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1.
Lett Appl Microbiol ; 76(6)2023 Jun 01.
Article in English | MEDLINE | ID: mdl-37286817

ABSTRACT

Protothecosis is an important infection caused by Prototheca spp., an alga that affect humans and animals. Prototheca spp. infections determine losses of production and quality of life for the affected animals. In this disease, prevention and early diagnosis are essential to avoid the spread of the agent to susceptible hosts. This review aimed to assemble the reported cases of protothecosis in Veterinary Medicine, highlighting Prototheca species involved in the infections, the main animal species affected, as well as the clinical manifestations, diagnosis, and treatment. Our findings showed that protothecosis has been reported in various domestic and wild animal species, presenting diverse clinical manifestations, including mastitis in cows, respiratory manifestations in goats and cats, and a wide range of clinical signs in dogs. The clinical diagnosis and treatment of Prototheca spp. infections are difficult and infected animals are frequently discarded or euthanized. Due to the importance of this infection, protothecosis must be considered an important differential diagnosis in routine clinical Veterinary Medicine.


Subject(s)
Prototheca , Skin Diseases, Infectious , Humans , Female , Animals , Cattle , Dogs , Quality of Life , Animals, Wild , Goats
2.
Arch Microbiol ; 204(11): 680, 2022 Oct 31.
Article in English | MEDLINE | ID: mdl-36315293

ABSTRACT

Bovine mastitis is an important disease in dairy cows, and Staphylococcus aureus is the most prevalent microorganism. Bacteriophages are considered an alternative to treat bacterial infections due to antimicrobial resistance crisis. In this study, we isolated and characterized novel S. aureus temperate phages, namely B_UFSM4 and B_UFSM5, from bovine milk. The complete genomes of B_UFSM4 and B_UFSM5 have 41.396 bp and 41.829 bp, respectively. The viruses have double-stranded DNA and linear architecture. Phylogenic similarity was observed by proteome with Staphylococcus phage phiPV83, CN125 and JS01. Therefore, the phages were classified into the family Siphoviridae, genus Biseptimavirus and order Caudovirales. In the host range, the B_UFSM4 and B_UFSM5 had lytic activity of 45.8% and 54.16%, respectively, inclusive on isolates from Staphylococcus sciuri and Rothia terrae. Thus, in this study, species novel of S. aureus temperate phages was isolated and characterized, these phages reveal similarities to each other; however, they are distinct from other species of S. aureus phages of the family Siphoviridae.


Subject(s)
Mastitis, Bovine , Siphoviridae , Staphylococcal Infections , Animals , Female , Cattle , Staphylococcus aureus/genetics , Milk/microbiology , Staphylococcal Infections/veterinary , Staphylococcal Infections/microbiology , Staphylococcus Phages/genetics , Mastitis, Bovine/microbiology , Siphoviridae/genetics
3.
Ciênc. rural (Online) ; 51(10): e20200839, 2021. tab, graf
Article in English | LILACS-Express | LILACS, VETINDEX | ID: biblio-1278873

ABSTRACT

ABSTRACT: Bacteriophages have been investigated as alternative to the treatment of bacterial infections, including bovine mastitis, in production animals. In this meta-analysis, we evaluated in vitro efficiency of phages of Staphylococcus aureus against S. aureus, which is involved in the etiology of bovine mastitis. Seventeen studies were included and the bacterial lytic activity was extracted using proportion analysis. The lytic efficiency of phages was obtained in this meta-analysis using a random-effects model [significant difference (P<0.05)]. Forest plots were used to graphically represent the efficiency of phages on bacterial isolates. Most phages (e.g., CS1, DW2, ΦSA011, ΦSA012, ΦSA022, ΦSA023, ΦSA024, ΦSA025, ΦSA037, ΦSA038, ΦSA039, ΦSA041, ΦSA042, ΦSA043, ΦSA044, MSA6, Ufv-aur2 to Ufv-aur11, SAH-1, SPW, vB_SauM_JS25, SaPh1 to SaPh6, SA, SANF, SA2, ΦSA012, ΦSA039, phi11, phiIPLA88, phiIPLA35, phiIPLA-RODI, phiIPLA-C1C, SAJK-IND, vBSP-A1, vBSP-A2, STA1.ST29, EB1.ST11, EB1.ST27, Remus, and ISP) were efficiently lytics or infected most S. aureus isolates, demonstrating 80% (P<0.05) lytic efficiency. The phages SA, SANF and SA2, also demonstrated lytic activity or infected the non-Staphylococcus aureus and Macrococcus caseolyticus isolates. In this meta-analysis, we compared and demonstrated the in vitro efficiency and host range of S. aureus phages. Additionally, the phages represent an alternative to be researched to treat bovine mastitis in dairy cattle caused by the prevalent microorganism, S. aureus.


RESUMO: Os bacteriófagos têm sido investigados como alternativa ao tratamento de infecções bacterianas em animais de produção, incluindo a mastite bovina. Nesta meta-análise, avaliamos a eficiência in vitro de fagos de Staphylococcus aureus contra S. aureus envolvidas na etiologia da mastite bovina. Dezessete estudos foram incluídos e a atividade lítica bacteriana foi extraída usando análise de proporção. A eficiência lítica dos fagos foi obtida nesta meta-análise, usando um modelo de efeitos aleatórios (diferença significativa (P <0,05)). Os gráficos de Forest plots foram usados para representar graficamente a eficiência dos fagos em isolados bacterianos. Os fagos avaliados, na sua grande maioria, (por exemplo, CS1, DW2, ΦSA011, ΦSA012, ΦSA022, ΦSA023, ΦSA024, ΦSA025, ΦSA037, ΦSA038, ΦSA039, ΦSA041, ΦSA042, ΦSA043, ΦSAf e U0f, ua04 SPW, vB_SauM_JS25, SaPh1 a SaPh6, SA, SANF, SA2, ΦSA012, ΦSA039, phi11, phiIPLA88, phiIPLA35, phiIPLA-RODI, phiIPLA-C1C, SAJK-IND, vBSP-A1, vBSP-A2, STA1.ST29, EB1.ST11, EB1.ST27, Remus, e ISP) foram eficientemente líticos ou infectaram a maioria dos isolados de S. aureus, demonstrando 80% (P < 0,05) de eficiência lítica. Os fagos SA, SANF e SA2 também demonstraram atividade lítica ou infectaram os isolados Staphylococcus não-aureus e Macrococcus caseolyticus. Nesta meta-análise, comparamos e demonstramos a eficiência in vitro e gama de hospedeiros de fagos de S. aureus. Adicionalmente, os fagos representam uma alternativa a ser pesquisada para o tratamento da mastite bovina em gado leiteiro causada pelo microrganismo prevalente, ou seja S. aureus.

4.
Int J Med Mushrooms ; 22(11): 1089-1098, 2020.
Article in English | MEDLINE | ID: mdl-33426840

ABSTRACT

The nematocidal effect of Pleurotus ostreatus (white variety of oyster mushroom) aqueous extract (AE) was evaluated against Haemonchus contortus eggs and infective larvae (L3) in vitro and in artificially infected gerbils (Meriones unguiculatus). The chemical analyses indicated that constituents of AE are tridecanoic, tetradecanoic, linolelaidic, 9,15-octadecadienoic, and oxalic acids. P. ostreatus extract inhibited larval hatching by 100% at the concentration of 2.24 mg/mL and (50% effective concentration) EC50 of 0.73 mg/mL. In the larval development test, AE induced a larvicidal effect at the concentration of 50 mg/mL and EC50 of 17.24 mg/mL. The larval migration test revealed a reduction of 94.7% at a concentration of as low as 4 mg/mL and EC50 of 1.25 mg/mL. No significant effects of treatment with P. ostreatus AE were seen on H. contortus in the gerbil model. Thus, our results demonstrate an important nematocidal in vitro effect of P. ostreatus AE against the parasite H. contortus. However, further investigations are necessary to confirm the anthelmintic potential of P. ostreatus extract in small ruminants.


Subject(s)
Antinematodal Agents/administration & dosage , Haemonchiasis/drug therapy , Haemonchus/drug effects , Plant Extracts/administration & dosage , Pleurotus/chemistry , Animals , Antinematodal Agents/analysis , Gerbillinae , Haemonchiasis/parasitology , Haemonchus/growth & development , Humans , Larva/drug effects , Larva/growth & development , Plant Extracts/analysis
5.
Sci Rep ; 7(1): 10377, 2017 09 04.
Article in English | MEDLINE | ID: mdl-28871190

ABSTRACT

Vaccines have become fundamental in the control and elimination of Glässer Disease, a systemic disease of pigs caused by Haemophilus parasuis. The classic vaccines available for prevention of this infection were developed without a robust knowledge about host immunological mechanisms. In this study, we demonstrated the presence of cross-reactive epitopes on both the N-lobe and C-lobe of variants of transferrin binding protein B (TbpBs) expressed on the surface of 6 virulent serovars of H. parasuis. Antibodies against TbpB-derived antigens were capable of increasing the phagocytic capacity of neutrophils and were also capable of blocking porcine transferrin from binding to TbpB. Surprisingly, none of the pig or mice antisera from animals immunized with TbpB-derived antigens mixed with Montanide IMS 2215 VG PR adjuvant were able to activate the classical complement pathway (CCP). In contrast, antisera from mice immunized with TbpB-derived antigens adjuvanted with Freund's adjuvants or Montanide Gel 01 were able to activate the CCP and kill H. parasuis. Our results demonstrate that the type of adjuvant can modulate the functional response induced by TbpB-derived antigens. Based on these results, we propose that a properly formulated TbpB-based vaccine may elicit a functional protective antibody response with broad cross-reactivity against heterologous strains of H. parasuis.


Subject(s)
Antibodies, Bacterial/metabolism , Epitopes/immunology , Haemophilus Vaccines/immunology , Haemophilus parasuis/immunology , Transferrin-Binding Protein B/chemistry , Adjuvants, Immunologic/administration & dosage , Animals , Cross Reactions , Haemophilus Infections/immunology , Haemophilus Infections/prevention & control , Haemophilus Infections/veterinary , Haemophilus Vaccines/administration & dosage , Haemophilus parasuis/pathogenicity , Recombinant Proteins/genetics , Recombinant Proteins/immunology , Swine , Swine Diseases/immunology , Swine Diseases/prevention & control , Transferrin/metabolism , Transferrin-Binding Protein B/genetics , Transferrin-Binding Protein B/immunology , Virulence
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