Abstract
Important strategies for combating mosquito vectors include the application of larvicides. However, existing larvicides use the active substances of synthetic insecticides, which are often risky substances for both the environment and human health. Therefore new suitable alternatives have been sought, including the development of botanical larvicides based on plant essential oils (EOs). Although they show excellent larvicidal efficacy, the persistence of this efficacy is often insufficient. Such formulation methods and techniques that would allow for extending the efficacy period of the larvicides have thus been sought. Highly promising methods also include EO encapsulation. This paper summarizes the current knowledge, and it discusses the opportunities and prospects offered by EO encapsulation methods when used for the development of botanical insecticides. Although research in this field has only begun, it was possible to conclude based on existing published papers that encapsulation methods may extend the efficacy period while gradually releasing the active substances of the EOs. These methods also seem to offer excellent prospects for the future direction of the development of new botanical larvicides which are safe for the environment and health.
Keywords: Encapsulation, essential oils, mosquito, larvicides, botanical insecticides.
Current Organic Chemistry
Title:Encapsulation – a Convenient Way to Extend the Persistence of the Effect of Eco-Friendly Mosquito Larvicides
Volume: 20 Issue: 25
Author(s): Roman Pavela
Affiliation:
Keywords: Encapsulation, essential oils, mosquito, larvicides, botanical insecticides.
Abstract: Important strategies for combating mosquito vectors include the application of larvicides. However, existing larvicides use the active substances of synthetic insecticides, which are often risky substances for both the environment and human health. Therefore new suitable alternatives have been sought, including the development of botanical larvicides based on plant essential oils (EOs). Although they show excellent larvicidal efficacy, the persistence of this efficacy is often insufficient. Such formulation methods and techniques that would allow for extending the efficacy period of the larvicides have thus been sought. Highly promising methods also include EO encapsulation. This paper summarizes the current knowledge, and it discusses the opportunities and prospects offered by EO encapsulation methods when used for the development of botanical insecticides. Although research in this field has only begun, it was possible to conclude based on existing published papers that encapsulation methods may extend the efficacy period while gradually releasing the active substances of the EOs. These methods also seem to offer excellent prospects for the future direction of the development of new botanical larvicides which are safe for the environment and health.
Export Options
About this article
Cite this article as:
Pavela Roman, Encapsulation – a Convenient Way to Extend the Persistence of the Effect of Eco-Friendly Mosquito Larvicides, Current Organic Chemistry 2016; 20 (25) . https://dx.doi.org/10.2174/1385272820666151026231851
DOI https://dx.doi.org/10.2174/1385272820666151026231851 |
Print ISSN 1385-2728 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5348 |
Call for Papers in Thematic Issues
Catalytic C-H bond activation as a tool for functionalization of heterocycles
The major topic is the functionalization of heterocycles through catalyzed C-H bond activation. The strategies based on C-H activation not only provide straightforward formation of C-C or C-X bonds but, more importantly, allow for the avoidance of pre-functionalization of one or two of the cross-coupling partners. The beneficial impact of ...read more
Electrochemical C-X bond formation
Conventional methods for carrying out carbon–X bond formation are typically conducted at harsh reaction conditions, and rely on expensive catalysts as well as the use of stoichiometric, and perhaps toxic, oxidants. In this regard, electrochemical synthesis has recently been recognized as a sustainable and scalable strategy for the construction of ...read more
From Lab Bench to Algorithm: The Future of Organic Chemistry Powered by AI
Organic chemistry, with its intricate dance of molecules and reactions, is undergoing a transformation fuelled by the power of Artificial Intelligence (AI) and Machine Learning (ML). The integration of AI/ML with Organic Chemistry is revolutionizing the field by enhancing the efficiency and accuracy of chemical research and development. These technologies ...read more
N-Heterocyclics: Synthesis, Computational Studies, and Coordination Chemistry - A synthetic perspective
N-heterocycles, such as phenanthroline, quinoline, or their organometallic complexes, are widely used in a variety of fields, including chemistry, biochemistry, and coordination chemistry. They play a key role in many chemical and biological processes as biological ligands, medicinal agents, catalysts in organic synthesis, molecular probes and sensors, as well as ...read more
Related Journals
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Immunotherapy for Conformational Diseases
Current Pharmaceutical Design Borna Disease Virus (BDV): Neuropharmacological Effects of a CNS Viral Infection
Current Neuropharmacology The Effects of Tamoxifen on Immunity
Current Medicinal Chemistry Off-label Use of Medicines in COVID-19: A Lesson For Future
Coronaviruses Alzhemed: A Potential Treatment for Alzheimers Disease
Current Alzheimer Research Immunosuppression and Immunotargeted Therapy in Acute Myeloid Leukemia - The Potential Use of Checkpoint Inhibitors in Combination with Other Treatments
Current Medicinal Chemistry Impact of IL-12 in Cancer
Current Cancer Drug Targets Viral Myocarditis and Dilated Cardiomyopathy: Etiology and Pathogenesis
Current Pharmaceutical Design Engineered Probiotic and Prebiotic Nutraceutical Supplementations in Combating Non-communicable Disorders: A Review
Current Pharmaceutical Biotechnology A Systems Biology Perspective on Rational Design of Peptide Vaccine Against Virus Infections
Current Topics in Medicinal Chemistry First-in-Human Study of the Safety, Tolerability, Pharmacokinetics and - Preliminary Dynamics of Neuroprotectant 2-Iminobiotin in Healthy Subjects
Current Clinical Pharmacology Down with the Erythropoietin. Long Live the Erythropoietin !
Current Drug Targets CCR2 Antagonists
Current Topics in Medicinal Chemistry mRNA as a Versatile Tool for Exogenous Protein Expression
Current Gene Therapy Pathophysiogenesis of Mesial Temporal Lobe Epilepsy: Is Prevention of Damage Antiepileptogenic?
Current Medicinal Chemistry Adenosine Dysfunction in Epilepsy and Associated Comorbidities
Current Drug Targets Anti-toxoplasma and Cytotoxic Activities of <i>Holothuria leucospilota</i> Extract and TiO<sub>2</sub>NPs <i>In vitro</i> and <i>In vivo</i>
Infectious Disorders - Drug Targets The Potential Health Benefits of Algae and Micro Algae in Medicine: A Review on Spirulina platensis
Current Nutrition & Food Science Therapeutic Options in Prevention and Treatment of Aspartoacylase Gene Mutation Resulting Abnormalities in Canavan Disease
Current Pharmacogenomics EPO Relies upon Novel Signaling of Wnt1 that Requires Akt1, FoxO3a,GSK-3β, and β-Catenin to Foster Vascular Integrity during Experimental Diabetes
Current Neurovascular Research