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F B Perler

Publications and source records attributed to F B Perler.

42 records · Page 3Linked to original sources

Identification of surrogate rodent hosts for larval Onchocerca lienalis and induction of protective immunity in a model system.

The objectives of this project were to screen a variety of inbred rodent species and strains to determine their usefulness as surrogate hosts for the study of the early larval development of Onchocerca lienalis and then to use a selected model to study the induction of protective immunity. In the primary screen, 6 strains of mice, 5 strains of rats, jirds, and multimammate rats were tested. Animals were infected with fresh O. lienalis by subcutaneous implantation of third-stage larvae (L3) contained in diffusion chambers covered with 5.0-microns pore-size membranes. After 7 days the chambers were recovered, and larval viability and growth were assessed. Approximately one-half of inoculated larvae were recovered alive regardless of the host tested. Larvae were implanted in CBA/J and DBA/2J mice in chambers covered with membranes that prevented host cells from entering; survival and growth rates of the larvae were not altered by the absence of cells from the chambers. Cryopreserved larvae were implanted in chambers with 5.0-microns pore-size membranes in CBA/J and DBA/2J mice and Wistar Furth rats for 3-28 days. No statistically significant difference was seen in the larval recoveries on days 3-28 in all 3 hosts. Statistically significant increases in length were seen in the 3 strains from day 3 to day 14, after which growth appeared to cease. Molting from L3 to fourth-stage larvae was observed in all 3 hosts beginning on day 3, with most larvae completing the molt by day 7.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Histochemical localization of gene expression in Onchocerca volvulus: in situ DNA histohybridization and immunocytochemistry.

We report here the development of in situ hybridization and immunohistochemistry protocols which permit the histological identification of gene expression of a cloned antigen of Onchocerca volvulus, OI5, in the parasite. Skin nodules containing female adult worms were fixed in a modified Carnoy's fixative and embedded in paraffin. Histological staining of tissue sections revealed uniformly excellent morphology and RNA preservation. To localize mRNA by in situ hybridization, tissue sections were incubated with biotin-labeled pOI5, the plasmid containing the genomic sequence of the antigen, and hybridization signals were histochemically visualized using a streptavidin-enzyme conjugate and chromogenic substrates. The protein antigen was localized immunohistochemically by incubating the sections with specific antibodies prepared against a recombinant fusion protein containing the OI5 sequence (OI3), and visualized via a secondary antibody-biotin-enzyme conjugate procedure. The results reported here showed distinct localization of the OI5 mRNA and OI3 antigen in specific cellular and tissue regions of the adult parasite, and in microfilariae located within the uteri and in the surrounding host tissue. The specificity and high sensitivity of these histological detection methods should be generally applicable for the characterization of gene expression in the filarial parasite, particularly the insect-borne, infective filarial larvae, which are severely limited in quantity.

Animals↗

The identification of an Onchocerca-specific recombinant antigen containing a T cell epitope.

Recombinant Onchocerca volvulus Ag have been derived from expression libraries and examined for their ability to stimulate PBMC from patients infected with O. volvulus. Ten clones producing recombinant Ag were selected and plaque purified; lysogens were produced and found to express beta-galactosidase fusion proteins ranging in molecular mass from 115 to 138 kDa. When ammonium sulfate-precipitated lysates of these recombinant phage clones were examined for their ability to stimulate PBMC from a patient with onchocerciasis, all 10 recombinants produced stimulation above that to nonrecombinant phage. When individual fusion proteins, affinity purified on anti-beta-galactosidase linked to agarose, were used to stimulate PBMC from patients with onchocerciasis, only one of the recombinant Ag induced PBMC proliferation (stimulation index greater than 4) above that to Ag from nonrecombinant phage. Characterization of the DNA coding for this Ag showed it to be 1.2 kb in length with a small (90 bp) open reading frame; furthermore, it appears to be Onchocerca specific (on genomic dot blots) and single copy. Using overlapping peptides encompassing the entire open reading frame, one T cell epitope has been localized.

Amino Acid Sequence↗

Human T-cell stimulation, molecular characterization and in situ mRNA localization of a Brugia malayi recombinant antigen.

Cellular immune responses play a major role in lymphatic filarial infections. To further our understanding of the host-parasite interaction, we investigated T-cell stimulation by purified filarial recombinant antigens in peripheral blood mononuclear cells derived from filarial-infected individuals. One of a subset of cloned Brugia malayi antigens involved in the humoral immune response to filarial infection was found to be a T-cell-stimulating antigen. The fusion protein encoded by clone lambda Bm19 induced proliferation of human T cells in a parasite-specific, antigen dose-dependent manner. The deduced amino acid sequence from this cloned region revealed 4 predicted T-cell recognition sites. The lambda Bm19 DNA sequence hybridizes to a 3-kb transcript, and in situ mRNA hybridization analyses of the adult female worm demonstrated that this gene is expressed in developing uterine microfilariae. The native parasite protein is present in several developmental stages since clone lambda Bm19 was initially identified with antiserum directed against the infective larval stage; this protein is therefore a potential target for the host's immune system.

Adult↗

Cloning and characterization of an abundant Plasmodium knowlesi antigen which cross reacts with Gambian sera.

A 110 kDa Plasmodium knowlesi antigen, termed PK110, has been identified on the basis of messenger RNA abundance in late schizonts. Most Plasmodium genes previously cloned have been identified by immune sera, which have selected immunodominant antigens composed of repeating epitopes. Although PK110 was not selected by immune sera, it also contains amino acid repeats, indicating that this structure may be a common feature of malarial proteins. Determination of 296 codons in the PK110 gene revealed the presence of thirteen tandem repeats of twelve amino acids whose consensus sequence is E E T Q K T V E P E Q T. A termination codon interrupts the fourteenth repeat, indicating that these repeats are at the C-terminus of the protein. Indirect immunofluorescence experiments with sera raised against the lambda gt11 fusion protein indicate that PK110 is present in intra-erythrocytic late schizonts. Cloned PK110 is recognized by Gambian sera, and shares epitopes with Plasmodium ovale. PK110 does not cross react immunologically or by DNA hybridization with Plasmodium falciparum.

Amino Acid Sequence↗

Cloning and characterization of two Onchocerca volvulus repeated DNA sequences.

Two repeated sequences, plasmids pOV8 and pOV26, were cloned and characterized from the filarial parasite Onchocerca volvulus. Both clones can be used to distinguish O. volvulus DNA from other Onchocerca species or other nematodes by restriction fragment length polymorphisms, but neither clone can differentiate between DNA from savanna (Mali) or forest (Ivory Coast) O. volvulus isolates. DNA from one O. volvulus infective larva can be detected by both clones in dot blot hybridization assays. Neither clone cross hybridizes with DNA from host or vector species (human or simuliid, respectively). pOV26 is a member of an interspersed repeated DNA family composed of at least 100 members, and is only observed in the genus Onchocerca. Repeated DNA clone pOV8 cross reacts with DNA from other parasitic filarial nematodes, and is also present in at least 100 copies per O. volvulus genome. pOV26 is a potential tool in the diagnosis of human onchocerciasis, since it is specific for the genus Onchocerca. In the future, we plan to look for regions of these repeated sequences which may serve as a basis for the development of probes to discriminate among Onchocerca species and strains using a simple dot hybridization test.

Animals↗