Characterization and distribution of viridans group streptococci isolated from infectious endophthalmitis and keratitis

ABSTRACT Purpose: The aims of this study were to characterize alpha-hemolytic streptococci among isolates from cases of infectious endophthalmitis and keratitis and to determine their distributions. Methods: The sample included 27 and 35 nonduplicated isolates of alpha-hemolytic streptococci recover...

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Hauptverfasser: Katiane Santin, Bispo, Paulo José Martins, Talita Trevizani Rocchetti, Denadai, Lucas, Willames Marcos Brasileiro Da S. Martins, Carmo, Mirian Silva Do, Hofling-Lima, Ana Luisa
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creator Katiane Santin
Bispo, Paulo José Martins
Talita Trevizani Rocchetti
Denadai, Lucas
Willames Marcos Brasileiro Da S. Martins
Carmo, Mirian Silva Do
Hofling-Lima, Ana Luisa
description ABSTRACT Purpose: The aims of this study were to characterize alpha-hemolytic streptococci among isolates from cases of infectious endophthalmitis and keratitis and to determine their distributions. Methods: The sample included 27 and 35 nonduplicated isolates of alpha-hemolytic streptococci recovered from patients with infectious endophthalmitis (2002-2013) and keratitis (2008-2013), respectively. Isolates were identified by the optochin susceptibility and bile solubility tests, using a biochemical identification system. The minimum inhibitory concentration was determined by the broth microdilution method. Molecular identification was performed by analyses of three constitutive genes and the complementary multilocus sequence. The molecular epidemiology of Streptococcus pneumoniae was investigated using multilocus sequence typing, and the presence of the capsular polysaccharide-encoding gene was assessed using conventional polymerase chain reaction. Outcomes were evaluated using the patients’ medical records. Results: Phenotypic tests differentiated S. pneumoniae from other alpha-hemolytic streptococci, consistent with later molecular identifications. Streptococcus oralis was significantly prevalent among the endophthalmitis isolates, as was S. pneumoniae in the keratitis isolates. High levels of susceptibility to antibiotics were observed, including vancomycin, cephalosporins, and fluoroquinolones. High genetic variability was detected among the 19 S. pneumoniae strains, with 15 predicted to be encapsulated. The medical records of patients with infectious endophthalmitis were reviewed (n=15/27; 56%), and final visual acuity was assessed in 12 cases (44%). Many patients progressed to a final visual acuity state of “no light perception” (6/12; 50%), “light perception” (3/12; 25%), or “hand motion” (1/12; 8%). The medical records of patients with infectious keratitis were also reviewed (n=24/35; 69%), and final visual acuity was assessed in 18 cases (51%). Similarly, most patients progressed to a final visual acuity state of “no light perception” (6/18; 33%), “light perception” (1/18; 6%), or “hand motion” (6/18; 33%). Overall, the majority of patients progressed to a final visual acuity state of “no light perception” (12/30), “light perception” (4/30), or “hand motion” (7/30). Conclusions: The distribution of alpha-hemolytic streptococci in ocular infections suggested the presence of a species-specific tissue tropism. The prognoses of patients with ocular s
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Martins ; Carmo, Mirian Silva Do ; Hofling-Lima, Ana Luisa</creator><creatorcontrib>Katiane Santin ; Bispo, Paulo José Martins ; Talita Trevizani Rocchetti ; Denadai, Lucas ; Willames Marcos Brasileiro Da S. Martins ; Carmo, Mirian Silva Do ; Hofling-Lima, Ana Luisa</creatorcontrib><description>ABSTRACT Purpose: The aims of this study were to characterize alpha-hemolytic streptococci among isolates from cases of infectious endophthalmitis and keratitis and to determine their distributions. Methods: The sample included 27 and 35 nonduplicated isolates of alpha-hemolytic streptococci recovered from patients with infectious endophthalmitis (2002-2013) and keratitis (2008-2013), respectively. Isolates were identified by the optochin susceptibility and bile solubility tests, using a biochemical identification system. The minimum inhibitory concentration was determined by the broth microdilution method. Molecular identification was performed by analyses of three constitutive genes and the complementary multilocus sequence. The molecular epidemiology of Streptococcus pneumoniae was investigated using multilocus sequence typing, and the presence of the capsular polysaccharide-encoding gene was assessed using conventional polymerase chain reaction. Outcomes were evaluated using the patients’ medical records. Results: Phenotypic tests differentiated S. pneumoniae from other alpha-hemolytic streptococci, consistent with later molecular identifications. Streptococcus oralis was significantly prevalent among the endophthalmitis isolates, as was S. pneumoniae in the keratitis isolates. High levels of susceptibility to antibiotics were observed, including vancomycin, cephalosporins, and fluoroquinolones. High genetic variability was detected among the 19 S. pneumoniae strains, with 15 predicted to be encapsulated. The medical records of patients with infectious endophthalmitis were reviewed (n=15/27; 56%), and final visual acuity was assessed in 12 cases (44%). Many patients progressed to a final visual acuity state of “no light perception” (6/12; 50%), “light perception” (3/12; 25%), or “hand motion” (1/12; 8%). The medical records of patients with infectious keratitis were also reviewed (n=24/35; 69%), and final visual acuity was assessed in 18 cases (51%). Similarly, most patients progressed to a final visual acuity state of “no light perception” (6/18; 33%), “light perception” (1/18; 6%), or “hand motion” (6/18; 33%). Overall, the majority of patients progressed to a final visual acuity state of “no light perception” (12/30), “light perception” (4/30), or “hand motion” (7/30). Conclusions: The distribution of alpha-hemolytic streptococci in ocular infections suggested the presence of a species-specific tissue tropism. The prognoses of patients with ocular streptococcal infections were highly unfavorable, and antibiotic resistance did not contribute to the unfavorable clinical progressions and poor outcomes.</description><identifier>DOI: 10.6084/m9.figshare.14275658</identifier><language>eng</language><publisher>SciELO journals</publisher><subject>FOS: Clinical medicine ; Ophthalmology</subject><creationdate>2021</creationdate><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>776,1888</link.rule.ids><linktorsrc>$$Uhttps://commons.datacite.org/doi.org/10.6084/m9.figshare.14275658$$EView_record_in_DataCite.org$$FView_record_in_$$GDataCite.org$$Hfree_for_read</linktorsrc></links><search><creatorcontrib>Katiane Santin</creatorcontrib><creatorcontrib>Bispo, Paulo José Martins</creatorcontrib><creatorcontrib>Talita Trevizani Rocchetti</creatorcontrib><creatorcontrib>Denadai, Lucas</creatorcontrib><creatorcontrib>Willames Marcos Brasileiro Da S. Martins</creatorcontrib><creatorcontrib>Carmo, Mirian Silva Do</creatorcontrib><creatorcontrib>Hofling-Lima, Ana Luisa</creatorcontrib><title>Characterization and distribution of viridans group streptococci isolated from infectious endophthalmitis and keratitis</title><description>ABSTRACT Purpose: The aims of this study were to characterize alpha-hemolytic streptococci among isolates from cases of infectious endophthalmitis and keratitis and to determine their distributions. Methods: The sample included 27 and 35 nonduplicated isolates of alpha-hemolytic streptococci recovered from patients with infectious endophthalmitis (2002-2013) and keratitis (2008-2013), respectively. Isolates were identified by the optochin susceptibility and bile solubility tests, using a biochemical identification system. The minimum inhibitory concentration was determined by the broth microdilution method. Molecular identification was performed by analyses of three constitutive genes and the complementary multilocus sequence. The molecular epidemiology of Streptococcus pneumoniae was investigated using multilocus sequence typing, and the presence of the capsular polysaccharide-encoding gene was assessed using conventional polymerase chain reaction. Outcomes were evaluated using the patients’ medical records. Results: Phenotypic tests differentiated S. pneumoniae from other alpha-hemolytic streptococci, consistent with later molecular identifications. Streptococcus oralis was significantly prevalent among the endophthalmitis isolates, as was S. pneumoniae in the keratitis isolates. High levels of susceptibility to antibiotics were observed, including vancomycin, cephalosporins, and fluoroquinolones. High genetic variability was detected among the 19 S. pneumoniae strains, with 15 predicted to be encapsulated. The medical records of patients with infectious endophthalmitis were reviewed (n=15/27; 56%), and final visual acuity was assessed in 12 cases (44%). Many patients progressed to a final visual acuity state of “no light perception” (6/12; 50%), “light perception” (3/12; 25%), or “hand motion” (1/12; 8%). The medical records of patients with infectious keratitis were also reviewed (n=24/35; 69%), and final visual acuity was assessed in 18 cases (51%). Similarly, most patients progressed to a final visual acuity state of “no light perception” (6/18; 33%), “light perception” (1/18; 6%), or “hand motion” (6/18; 33%). Overall, the majority of patients progressed to a final visual acuity state of “no light perception” (12/30), “light perception” (4/30), or “hand motion” (7/30). Conclusions: The distribution of alpha-hemolytic streptococci in ocular infections suggested the presence of a species-specific tissue tropism. 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Martins ; Carmo, Mirian Silva Do ; Hofling-Lima, Ana Luisa</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-datacite_primary_10_6084_m9_figshare_142756583</frbrgroupid><rsrctype>datasets</rsrctype><prefilter>datasets</prefilter><language>eng</language><creationdate>2021</creationdate><topic>FOS: Clinical medicine</topic><topic>Ophthalmology</topic><toplevel>online_resources</toplevel><creatorcontrib>Katiane Santin</creatorcontrib><creatorcontrib>Bispo, Paulo José Martins</creatorcontrib><creatorcontrib>Talita Trevizani Rocchetti</creatorcontrib><creatorcontrib>Denadai, Lucas</creatorcontrib><creatorcontrib>Willames Marcos Brasileiro Da S. Martins</creatorcontrib><creatorcontrib>Carmo, Mirian Silva Do</creatorcontrib><creatorcontrib>Hofling-Lima, Ana Luisa</creatorcontrib><collection>DataCite (Open Access)</collection><collection>DataCite</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Katiane Santin</au><au>Bispo, Paulo José Martins</au><au>Talita Trevizani Rocchetti</au><au>Denadai, Lucas</au><au>Willames Marcos Brasileiro Da S. Martins</au><au>Carmo, Mirian Silva Do</au><au>Hofling-Lima, Ana Luisa</au><format>book</format><genre>unknown</genre><ristype>DATA</ristype><title>Characterization and distribution of viridans group streptococci isolated from infectious endophthalmitis and keratitis</title><date>2021-03-24</date><risdate>2021</risdate><abstract>ABSTRACT Purpose: The aims of this study were to characterize alpha-hemolytic streptococci among isolates from cases of infectious endophthalmitis and keratitis and to determine their distributions. Methods: The sample included 27 and 35 nonduplicated isolates of alpha-hemolytic streptococci recovered from patients with infectious endophthalmitis (2002-2013) and keratitis (2008-2013), respectively. Isolates were identified by the optochin susceptibility and bile solubility tests, using a biochemical identification system. The minimum inhibitory concentration was determined by the broth microdilution method. Molecular identification was performed by analyses of three constitutive genes and the complementary multilocus sequence. The molecular epidemiology of Streptococcus pneumoniae was investigated using multilocus sequence typing, and the presence of the capsular polysaccharide-encoding gene was assessed using conventional polymerase chain reaction. Outcomes were evaluated using the patients’ medical records. Results: Phenotypic tests differentiated S. pneumoniae from other alpha-hemolytic streptococci, consistent with later molecular identifications. Streptococcus oralis was significantly prevalent among the endophthalmitis isolates, as was S. pneumoniae in the keratitis isolates. High levels of susceptibility to antibiotics were observed, including vancomycin, cephalosporins, and fluoroquinolones. High genetic variability was detected among the 19 S. pneumoniae strains, with 15 predicted to be encapsulated. The medical records of patients with infectious endophthalmitis were reviewed (n=15/27; 56%), and final visual acuity was assessed in 12 cases (44%). Many patients progressed to a final visual acuity state of “no light perception” (6/12; 50%), “light perception” (3/12; 25%), or “hand motion” (1/12; 8%). The medical records of patients with infectious keratitis were also reviewed (n=24/35; 69%), and final visual acuity was assessed in 18 cases (51%). Similarly, most patients progressed to a final visual acuity state of “no light perception” (6/18; 33%), “light perception” (1/18; 6%), or “hand motion” (6/18; 33%). Overall, the majority of patients progressed to a final visual acuity state of “no light perception” (12/30), “light perception” (4/30), or “hand motion” (7/30). Conclusions: The distribution of alpha-hemolytic streptococci in ocular infections suggested the presence of a species-specific tissue tropism. The prognoses of patients with ocular streptococcal infections were highly unfavorable, and antibiotic resistance did not contribute to the unfavorable clinical progressions and poor outcomes.</abstract><pub>SciELO journals</pub><doi>10.6084/m9.figshare.14275658</doi><oa>free_for_read</oa></addata></record>
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subjects FOS: Clinical medicine
Ophthalmology
title Characterization and distribution of viridans group streptococci isolated from infectious endophthalmitis and keratitis
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