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户外防护驱蚊霜的制备与评估。

The fabrication and assessment of mosquito repellent cream for outdoor protection.

机构信息

Division of Pharmaceutical Technology, Defence Research Laboratory, Tezpur, Assam, 784001, India.

Girijananda Chowdhury Institute of Pharmaceutical Science, Dekargaon, Tezpur, Assam, 784501, India.

出版信息

Sci Rep. 2022 Feb 9;12(1):2180. doi: 10.1038/s41598-022-06185-9.

Abstract

Mosquito-borne infections like dengue, malaria, chikungunya, etc. are a nuisance and can cause profound discomfort to people. Due to the objectional side effects and toxicity associated with synthetic pyrethroids, N,N-diethyl-3-methylbenzamide (DEET), N,N-diethyl phenylacetamide (DEPA), and N,N-di ethyl benzamide (DEBA) based mosquito repellent products, we developed an essential oil (EO) based mosquito repellent cream (EO-MRC) using clove, citronella and lemongrass oil. Subsequently, a formulation characterization, bio-efficacy, and safety study of EO-MRC were carried out. Expression of Anti-OBP2A and TRPV1 proteins on mosquito head parts were studied by western blotting. In-silico screening was also conducted for the specific proteins. An FT-IR study confirmed the chemical compatibility of the EOs and excipients used in EO-MRC. The thermal behaviour of the best EOs and their mixture was characterized by thermogravimetric analysis (TGA). GC-MS examination revealed various chemical components present in EOs. Efficacy of EO-MRC was correlated with 12% N,N-diethyl benzamide (DEBA) based marketed cream (DBMC). Complete protection time (CPT) of EO-MRC was determined as 228 min. Cytotoxicity study on L-132 cell line confirmed the non-toxic nature of EO-MRC upon inhalation. Acute dermal irritation study, acute dermal dose toxicity study, and acute eye irritation study revealed the non-toxic nature of EO-MRC. Non-target toxicity study on Danio rerio confirmed EO-MRC as safer for aquatic non-target animals. A decrease in the concentration of acetylcholinesterase (AChE) was observed in transfluthrin (TNSF) exposed Wistar rats. While EO-MRC did not alter the AChE concentrations in the exposed animals. Results from western blotting confirmed that Anti-OBP2A and TRPV1 proteins were inhibited in TNSF exposed mosquitoes. Mosquitoes exposed to EO-MRC showed a similar expression pattern for Anti-OBP2A and TRPV1 as the control group. In silico study revealed eight identified compounds of the EOs play significant roles in the overall repellency property of the developed product. The study emphasizes the mosquito repellent activity of EO-MRC, which could be an effective, eco-friendly, and safer alternative to the existing synthetic repellents for personal protection against mosquitoes during field conditions.

摘要

登革热、疟疾、基孔肯雅热等蚊媒传染病令人讨厌,会给人们带来极大的不适。由于与合成拟除虫菊酯、N,N-二乙基-3-甲基苯甲酰胺(DEET)、N,N-二乙基苯乙酰胺(DEPA)和 N,N-二乙基苯甲酰胺(DEBA)相关的不良副作用和毒性,我们使用丁香、香茅和柠檬草油开发了一种基于精油的驱蚊霜(EO-MRC)。随后,对 EO-MRC 进行了配方特征、生物功效和安全性研究。通过 Western blot 研究了蚊子头部 Anti-OBP2A 和 TRPV1 蛋白的表达。还进行了针对特定蛋白质的计算机筛选。FT-IR 研究证实了 EO-MRC 中精油和赋形剂的化学相容性。通过热重分析(TGA)研究了最佳精油及其混合物的热行为。GC-MS 检查揭示了精油中存在的各种化学成分。EO-MRC 的功效与 12%的 N,N-二乙基苯甲酰胺(DEBA)为基础的市售霜(DBMC)相关联。EO-MRC 的完全保护时间(CPT)确定为 228 分钟。对 L-132 细胞系的细胞毒性研究证实,吸入 EO-MRC 具有非毒性。急性皮肤刺激性研究、急性皮肤剂量毒性研究和急性眼睛刺激性研究表明 EO-MRC 无毒。对斑马鱼的非靶标毒性研究证实,EO-MRC 对水生非靶标动物更安全。在接触三氟氯氰菊酯(TNSF)的 Wistar 大鼠中,乙酰胆碱酯酶(AChE)的浓度降低。而 EO-MRC 并没有改变暴露动物中的 AChE 浓度。Western blot 结果证实,Anti-OBP2A 和 TRPV1 蛋白在接触 TNSF 的蚊子中被抑制。接触 EO-MRC 的蚊子对 Anti-OBP2A 和 TRPV1 的表达模式与对照组相似。计算机研究表明,精油中的八种鉴定化合物在开发产品的整体驱避性能中发挥着重要作用。该研究强调了 EO-MRC 的驱蚊活性,它可能是现有合成驱避剂的有效、环保和更安全的替代品,可在野外条件下为个人提供针对蚊子的防护。

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