Isolation and Characterization of a Novel Alpha-Hemolytic Streptococcus spp. from the Oral Cavity and Blood of Septicemic Periparturient Immunodeficient Mice.

Comparative medicine Pub Date : 2023-10-29
Amy Funk, Qidong Jia, Laura Janke, Ashley Crawford, Amy Iverson, Jason Rosch, Joseph Emmons, Chandra Savage, Heather Glasgow, Randall Hayden, Elisa Margolis, Harshan Pisharath
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Abstract

MISTRG is an immunodeficient mouse strain that expresses multiple human cytokines that support hematopoietic stem cell maintenance and myelopoiesis. While establishing a breeding colony of MISTRG mice in a dedicated barrier room, 6 cases of death or disease occurred in pregnant or postpartum mice. Clinically, this manifested as hunched posture, dyspnea, and 1 case of emaciation with ataxia. Pathologic analysis of 7 mice revealed multisystemic necrosuppurative inflammation variably affecting the uterus and placenta, joints, meninges, inner and middle ears, kidneys, and small intestine. Bacteria cultured from the blood of septic mice were identified with 89% probability by the Vitek 2 identification system as Streptococcus sanguinus with atypical biochemical parameters; the API 20E/NE system fully differentiated the isolates as a novel Streptococcus species. MALDI Biotyper-based mass spectrometry also indicated that the phenotype represented a novel Streptococcus spp. Sequencing revealed that the full-length 16S rRNA gene identity was below 97% with known Streptococcus species, including the 2 closest species Streptococcus acidominimus and Streptococcus azizii. We propose the name Streptococcus murisepticum spp. nov to our novel isolates. All male mice in this colony remained healthy despite their association with diseased female mice. Overall, 19% of the colony carried the novel Streptococcus in their oral cavity, but it could not be detected in feces. The organism was sensitive to amoxicillin, which was administered via drinking water throughout pregnancy and weaning to establish a colony of pathogen-negative future breeders. The colony remained disease-free and culture-negative for Streptococcus murisepticum spp. nov after treatment with amoxicillin. We suspect that oral colonization of MISTRG mice with the novel Streptococcus species and its associated unique pathology in periparturient mice is potentially the principal cause of loss of this strain at several institutions. Therefore, screening the oral cavity for α-hemolytic streptococci followed by targeted antibiotic treatment may be necessary when establishing MISTRG and allied immunodeficient mouse strains.

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从患败血症的围产期免疫缺陷小鼠口腔和血液中分离出一种新型α-溶血性链球菌并确定其特征。
MISTRG 是一种免疫缺陷小鼠品系,能表达多种支持造血干细胞维持和骨髓造血的人类细胞因子。在专用隔离室建立 MISTRG 小鼠繁殖群时,怀孕或产后小鼠出现了 6 例死亡或疾病。临床表现为驼背、呼吸困难和一例消瘦伴共济失调。对 7 只小鼠进行的病理分析表明,子宫和胎盘、关节、脑膜、内耳和中耳、肾脏和小肠均受到不同程度的多系统坏死性炎症影响。经 Vitek 2 鉴定系统鉴定,从败血症小鼠血液中培养出的细菌有 89% 的可能性被鉴定为具有非典型生化指标的 sanguinus 链球菌;经 API 20E/NE 系统鉴定,分离出的细菌完全不同于新型链球菌。测序结果显示,全长 16S rRNA 基因与已知链球菌物种的同一性低于 97%,其中包括两个最接近的物种 Streptococcus acidominimus 和 Streptococcus azizii。我们建议将我们的新分离物命名为 "鼠链球菌新种"(Streptococcus murisepticum spp.尽管该鼠群中的所有雄性小鼠都与患病的雌性小鼠生活在一起,但它们仍然保持健康。总体而言,19%的小鼠口腔中带有这种新型链球菌,但在粪便中却检测不到。该病菌对阿莫西林敏感,因此在整个怀孕和断奶期间都通过饮水给药,以建立一个病原体阴性的未来种鼠群落。在使用阿莫西林治疗后,该菌落仍未发病,且培养结果为阴性。我们怀疑,新型链球菌在 MISTRG 小鼠口腔中的定植及其在围产期小鼠中的相关独特病理变化可能是导致该品系在一些机构中失传的主要原因。因此,在建立 MISTRG 和其他免疫缺陷小鼠品系时,筛选口腔中的α-溶血性链球菌并进行有针对性的抗生素治疗可能是必要的。
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