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3463-92-1
  • names:

    Carpaine

  • CAS號(hào):

    3463-92-1

    MDL Number:
  • MF(分子式): C28H50N2O4 MW(分子量): 478.71
  • EINECS:222-414-2 Reaxys Number:
  • Pubchem ID:442630 Brand:BIOFOUNT
番木瓜堿
番木瓜堿(3463-92-1,Carpaine)是一種生物堿,是木瓜葉的主要成分,番木瓜堿已顯示出具有心血管作用和植物代謝產(chǎn)物的作用。番木瓜堿是生物堿和大環(huán)糖苷。
貨品編碼 規(guī)格 純度 價(jià)格 (¥) 現(xiàn)價(jià)(¥) 特價(jià)(¥) 庫存描述 數(shù)量 總計(jì) (¥)
YZM000832-5mg 5mg >95% ¥ 0.00 ¥ 0.00 Backorder
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YZM000832-1mg 1mg >95% ¥ 0.00 ¥ 0.00 Backorder
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中文別名 番木瓜堿(3463-92-1,Carpaine);番木瓜鹼
英文別名 Carpaine(3463-92-1);(+)-Carpaine
CAS號(hào) 3463-92-1
Inchi InChI=1S/C28H50N2O4/c1-21-25-19-17-23(29-21)13-9-5-3-8-12-16-28(32)34-26-20-18-24(30-22(26)2)14-10-6-4-7-11-15-27(31)33-25/h21-26,29-30H,3-20H2,1-2H3/t21-,22-,23+,24+,25-,26-/m0/s1
InchiKey AMSCMASJCYVAIF-QCVMBYIASA-N
分子式 Formula C28H50N2O4
分子量 Molecular Weight 478.71
溶解度Solubility
性狀 Solid
儲(chǔ)藏條件 Storage conditions 存放在陰涼干燥處,短期(數(shù)天至數(shù)周)在0-4℃,長期(數(shù)月至數(shù)年)在-20℃。

番木瓜堿(3463-92-1,Carpaine)實(shí)驗(yàn)注意事項(xiàng):
1.實(shí)驗(yàn)前需戴好防護(hù)眼鏡,穿戴防護(hù)服和口罩,佩戴手套,避免與皮膚接觸。
2.實(shí)驗(yàn)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(shí)實(shí)驗(yàn)操作需要手套箱內(nèi)完成以免對(duì)實(shí)驗(yàn)人員造成傷害
3.實(shí)驗(yàn)后產(chǎn)生的廢棄物需分類存儲(chǔ),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

Carpaine(3463-92-1) 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:番木瓜堿(3463-92-1,Carpaine),番木瓜堿試劑,番木瓜堿抑制劑,番木瓜堿的純度,番木瓜堿的生產(chǎn),番木瓜堿的合成,番木瓜堿的廠家,番木瓜堿的價(jià)格,番木瓜堿的外觀,番木瓜堿的溶解度,番木瓜堿的作用,番木瓜堿的MSDS,番木瓜堿的含量
產(chǎn)品說明 番木瓜堿(3463-92-1,Carpaine)是一種有效的具有抗血小板減少活性的生物堿,在維持血小板數(shù)目方面表現(xiàn)出強(qiáng)烈的活性,無急性毒性。
IntroductionCarpaine (3463-92-1,番木瓜堿) is an effective alkaloid with anti-thrombocytopenic activity. It exhibits strong activity in maintaining the number of platelets without acute toxicity.
Application1
Application2
Application3
Anwendung der Massenspektrometrie zur Strukturaufkl?urung von Alkaloiden, 5. Mitt.: Die Struktur des Carpains(Monatshefte für Chemie und verwandte Teile anderer Wissenschaften,1964)
Carpaine: An alkaloid of Carica papaya—its chemistry and pharmacology(Economic Botany,1971)
Phytochemical examination of the leaves of carica papaya L.(Economic Botany,1956)
Five decades in the study of natural products(Journal of Chemical Sciences,2002)
Molecular docking studies of phytochemicals against trehalose–6–phosphate phosphatases of pathogenic microbes(Beni-Suef University Journal of Basic and Applied Sciences,2020)

Weak C-H…O hydrogen bonds in alkaloids: An overview
Abstract:
An overview of general classification scheme, medicinal importance and crystal structure analysis with emphasis on the role of hydrogen bonding in some alkaloids is presented in this paper. The article is based on a general kind of survey while crystallographic analysis and role of hydrogen bonding are limited to only those alkaloids whose three-dimensional structure has been reported by us. The C-H…O hydrogen bonding in the solid state in alkaloids has been found to be predominant and this observation makes the role of hydrogen bonding in organic molecular assemblies very important.

Evaluation of anti-dengue activity of Carica papaya aqueous leaf extract and its role in platelet augmentation
Abstract:
Dengue disease is characterized by a marked decrease in platelet count, which is life threatening. In the present study, we investigated the antiviral activity of an aqueous extract of Carica papaya leaves (PLE) against dengue virus (DENV) and its effect on platelet augmentation. The anti-dengue activity of PLE in DENV-infected THP-1 cells was examined by immunoblotting and flow cytometry. The effect of PLE on erythrocyte damage was investigated using hemolytic and anti-hemolytic assays. Virus-infected THP-1 cells were assayed for IFN-α secretion. The effect of PLE on platelet augmentation in rats with cyclophosphamide-induced thrombocytopenia was also investigated. The platelet count of blood from the retro-orbital plexus of rats was determined on the 1st, 4th, 7th, 11th and 14th day of study. On the 14th day, the rats were sacrificed for histopathological examination of the liver, kidney and spleen. Plasma of thrombocytopenic rats was tested for thrombopoietin (TPO) and IL-6 secretion. The data suggest that PLE significantly decreases the expression of the envelope and NS1 proteins in DENV-infected THP-1 cells. A marked decrease in intracellular viral load upon PLE treatment confirmed its antiviral activity. This also resulted in a significant decrease in erythrocyte damage and hydrogen-peroxide-induced lipid peroxidation. A significant increase in the number of platelets was found in thrombocytopenic rats treated with PLE, along with an increase in IL-6 and TPO levels. These findings suggest that PLE can potentially be used as an antiviral agent, as it helps in platelet augmentation and exhibits antiviral activity against DENV.

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