Javascript must be enabled to continue!
Facing Hymenoptera Venom Allergy: From Natural to Recombinant Allergens
View through CrossRef
Along with food and drug allergic reactions, a Hymenoptera insect Sting (Apoidea, Vespidae, Formicidae) is one of the most common causes of anaphylaxis worldwide. Diagnoses of Hymenoptera venom allergy (HVA) and specific immunotherapy (SIT) have been based on the use of crude venom extracts. However, the incidence of cross-reactivity and low levels of sensibility during diagnosis, as well as the occurrence of nonspecific sensitization and undesired side effects during SIT, encourage the search for novel allergenic materials. Recombinant allergens are an interesting approach to improve allergy diagnosis and SIT because they circumvent major problems associated with the use of crude venom. Production of recombinant allergens depends on the profound molecular characterization of the natural counterpart by combining some “omics” approaches with high-throughput screening techniques and the selection of an appropriate system for heterologous expression. To date, several clinically relevant allergens and novel venom toxins have been identified, cloned and characterized, enabling a better understanding of the whole allergenic and envenoming processes. Here, we review recent findings on identification, molecular characterization and recombinant expression of Hymenoptera venom allergens and on the evaluation of these heterologous proteins as valuable tools for tackling remaining pitfalls on HVA diagnosis and immunotherapy.
Title: Facing Hymenoptera Venom Allergy: From Natural to Recombinant Allergens
Description:
Along with food and drug allergic reactions, a Hymenoptera insect Sting (Apoidea, Vespidae, Formicidae) is one of the most common causes of anaphylaxis worldwide.
Diagnoses of Hymenoptera venom allergy (HVA) and specific immunotherapy (SIT) have been based on the use of crude venom extracts.
However, the incidence of cross-reactivity and low levels of sensibility during diagnosis, as well as the occurrence of nonspecific sensitization and undesired side effects during SIT, encourage the search for novel allergenic materials.
Recombinant allergens are an interesting approach to improve allergy diagnosis and SIT because they circumvent major problems associated with the use of crude venom.
Production of recombinant allergens depends on the profound molecular characterization of the natural counterpart by combining some “omics” approaches with high-throughput screening techniques and the selection of an appropriate system for heterologous expression.
To date, several clinically relevant allergens and novel venom toxins have been identified, cloned and characterized, enabling a better understanding of the whole allergenic and envenoming processes.
Here, we review recent findings on identification, molecular characterization and recombinant expression of Hymenoptera venom allergens and on the evaluation of these heterologous proteins as valuable tools for tackling remaining pitfalls on HVA diagnosis and immunotherapy.
Related Results
The role of component-resolved diagnosis in Hymenoptera venom allergy in clinical practice
The role of component-resolved diagnosis in Hymenoptera venom allergy in clinical practice
Background: Hymenoptera venom allergy is an immunoglobulin (Ig) E mediated hypersensitivity reaction to Hymenoptera venoms. Obvious identification of the culprit insect that causes...
Hymenoptera venom allergy: work disability and occupational impact of venom immunotherapy
Hymenoptera venom allergy: work disability and occupational impact of venom immunotherapy
Objectives
Little is known about the Hymenoptera venom allergy impact on work ability and the effect of venom immunotherapy (VIT) on work. The objective of this...
Integrative multi-omics analysis reveals the contribution of neoVTX genes to venom diversity of Synanceia verrucosa
Integrative multi-omics analysis reveals the contribution of neoVTX genes to venom diversity of Synanceia verrucosa
Abstract
Background
Animal venom systems have been considered as valuable model for investigating molecular mechanisms underlying phenotypic evolution. The stonefish were ...
A Quality-of-life Study in Patients with Anaphylaxis to Hymenoptera Venom in Iran
A Quality-of-life Study in Patients with Anaphylaxis to Hymenoptera Venom in Iran
Little is known about the quality of life of patients with anaphylaxis to Hymenoptera venom. The Vespid Allergy Quality of Life Questionnaire (VQLQ) is commonly used to assess the ...
Mammalian Meat Allergy Accompanied by Venom Allergy: A Review of 12 Cases
Mammalian Meat Allergy Accompanied by Venom Allergy: A Review of 12 Cases
There has recently been an increase in mammalian meat allergy (MMA) in the Black Sea Region of Turkey. It has been associated with the expansion of tick populations.Tick bites appe...
Potential and limitations of epitope mapping and molecular targeting in Hymenoptera venom allergy
Potential and limitations of epitope mapping and molecular targeting in Hymenoptera venom allergy
Hymenoptera venom (HV) allergy can lead to life threatening conditions by specific IgE (sIgE)-mediated anaphylactic reactions. The knowledge about major allergens from venom of dif...
Hymenoptera Venom Anaphylaxis
Hymenoptera Venom Anaphylaxis
Systemic reactions to insect sting can be life-threatening. Life-threatening systemic reactions to insect sting are estimated to occur in 0.4% to 0.8 % of children and in 3 % of ...
EVALUATION OF BARU (DIPTERYX ALATA) FLOUR AS A POTENTIAL INHIBITOR OF THE LACHESIS MUTA MUTA SNAKE VENOM -INDUCED MYOTOXICITY AND NEUROMUSCULAR BLOCKADE
EVALUATION OF BARU (DIPTERYX ALATA) FLOUR AS A POTENTIAL INHIBITOR OF THE LACHESIS MUTA MUTA SNAKE VENOM -INDUCED MYOTOXICITY AND NEUROMUSCULAR BLOCKADE
Snake venom is a complex mixture of bioactive substances known to induce a wide range of toxic effects. We investigated the potential of baru flour (Dipteryx alata) in mitigating t...

