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40596-69-8
  • names:

    Methoprene

  • CAS號:

    40596-69-8

    MDL Number: MFCD00072475
  • MF(分子式): C19H34O3 MW(分子量): 310.47
  • EINECS:254-993-2 Reaxys Number:40596-69-8
  • Pubchem ID:5366546 Brand:BIOFOUNT
烯蟲酯
烯蟲酯(Methoprene,40596-69-8)由昆蟲內(nèi)分泌腺體產(chǎn)生的具有調(diào)節(jié)昆蟲生長發(fā)育功能的微量活性物質(zhì)。
貨品編碼 規(guī)格 純度 價格 (¥) 現(xiàn)價(¥) 特價(¥) 庫存描述 數(shù)量 總計 (¥)
YZM000768-100mg 100mg >98.0% ¥ 1012.00 ¥ 1012.00 2-3天
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0.00
YZM000768-50mg 50mg >98.0% ¥ 780.00 ¥ 780.00 2-3天
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中文別名 烯蟲酯(Methoprene,40596-69-8);甲氧丁二烯
英文別名 Methoprene(烯蟲酯,40596-69-8)
CAS號 40596-69-8
Inchi InChI=1S/C19H34O3/c1-15(2)22-18(20)14-17(4)11-8-10-16(3)12-9-13-19(5,6)21-7/h8,11,14-16H,9-10,12-13H2,1-7H3/b11-8+,17-14+
InchiKey NFGXHKASABOEEW-LDRANXPESA-N
分子式 Formula C19H34O3
分子量 Molecular Weight 310.47
溶解度Solubility Chloroform (Slightly), Methanol (Sparingly)
性狀 Solid
儲藏條件 Storage conditions Pure form -20°C 3 years年 4°C 2 years年 / In solvent溶液中:-80°C 6 months月 -20°C 1 month月
烯蟲酯(Methoprene,40596-69-8)毒性
生物 測試類型 路線 報告劑量(標準化劑量) 影響 參考
dog LD50 oral 5gm/kg (5000mg/kg)   EHP, Environmental Health Perspectives. Vol. 14, Pg. 119, 1976.
guinea pig LC50 inhalation > 210gm/m3 (210000mg/m3)   EHP, Environmental Health Perspectives. Vol. 14, Pg. 119, 1976.
rabbit LD50 oral 3038mg/kg (3038mg/kg)   "Agrochemicals Handbook," with updates, Hartley, D., and H. Kidd, eds., Nottingham, Royal Soc of Chemistry, 1983-86Vol. A615, Pg. 1986,
rabbit LD50 skin 3gm/kg (3000mg/kg)   EHP, Environmental Health Perspectives. Vol. 14, Pg. 119, 1976.
rat LC50 inhalation > 210gm/m3 (210000mg/m3)   EHP, Environmental Health Perspectives. Vol. 14, Pg. 119, 1976.
rat LD50 oral 25gm/kg (25000mg/kg) BEHAVIORAL: SOMNOLENCE (GENERAL DEPRESSED ACTIVITY)

SENSE ORGANS AND SPECIAL SENSES: OTHER CHANGES: OLFACTION
Gigiena i Sanitariya. For English translation, see HYSAAV. Vol. 56(10), Pg. 72, 1991.

烯蟲酯(Methoprene,40596-69-8)物理性質(zhì):
物理屬性 單位 溫度(攝氏度) 資源
Melting Point < 25 deg C   EXP
log P (octanol-water) 5.5 (none)   EXP
Water Solubility 1.4 mg/L   EXP
Vapor Pressure 2.36E-05 mm Hg 25 EXP
Henry's Law Constant 6.89E-06 atm-m3/mole 25 EST
Atmospheric OH Rate Constant 8.30E-11 cm3/molecule-sec 25 EST

烯蟲酯(Methoprene,40596-69-8)實驗注意事項:
1.實驗前需戴好防護眼鏡,穿戴防護服和口罩,佩戴手套,避免與皮膚接觸。
2.實驗過程中如遇到有毒或者刺激性物質(zhì)及有害物質(zhì)產(chǎn)生,必要時實驗操作需要手套箱內(nèi)完成以免對實驗人員造成傷害
3.實驗后產(chǎn)生的廢棄物需分類存儲,并交于專業(yè)生物廢氣物處理公司處理,以免造成環(huán)境污染Experimental considerations:
1. Wear protective glasses, protective clothing and masks, gloves, and avoid contact with the skin during the experiment.
2. The waste generated after the experiment needs to be stored separately, and handed over to a professional biological waste gas treatment company to avoid environmental pollution.
Tag:烯蟲酯MSDS,烯蟲酯蒸汽壓,烯蟲酯合成,烯蟲酯標準,烯蟲酯應用,烯蟲酯合成,烯蟲酯沸點,烯蟲酯閃點,烯蟲酯用途,烯蟲酯溶解度,烯蟲酯價格,烯蟲酯作用,烯蟲酯結(jié)構(gòu)式,烯蟲酯用處,烯蟲酯毒理性質(zhì),烯蟲酯物理性質(zhì)
產(chǎn)品說明 烯蟲酯(Methoprene,40596-69-8)具有模擬青少年荷爾蒙的作用。烯蟲酯是一種生物農(nóng)藥。
IntroductionMethoprene(烯蟲酯,40596-69-8) an isopropyl 11-methoxy-3,7,11-trimethyldodeca-2,4-dienoate and an isopropyl ester. It has a role as a juvenile hormone mimic.Methoprene is a biological pesticide.
Application1
Application2
Application3
Occurrence and Fate of Methoprene Compounds in Urban Areas of Southern Ontario, Canada Bulletin of Environmental Contamination and Toxicology 2007/PMID: 17805941
Dietary methoprene supplement promotes early sexual maturation of male Queensland fruit fly Bactrocera tryoni Journal of Pest Science 2018
Non-Selective Toxicological Effects of the Insect Juvenile Hormone Analogue Methoprene. A Membrane Biophysical Approach Applied Biochemistry and Biotechnology 2008 18682901
Identification of plant compounds that disrupt the insect juvenile hormone receptor complex Proceedings of the National Academy of Sciences of the United States of America/PMID: 25624480
Molecular impact of juvenile hormone agonists on neonatal Daphnia magna Journal of applied toxicology : JAT/PMID: 24038158

Regulation of the brain dopaminergic system by juvenile hormone in honey bee males (Apis mellifera L.)

Abstract

Dopamine (DA) and juvenile hormone (JH) are multifunctional regulators of behaviour in social insects, with distinct effects across species and even between different dominance positions within the same species. We examined the effects of JH on the brain dopaminergic system in honey bee males to investigate the potential relationship between JH and DA within Apis mellifera. Both DA content and the expression of three DA receptor genes (Amdop1, Amdop2 and Amdop3) increased in the male honey bee brain from day 4 to day 8 after emergence. Treatment of 4-day-old males with a JH analogue (methoprene, JHA) enhanced brain DA levels. Brain expression of Amdop1 was also enhanced by JHA but not by a DA receptor agonist 2-amino 6,7-dihydroxy-1,2,3,4-tetrahydronaphthalene (6,7-ADTN), indicating that Amdop1 up-regulation was not mediated by increased DA receptor stimulation. Furthermore, Amdop1 expression was still enhanced when JHA was co-applied with the DA receptor antagonist cis-(Z)-flupenthixol. Expression levels of Amdop2 and Amdop3 were not altered by JHA, 6,7-ADTN or by JHA plus the DA receptor antagonist. Regulation of the brain dopaminergic system by JH, as observed in solitary species, is conserved in male honey bees but not in female honey bees and other advanced eusocial insects.


Support for the immunocompetence handicap hypothesis in the wild: hormonal manipulation decreases survival in sick damselflies

Abstract

The immunocompetence handicap hypothesis (ICHH) states that hormones enhance sexual trait expression but impair immunity. Previous tests of the ICHH have been hampered by experimental design problems. Here, we report on an experimental test of the ICHH that includes manipulations of both hormones and infections in males of the territorial damselfly, Hetaerina americana, with accurate survival measurements. We conducted a fully factorial experiment subjecting each individual to one of three topical treatments: methoprene (a juvenile hormone analog), acetone, or control, and one of three injection treatments: bacteria, PBS, or control. We measured survival of manipulated males in both the wild and in captivity. As predicted, survival was most heavily impaired in methoprene-bacteria males than in the other groups in the wild, and no survival differences emerged in captive animals. This result confirms that survival is one cost an animal pays for increased hormonal levels. This corroborates theoretical predictions of the ICHH.

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