastitis and factors associated with recurrence: an 11-year single-centre study of 113 patients in singapore[J]. World J Surg,2019,43(7): 1737-1745.
[38]
Trupiano JK, Sebek BA, Goldfarb J, et al. Mastitis due to mycobacterium abscessus after body piercing[J]. Clin Infect Dis,2001,33(1): 131-134.
[39]
Wong SH, Kwong TNY, Wu CY, et al. Clinical applications of gut microbiota in cancer biology[J]. Semin Cancer Biol,2019,55: 28-36.
[40]
Alibi S, Ferjani A, Gaillot O, et al. Identification of clinically relevant corynebacterium strains by Api Coryne, MALDI-TOF-mass spectrometry and molecular approaches[J]. Pathol Biol (Paris),2015,63(4/5): 153-157.
[41]
Sauget M, Valot B, Bertrand X, et al. Can MALDI-TOF mass spectrometry reasonably type bacteria?[J]. Trends Microbiol,2017,25(6): 447-455.
[42]
Zasada AA, Mosiej E. Contemporary microbiology and identification of corynebacteria spp. causing infections in human[J]. Lett Appl Microbiol,2018,66(6): 472-483.
[43]
Knight R, Vrbanac A, Taylor BC, et al. Best practices for analysing microbiomes[J]. Nat Rev Microbiol,2018,16(7): 410-422.
[44]
Ameur A, Kloosterman WP, Hestand MS. Single-molecule sequencing: towards clinical applications[J]. Trends Biotechnol,2019,37(1): 72-85.
[45]
Bercot B, Kannengiesser C, Oudin C, et al. First description of NOD2 variant associated with defective neutrophil responses in a woman with granulomatous mastitis related to corynebacteria[J]. J Clin Microbiol,2009,47(9): 3034-3037.
[46]
Sheybani F, Naderi HR, Gharib M, et al. Idiopathic granulomatous mastitis: Long-discussed but yet-to-be-known[J]. Autoimmunity,2016,49(4): 236-239.
[47]
Helal TE, Shash LS, Saad ES, et al. Idiopathic granulomatous mastitis: cytologic and histologic study of 65 egyptian patients[J]. Acta Cytol,2016,60(5): 438-444.
[48]
屠道远,甄林林,李振,等. 非哺乳期乳腺炎病因学研究进展[J/CD]. 中华乳腺病杂志(电子版),2018,12(1): 55-59.
[49]
Hu X, Li S, Fu Y, et al. Targeting gut microbiota as a possible therapy for mastitis[J]. Eur J Clin Microbiol Infect Dis,2019,38(8): 1409-1423.
[50]
王颀,于海静. 肉芽肿性乳腺炎的精准诊疗[J/CD]. 中华乳腺病杂志(电子版),2017,11(3): 129-131.
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