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Cytologic investigations in Chlamydia infection.

Chlamydia is an extremely common genital infection. It can cause serious disseminated disease and can infect the neonate and the sexual partner. Morphologically, Chlamydia infection was identified in routine Fast smears obtained from 160 women. Chlamydia infection manifests as intracytoplasmic coccoid and inclusion bodies in the metaplastic cells. Infected cells also reveal cytomegaly and multinucleation. Immunofluorescence studies, electron microscopy, tissue studies, histochemical techniques and tissue cultures were undertaken to establish the diagnosis of Chlamydia infection as observed in Papanicolaou-stained material. Detailed cytomorphology of Chlamydia infection is described. Clinical implications of such a diagnosis are discussed.

Chlamydia Infections

Deoxyribonucleic acid synthesis, cell cycle progression, and division of Chlamydia-infected HeLa 229 cells.

The fate of lymphogranuloma venereum strain Chlamydia-infected HeLa 229 cells was examined by determining the rate of deoxyribonucleic acid synthesis and the kinetics of entry into and progression through S phase and by time-lapse cinemicrography. At an input multiplicity of 5 or less, Chlamydia-infected cells showed no inhibition of host deoxyribonucleic acid synthesis or cell cycle progression. Cinemicrography showed division of inclusion-containing cells, with one or both daughters receiving chlamydial inclusions. Analysis of the family trees indicated that the generation times of infected HeLa 229 were not altered relative to those of the uninfected cells.

Cell Cycle

[Chlamydia infections of the urogenital system].

During the last years Chlamydiae have been increasingly recognized as an important cause of urogenital infections. This paper is concerned with the classification, microbiology, cultivation and clinical findings of Chlamydiae, especially Chlamydia trachomatis, as causative agents of genital tract diseases.

Adult

Chlamydia psittaci infection in Danish cattle.

Intestinal tract infection by Chlamydia psittaci was demonstrated in one cattle herd by isolation from faecal specimens, using embryonated eggs. Such infections were observed in all animals younger than 12 months, in 60% of the heifers and in none of the adult cows. The presence of infection correlated (r=0.511) with the serum titre of compliment fixation antibodies against chlamydial antigen. Young calves, which were spontaneously infected with Chlamydia postnatally, developed ileitis and moderate interstitial pneumonia. The results of histological sections and isolation of the agent from tissue specimens indicated Chlamydia to be the cause of these conditions. The strain isolated (ROS DK/KVL 6/B3) was identified as C. psittaci. The morphology of the organism and it's pathogenicity in guinea-pigs were studied. In embryonated eggs, a dose-response curve was demonstrated for the ROS strain, which differed in that respect from another member of this species tested, viz. EBA (59-795).

Animals

Mechanisms of infertility in genital tract infections due to Chlamydia psittaci transmitted through contaminated semen.

Ten heifers inseminated with semen artificially contaminated with Chlamydia psittaci were not pregnant 40 days later, whereas five of 10 control heifers inseminated with the same semen mixed with control diluent became pregnant. Normal embryos were recovered two and one-half or three days after insemination of another group of animals with semen containing C. psittaci, a finding indicating that fertilization failure was not responsible for the infertility. Uterine biopsy samples taken from two heifers in this group contained scattered Chlamydia-infected cells that were detected by immunofluorescence in the subepithelial tissues of the uterine horns. This finding suggests that the infertility may result from an alteration in the uterine environment caused by multiplication of C. psittaci.

Animals