Clinical insights into Candidatus Mycoplasma haemominutum-associated anaemia in naturally infected cats: flea-associated risk and paradoxical clinicopathological findings

Abstract Background The specific pathophysiological drivers and host–pathogen–environment factors that dictate the pathogenicity of Candidatus Mycoplasma haemominutum (CMhm) remain poorly defined, hindering accurate clinical interpretation and effective disease control. This study provides detailed mechanistic insights into CMhm-associated anaemia in naturally infected cats by integrating analyses of concurrent diseases and comprehensive clinicopathological panels, alongside molecular characterisation in an under-represented region. Two groups of CMhm-infected cats (anaemic, n = 13; non-anaemic, n = 25) were systematically screened for 14 concurrent infectious, metabolic, or endocrine conditions, alongside extensive haematological, biochemical, and iron profile assessments. Multivariable logistic regression identified independent risk factors, while CMhm molecular diversity was assessed using 16S rRNA gene sequencing. Results Multivariable analysis identified flea infestation as the sole significant driver of anaemia (OR 7.77; P = 0.04), underscoring a key vector-trigger role and contributing evidence to the ongoing debate on CMhm’s flea-borne transmission. Although specific conditions such as feline immunodeficiency virus, feline leukaemia virus, Mycoplasma haemofelis, Candidatus Mycoplasma turicensis, and hyperglycaemia were not statistically significant, they may still be biologically relevant. Notably, most cats in the non-anaemic group also had comorbidities, suggesting that disease stage or severity may be more critical than mere presence. Supporting this, the anaemic group showed significantly lower lymphocyte counts and a downward trend in other leucocytes. Anaemia appeared deceptively normocytic-normochromic and non-regenerative despite ongoing CMhm-induced haemolysis, indicating additional counteracting mechanisms. Detailed clinicopathological and concurrent disease investigations pointed to true iron deficiency (flea-related) and functional iron deficiency (inflammatory comorbidities) as contributors. The coexistence of these three opposing pathophysiological processes shaped the paradoxical haematological and iron profile. Molecular analysis identified three CMhm nucleotide sequence types (nSTs) new to the region. Conclusions The results of this study suggest that CMhm-associated anaemia is likely a secondary condition, in which environmental triggers and host immune status shape disease manifestation. This study elucidates the complex pathophysiological mechanisms underlying anaemia, providing insights to enhance clinical diagnosis and inform control strategies.

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Journal
Irish Veterinary Journal
Published
2026-09-16
DOI
https://doi.org/10.1186/s13620-026-00359-x
Primary Topic
Vector-borne infectious diseases
Type
article
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article

Clinical insights into Candidatus Mycoplasma haemominutum-associated anaemia in naturally infected cats: flea-associated risk and paradoxical clinicopathological findings

Mona Osman, Mahmoud S. Safwat, Samah Eid, Ahmad Zaki Anwer et al.
Irish Veterinary Journal
Vector-borne infectious diseases
article

Clinical insights into Candidatus Mycoplasma haemominutum-associated anaemia in naturally infected cats: flea-associated risk and paradoxical clinicopathological findings

Mona Osman, Mahmoud S. Safwat, Samah Eid, Ahmad Zaki Anwer, Samah El-Sayed M, Asmaa A. Rayan, Reham Karam, Ghada M. Khalil, Omnia H. Refaei, El Shymaa A. Mohamed, Mary A. N. Sargious, M. E. Ali, Abdelhalim A. Elshawadfy, Ahmed Orabi, Mohamed I. Abdallah, Mohamed Abdel-Haleem
article en

Abstract

Abstract Background The specific pathophysiological drivers and host–pathogen–environment factors that dictate the pathogenicity of Candidatus Mycoplasma haemominutum (CMhm) remain poorly defined, hindering accurate clinical interpretation and effective disease control. This study provides detailed mechanistic insights into CMhm-associated anaemia in naturally infected cats by integrating analyses of concurrent diseases and comprehensive clinicopathological panels, alongside molecular characterisation in an under-represented region. Two groups of CMhm-infected cats (anaemic, n = 13; non-anaemic, n = 25) were systematically screened for 14 concurrent infectious, metabolic, or endocrine conditions, alongside extensive haematological, biochemical, and iron profile assessments. Multivariable logistic regression identified independent risk factors, while CMhm molecular diversity was assessed using 16S rRNA gene sequencing. Results Multivariable analysis identified flea infestation as the sole significant driver of anaemia (OR 7.77; P = 0.04), underscoring a key vector-trigger role and contributing evidence to the ongoing debate on CMhm’s flea-borne transmission. Although specific conditions such as feline immunodeficiency virus, feline leukaemia virus, Mycoplasma haemofelis, Candidatus Mycoplasma turicensis, and hyperglycaemia were not statistically significant, they may still be biologically relevant. Notably, most cats in the non-anaemic group also had comorbidities, suggesting that disease stage or severity may be more critical than mere presence. Supporting this, the anaemic group showed significantly lower lymphocyte counts and a downward trend in other leucocytes. Anaemia appeared deceptively normocytic-normochromic and non-regenerative despite ongoing CMhm-induced haemolysis, indicating additional counteracting mechanisms. Detailed clinicopathological and concurrent disease investigations pointed to true iron deficiency (flea-related) and functional iron deficiency (inflammatory comorbidities) as contributors. The coexistence of these three opposing pathophysiological processes shaped the paradoxical haematological and iron profile. Molecular analysis identified three CMhm nucleotide sequence types (nSTs) new to the region. Conclusions The results of this study suggest that CMhm-associated anaemia is likely a secondary condition, in which environmental triggers and host immune status shape disease manifestation. This study elucidates the complex pathophysiological mechanisms underlying anaemia, providing insights to enhance clinical diagnosis and inform control strategies.

Irish Veterinary Journal
Cairo University (EG), Mansoura University (EG), Zagazig University (EG), Saudi Center for Disease Prevention and Control (SA), Agricultural Genetic Engineering Research Institute (EG), Animal Health Research Institute (TW), Assiut University (EG)
Openalex Percentile: Top 9%
Vector-borne infectious diseases
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