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Haemobartonellosis in squirrel monkeys (Saimiri sciureus): antagonism between Haemobartonella sp. and experimental Plasmodium falciparum malaria.

A hemotropic parasite of the genus Haemo bartonella (rickettsial parasite of the Family Anaplasmataceae) is responsible for latent asymptomatic infection in colony-born Saimiri monkeys. Indeed, many of these animals develop a patent Haemobartonella infection following splenectomy. Such patent parasitism is characterized by an intense Haemobartonella parasitemia which peaks between days 12 and 14 after removal of the spleen and then decreases to become undetectable between days 25 and 30. During the resolving phase of parasitemia, a moderate anemia associated with monocytosis and erythrophagocytosis is observed. In certain Saimiri monkeys, Haemobartonella parasitemia remains latent following removal of the spleen. This indicates that the spleen plays a role but is not necessary to maintain latent Haemobartonella parasitism. It also suggests the existence of heterogeneity in the host immune reactivity to the parasite. Latent or patent haemobartonellosis might raise a problem when Saimiri monkeys are used as experimental hosts of Plasmodium falciparum asexual blood stages, as already noticed with "rodent malaria." Thus we investigated the relationship between Haemobartonella and P. falci parum in splenectomized monkeys. When animals harboring latent Haemobartonella sp. were infected with P. falciparum, the former remained latent and exerted no influence on the course of the P. falciparum parasitemia. In constrast, when P. falciparum was initiated in animals which were in the process of developing patent haemobarto nellosis, the course of the former was protracted and either the animal resisted longer, or it self-cleared the P. falciparum infection. Conversely, patent haemobartonellosis was delayed when splenectomy was performed at different times after initiation of P. falciparum infection in intact monkeys. Our results do not allow us to draw conclusions as to the mechanism(s) of the antagonism between the two parasites, but they emphasize the need to monitor the presence of Haemobartonella when splenectomized Saimiri monkeys are used as experimentals hosts for P. falciparum parasitism.

Anaplasmataceae Infections↗

Proposal to transfer some members of the genera Haemobartonella and Eperythrozoon to the genus Mycoplasma with descriptions of 'Candidatus Mycoplasma haemofelis', 'Candidatus Mycoplasma haemomuris', 'Candidatus Mycoplasma haemosuis' and 'Candidatus Mycoplasma wenyonii'.

Cell-wall-less uncultivated parasitic bacteria that attach to the surface of host erythrocytes currently are classified in the order Rickettsiales, family Anaplasmataceae, in the genera Haemobartonella and Eperythrozoon. Recently 16S rRNA gene sequences have been determined for four of these species: Haemobartonella felis and Haemobartonella muris and Eperythrozoon suis and Eperythrozoon wenyonii. Phylogenetic analysis of these sequence data shows that these haemotrophic bacteria are closely related to species in the genus Mycoplasma (class Mollicutes). These haemotrophic bacteria form a new phylogenetic cluster within the so-called pneumoniae group of Mycoplasma and share properties with one another as well as with other members of the pneumoniae group. These studies clearly indicate that the classification of these taxa should be changed to reflect their phylogenetic affiliation and the following is proposed: (i) that Haemobartonella felis and Haemobartonella muris should be transferred to the genus Mycoplasma as 'Candidatus Mycoplasma haemofelis' and 'Candidatus Mycoplasma haemomuris' and (ii) that Eperythrozoon suis and Eperythrozoon wenyonii should be transferred to the genus Mycoplasma as 'Candidatus Mycoplasma haemosuis' and 'Candidatus Mycoplasma wenyonii'. The former Haemobartonella and Eperythrozoon species described here represent a new group of parasitic mycoplasmas that possess a pathogenic capacity previously unrecognized among the mollicutes. These haemotrophic mycoplasmas have been given the trivial name haemoplasmas. These results call into question the affiliation of the remaining officially named species of Haemobartonella and Eperythrozoon which should be considered species of uncertain affiliation pending the resolution of their phylogenetic status.

Anaplasmataceae↗

Western immunoblot analysis of Haemobartonella muris and comparison of 16S rRNA gene sequences of H. muris, H. felis, and Eperythrozoon suis.

Infectious agents were isolated from the spleens of three wild mice (Apodemus argenteus) by intraperitoneal inoculation of the spleen homogenate into laboratory mice. The laboratory mice developed clinical signs and splenomegaly, and three isolates were maintained by passage in mice. Tetracyclines were effective in preventing infection of mice with these agents, but streptomycin and penicillin were ineffective. The agents did not grow in bacterial growth media or chicken embryos. In smears of blood from infected mice stained by the Giemsa or the indirect immunofluorescence method, numerous organisms were found on the surfaces of erythrocytes. Electron microscopy revealed cell wall-less pleomorphic cocci of 350 to 700 nm in diameter. On the basis of these results, the isolates were identified as Haemobartonella muris. There was no antigenic cross-reactivity with Rickettsia or Ehrlichia spp. or other related organisms. Western immunoblot analysis of three strains of H. muris with mouse antisera to H. muris revealed identical major antigens of 118, 65, 53, 45, and 40 kDa. By heteroduplex analysis of the three PCR-amplified segments of the 16S rRNA genes, the three strains of H. muris were found to be identical. The 16S rRNA genes of one of the H. muris strains, four strains of H. felis, and two strains of Eperythrozoon suis were sequenced and compared. The sequences of two strains of H. felis from cats in California were identical, as were the sequences of a strain from a cat in Ohio and a strain from a cat in Florida, but the similarity of sequences between the California and the Ohio-Florida strains was only 85%. The sequence of an H. muris strain was unique and was more closely related to that of the Ohio-Florida strain of H. felis (89%) than to that of the California strain of H. felis (84%). The sequence of E. suis from a pig in Illinois was identical to that from another pig from Taiwan. The similarity of the 16S rRNA gene sequence of E. suis with those of three Haemobartonella strains was 84 to 92%, with that of E. suis being most similar to that of the H. felis strain from California. In the phylogenetic analysis based on 16S rRNA gene sequences, the Haemobartonella spp. and E. suis formed a distinct clade more closely related to Mycoplasma spp. (79 to 83% similarity) than to Anaplasma marginale (72 to 75% similarity). Our results suggest that the Haemobartonella spp. and E. suis may be reclassified in the same genus in the family Mycoplasmataceae.

Anaplasmataceae↗

Use of a polymerase chain reaction assay to detect and differentiate two strains of Haemobartonella felis in naturally infected cats.

OBJECTIVE: To develop a polymerase chain reaction (PCR) assay that detects and differentiates the Ohio strain of Haemobartonella felis (H. felis-OH) and the California strain of H. felis (H. felis-CA) and to apply the assay to blood samples from cats with and without suspected haemobartonellosis (suspect and control cats, respectively). SAMPLE POPULATION: 220 blood samples were examined; 82 were from suspect cats, and 138 were from control cats. PROCEDURE: A PCR assay was designed to detect and differentiate H. felis-OH and H. felis-CA. RESULTS: On the basis of PCR assay results, the overall prevalence of H. felis infection was 19.5% (43/220). Suspect cats (28.0%; 23/82) were significantly more likely than control cats (14.5%; 20/138) to be H. felis infected. Significantly greater numbers of suspect cats were H. felis-OH infected (12.2%, 9/82) or H. felis-OH and H. felis-CA infected (4.9%, 4/82) than control cats (0% [0/138] and 0.7% [1/138], respectively). Significantly more anemic cats were H. felis-OH infected (14.3%; 4/28) or H. felis-OH and H. felis-CA infected (7.1%; 2/28) than nonanemic cats (2.3% [3/128] and 0.8% [1/128], respectively). The PCR assay was more accurate than cytologic examination for detection of H. felis. CONCLUSIONS AND CLINICAL RELEVANCE: Haemobartonella felis infections are more common in cats than previously recognized. Haemobartonella felis-OH is apparently more pathogenic than H. felis-CA. The PCR assay is more accurate than cytologic examination for detection of H. felis infection and is an effective clinical tool for the detection and differentiation of both H. felis strains known to infect cats.

Anaplasmataceae↗

The putative haemobartonella that influences Plasmodium falciparum parasitaemia in squirrel monkeys is a haemotrophic mycoplasma.

Splenectomised squirrel monkeys (Saimiri sciureus) are increasingly being used as an experimental host for human malaria studies, notably for the assessment of candidate vaccines against Plasmodium falciparum blood-stage infection. Recently, S. sciureus monkeys in our primate-breeding colony were reported to be asymptomatic carriers of a putative Haemobartonella species. Patent haemobartonella infection is frequently activated following splenectomy, and may interfere with studies on the course of P. falciparum parasitaemia in these animals. Here, we show by 16S rRNA gene sequence analysis that this wall-less bacterium is not a rickettsia but, instead, is a haemotrophic mycoplasma. Haemotrophic mycoplasmas are a newly identified group of mycoplasmas that parasitise the surfaces of erythrocytes of a wide variety of vertebrate hosts.

Animals↗

Haemobartonella felis: recent developments in diagnosis and treatment.

Haemobartonella felis is a pleomorphic uncultivated wall-less haemotrophic bacterial parasite. Phylogenetic analysis of 16S rRNA gene sequences from a number of isolates of H felis has demonstrated that these bacteria are most closely related to species in the genus Mycoplasma, and Haemobartonella and related organisms are currently being reclassified as Mollicutes. Diagnosis by cytological examination of blood smears has been problematic, but recent molecular studies have led to the development of sensitive polymerase chain reaction (PCR) assays for diagnosis. Such studies have also resulted in the recognition of two distinct strains of H felis, which are divided into different groups based on phylogenetic analysis. This evolutionary divergence between strains is accompanied by differences in pathogenecity. This review discusses new developments in the diagnosis and treatment of H felis, focusing on the use of, and interpretation of, PCR assays.

Anaplasmataceae↗

Identity of the filterable hemolytic anemia agent of Sacks with Haemobartonella muris.

Moore, D. H. (The Rockefeller University, New York, N. Y.), R. N. Arison, H. Tanaka, W. T. Hall, and M. Chanowitz. Identity of the filterable hemolytic anemia agent of Sacks with Haemobartonella muris. J. Bacteriol. 90:1669-1674. 1965.-In 1960 a new hemolytic agent in rats was reported. It was thought to be a filterable, nonsedimentable, replicating infectious agent, different from Haemobartonella muris. Rats which recovered from the infection developed a resistance to several kinds of transplantable tumors. It is here shown that this agent has the same properties as those reported in the literature and reconfirmed by us for H. muris. The size of the agent is approximately 500 mmu as determined by correlating bioactivity with Gradocol membrane filtrates and fractions from a diffusion cell, and its density is about midway between that of whole serum and distilled water (approximately 1.020) as determined by the sedimentation of bioactivity in an ultracentrifuge. Diffusion at 30 C indicated a lack of motility by the agent bodies. Rats were found to be protected against infection with the agent by daily administration of chlortetracycline and by prior infection with H. muris. The agent bodies were indistinguishable from H. muris in both the light and the electron microscope.

Anemia, Hemolytic↗

Fine structure of Haemobartonella muris as compared with Eperythrozoon coccoides and Mycoplasma pulmonis.

Tanaka, H. (The Rockefeller University, New York, N.Y.), W. T. Hall, J. B. Sheffield, and D. H. Moore. Fine structure of Haemobartonella muris as compared with Eperythrozoon coccoides and Mycoplasma pulmonis. J. Bacteriol. 90:1735-1749. 1965.-Thin sections of filterable hemolytic anemia agent of rat, now identified as Haemobartonella muris, revealed (i) that the agent is spherical or ellipsoidal and 350 to 700 mmu in size, (ii) that it has a single limiting membrane enclosing granules and some filaments (neither cell wall nor nucleoid was found), and (iii) that it is found preferentially at the surface and sometimes within the cytoplasmic vacuoles of erythrocytes in the circulating blood and bone marrow, and multiplies there through binary fission. No specific structure suggestive of motility was found. From the morphological point of view, Eperythrozoon coccoides was found to be very similar to H. muris, whereas Mycoplasma pulmonis, also covered with a single limiting membrane, differs in its pleomorphism and multiplication. These and some other microorganisms taxonomically between bacteria and viruses were compared morphologically, and their possible classification is discussed.

Animals↗

Differentiation of Haemobartonella canis and Mycoplasma haemofelis on the basis of comparative analysis of gene sequences.

OBJECTIVE: To determine whether Haemobartonella canis and Mycoplasma haemofelis (formerly known as H felis [large form]) can be differentiated by use of comparative analysis of gene sequences. SAMPLE POPULATION: Blood samples obtained from 3 dogs infected with H canis and 2 cats infected with M haemofelis. PROCEDURE: The partial 16S rDNA and ribonuclease P RNA (RNase P) genes were amplified, cloned, and sequenced in blood samples obtained from H canis-infected dogs and M haemofelis-infected cats. The DNA sequences were subjected to comparative analysis. RESULTS: The 16S rDNA sequences of H canis and M haemofelis were nearly identical (homology of 99.3 to 99.7%). In contrast, RNase P gene sequences had a lower degree of sequence homology between the 2 organisms (94.3 to 95.5%). CONCLUSIONS AND CLINICAL RELEVANCE: Haemobartonella canis and M haemofelis are not identical organisms. Molecular differentiation of H canis and M haemofelis is more clearly evident by use of comparative analysis of RNase P gene sequences than by comparative analysis of 16S rDNA gene sequences.

Anaplasmataceae↗

Use of a polymerase chain reaction assay for detection of Haemobartonella canis in a dog.

A polymerase chain reaction (PCR) originally developed for detection of Haemobartonella felis in cats was successfully used for detection of H canis in an 8-year-old spayed Great Dane. The dog had been splenectomized and was undergoing immunosuppressive chemotherapy at the time of diagnosis. Sequence analysis of the 16S ribosomal RNA gene revealed that the Haemobartonella spp infecting this dog was 97% homologous to the sequence previously reported for the Ohio strain of H felis. Clinical and hematologic abnormalities as well as identification of the organisms by use of light and electron microscopy supported the diagnosis of H canis. The PCR assay used for detection of H felis may be useful for the detection of H canis in dogs prior to blood donation, splenectomy, or treatment with immunosuppressive drugs.

Anaplasmataceae↗

Molecular, clinical, and pathologic comparison of two distinct strains of Haemobartonella felis in domestic cats.

OBJECTIVE: To characterize 2 strains of Haemobartonella felis by use of molecular techniques. ANIMALS: 35 specific-pathogen-free cats, 6 months to 4 years old. PROCEDURE: Intraperitoneal or IV inoculation with blood containing H felis small form (Hfsm, 18 cats) or H felis large form (Hflg, 11 cats); 6 cats were uninfected controls. Hfsm was evaluated for capability to cross-protect against the more virulent Hflg. Morphology of both strains was compared by light microscopy of Wright-Giemsa-stained blood smears, and the 16S rRNA genes were sequenced. RESULTS: Infection with Hflg induced signs of depression, fever, and severe macrocytic normochromic anemia with nucleated erythrocytes. More than 95% of erythrocytes were parasitized. Inoculation with Hfsm and uninfected control blood induced mild or no clinical signs and no hematologic abnormalities. Anti-H felis IgG was first detected on postinoculation day (PID) 21, and increased to maximal titer of 400 by PID 28. Reactivated infection was observed in 8 of 29 cats (4 Hfsm and 4 Hflg), with 5% parasitized erythrocytes during the later attack. On PID 8, Hflg-inoculated cats had positive results of polymerase chain reaction analysis (PCR) that persisted until cats were treated with doxycycline or oxytetracycline; Hfsm-inoculated cats had positive PCR results that persisted for duration of observation (3 months). CONCLUSIONS: Genetically and morphologically distinct strains of H felis infect cats in the field. The level of genetic difference suggested that these strains may be different species or genera. CLINICAL RELEVANCE: PCR is a critical diagnostic aid to detect occult Haemobartonella spp infection, as well as response to treatment and clearance of the organism.

Anaplasmataceae↗

Identification of Anaplasmataceae (Haemobartonella) antigen and antibodies in systemic lupus erythematosus.

Free antigen related to Anaplasma marginale (AM) (Haemobartonella) was demonstrated in the glomeruli of one patient with lupus nephritis. Indirect fluorescent antibodies against this rickettsia were demonstrated in all of 22 lupus sera tested, with titers ranging from 1:20 to 1:1280. Geometric mean titer (GMT) was 116. Fifty-eight percent of 102 controls did not react to AM by indirect fluorescent antibody technique, and GMT of all controls was 10.7 Immunofluorescence was eliminated by neutralization and blocking techniques.

Adult↗

A comparative study of the efficiency of acridine orange and some Romanowsky staining procedures in the demonstration of Haemobartonella felis in feline blood.

A comparison of the relative efficiency of acridine orange with some Romanowsky staining procedures indicated that acridine orange is superior in demonstrating the presence of Haemobartonella felis in feline blood. Of the Romanowsky staining procedures, that of May-Grunwald-Giemsa was at least one and a half and about twice as efficient as the Giemsa and Leishman methods, respectively.

Acridine Orange↗

16S rDNA comparison demonstrates near identity between an United Kingdom Haemobartonella felis strain and the American California strain.

A handful of North American (USA) strains of the uncultured erythrocytotrophic pathogen of cats, Haemobartonella felis, have been differentiated by comparison of the 16S rRNA gene sequences. Using this approach, an UK strain was characterised, providing an identity for a non-USA H. felis for the first time. This strain shared close phylogenetic homology with the USA Californian strain.

Anaplasmataceae↗

Autoimmune factors associated with anaemia in acute Haemobartonella and Eperythrozoon infections of rodents.

Eperythrozoon coccoides and Haemobartonella muris produced in mice and rats respectively, essentially the same disease, characterized by anaemia, splenomegaly and in severe cases, haemoglobinuria with death. In both infections anaemia was associated with phagocytosis of erythrocytes by monocytes of the spleen, and with the presence of cold-active haema-glutinin for trypsinized red cells (CAH). An antigen similar to the serum antigen (SA) associated with acute malaria and babesiosis was also found in the blood of the anaemic animals. One or two days later antibody to SA (ABSA) was detected and for several days thereafter, both SA and ABSA could be detected in plasma samples. Anaemia crisis with haemoglobinuria was better correlated with the appearance of ABSA than with the presence of CAH. It is suggested that CAH, and complexes of SA and ABSA could have acted as anaemia factors and were in part causal in the sequestration or haemolysis of erythrocytes during acute infection.

Anaplasmataceae↗

Mycoplasma cavipharyngis and Mycoplasma fastidiosum, the closest relatives to Eperythrozoon spp. and Haemobartonella spp.

The 16S rRNA gene sequences of Mycoplasma cavipharyngis and Mycoplasma fastidiosum have been determined. Phylogenetic analysis showed that these species formed a new cluster within the so-called pneumoniae group of the mollicutes (class Mollicutes). This cluster will be referred to as the M. fastidiosum cluster. Interestingly, the M. fastidiosum cluster formed a sister lineage to the haemotrophic bacteria. Eperythrozoon spp. and Haemobartonella spp. The two latter genera, formerly classified as rickettsias, formed a stable phylogenetic entity in the tree as judged from branch lengths, bootstrap values and sequence signatures. Thus, the members of the M. fastidiosum cluster are the closest known relatives to the haemotrophic bacteria. Our data strongly support that the haemotrophic bacteria should be reclassified to reflect their actual phylogenetic affiliation.

Anaplasmataceae↗

Development and evaluation of a PCR-based assay for detection of Haemobartonella felis in cats and differentiation of H. felis from related bacteria by restriction fragment length polymorphism analysis.

The 16S rRNA gene of Haemobartonella felis was amplified by using universal eubacterial primers and was subsequently cloned and sequenced. Based on this sequence data, we designed a set of H. felis-specific primers. These primers selectively amplified a 1,316-bp DNA fragment of the 16S rRNA gene of H. felis from each of four experimentally infected cats at peak parasitemia. No PCR product was amplified from purified DNA of Eperythrozoon suis, Mycoplasma genitalium, and Bartonella bacilliformis. Blood from the experimental cats prior to infection was negative for PCR products and was greatly diminished or absent 1 month after doxycycline treatment. The overall sequence identity of this fragment varied by less than 1.0% among experimentally infected cats. By taking into consideration the secondary structure of the 16S rRNA molecule, we were able to further verify the alignment of nucleotides and quality of our sequence data. In this PCR assay, the minimum detectable number of H. felis organisms was determined to be between 50 and 704. The potential usefulness of restriction enzymes DdeI and MnlI for distinguishing H. felis from closely related bacteria was examined. This is the first report of the utility of PCR-facilitated diagnosis and discrimination of H. felis infection in cats.

Anaplasmataceae↗