<p>Canine leishmaniosis (CanL), caused by&#xa0;<i>Leishmania infantum</i>, is a widespread vector-borne disease. In Italy, an endemic region for CanL, overlapping transmission of&#xa0;<i>L. infantum</i>&#xa0;and tick-borne pathogens (TBPs) like&#xa0;<i>Anaplasma phagocytophilum</i>&#xa0;and&#xa0;<i>Ehrlichia canis</i>&#xa0;is increasingly reported. Dogs with clinical leishmaniosis often show higher co-infection rates and pronounced clinicopathological abnormalities. This study presents a systematic literature review and new findings from southern Italy, focusing on co-infections with&#xa0;<i>E. canis</i>&#xa0;and&#xa0;<i>A. phagocytophilum</i>&#xa0;in clinically healthy&#xa0;<i>L. infantum</i> seropositive and seronegative dogs. The systematic review identified two eligible studies. The first reported 34/488 (7%) dogs&#xa0;<i>L. infantum</i>&#xa0;seropositive, with 11.8% also seropositive for&#xa0;<i>A. phagocytophilum</i>. Among 454 seronegative dogs, 3% were seropositive for&#xa0;<i>A. phagocytophilum</i>&#xa0;and 2.4% for&#xa0;<i>E. canis</i>. The second study identified 154/1260 (12.2%) dogs&#xa0;<i>L. infantum</i>&#xa0;seropositive, with co-infection rates of 0.6% and 1.9% for&#xa0;<i>A. phagocytophilum</i>&#xa0;and&#xa0;<i>E. canis</i>, respectively. Among 1106 seronegative dogs, 1.3% were seropositive for&#xa0;<i>A. phagocytophilum</i>&#xa0;and 2.3% for&#xa0;<i>E. canis</i>. In the retrospective study from southern Italy, 90/154 (58.4%) dogs were&#xa0;<i>L. infantum</i>&#xa0;seropositive, with co-infection rates of 4.4% for <i>A. phagocytophilum</i> and 2.2% for <i>A. phagocytophilum</i>&#xa0;and <i>E. canis</i>. Among 64 seronegative dogs, 1.6% showed similar co-infections. This is the first systematic review in Italy, documenting low and comparable co-infection rates with&#xa0;<i>A. phagocytophilum</i>&#xa0;and&#xa0;<i>E. canis</i>&#xa0;in clinically healthy&#xa0;dogs, regardless of <i>L. infantum</i>&#xa0;serostatus. These findings suggest that co-infections may occur independently, offering insights into vector-borne disease dynamics in endemic areas.</p>

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Co-infections of rickettsiales in clinically healthy, Leishmania infantum seropositive and seronegative dogs: a systematic literature review and new findings from Southern Italy

  • Oana Gusatoaia,
  • Livia Perles,
  • Maria Alfonsa Cavalera,
  • Annamaria Uva,
  • Floriana Gernone,
  • Domenico Otranto,
  • Andrea Zatelli

摘要

Canine leishmaniosis (CanL), caused by Leishmania infantum, is a widespread vector-borne disease. In Italy, an endemic region for CanL, overlapping transmission of L. infantum and tick-borne pathogens (TBPs) like Anaplasma phagocytophilum and Ehrlichia canis is increasingly reported. Dogs with clinical leishmaniosis often show higher co-infection rates and pronounced clinicopathological abnormalities. This study presents a systematic literature review and new findings from southern Italy, focusing on co-infections with E. canis and A. phagocytophilum in clinically healthy L. infantum seropositive and seronegative dogs. The systematic review identified two eligible studies. The first reported 34/488 (7%) dogs L. infantum seropositive, with 11.8% also seropositive for A. phagocytophilum. Among 454 seronegative dogs, 3% were seropositive for A. phagocytophilum and 2.4% for E. canis. The second study identified 154/1260 (12.2%) dogs L. infantum seropositive, with co-infection rates of 0.6% and 1.9% for A. phagocytophilum and E. canis, respectively. Among 1106 seronegative dogs, 1.3% were seropositive for A. phagocytophilum and 2.3% for E. canis. In the retrospective study from southern Italy, 90/154 (58.4%) dogs were L. infantum seropositive, with co-infection rates of 4.4% for A. phagocytophilum and 2.2% for A. phagocytophilum and E. canis. Among 64 seronegative dogs, 1.6% showed similar co-infections. This is the first systematic review in Italy, documenting low and comparable co-infection rates with A. phagocytophilum and E. canis in clinically healthy dogs, regardless of L. infantum serostatus. These findings suggest that co-infections may occur independently, offering insights into vector-borne disease dynamics in endemic areas.