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N-Vanillyloctanamide, also known as NVA, is a synthetic compound with chemical properties similar to capsaicin, the compound responsible for the spiciness of chili peppers. It is known for its potential use in pain relief, particularly in the treatment of neuropathic pain, and has been studied for its analgesic effects by binding to and activating the transient receptor potential cation channel, subfamily V, member 1 (TRPV1), which is involved in the transmission of pain signals.

58493-47-3

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58493-47-3 Usage

Uses

Used in Pharmaceutical Industry:
N-Vanillyloctanamide is used as a pain relief agent for its potential therapeutic applications in treating neuropathic pain. It is used for its ability to reduce pain sensitivity in animal models and is currently being researched for its efficacy in human pain management.
Used in Pain Management:
N-Vanillyloctanamide is used as an analgesic for its potential to bind to and activate the TRPV1 receptor, which plays a role in the transmission of pain signals, thereby offering a new avenue for pain management strategies.
Used in Anti-Inflammatory Applications:
N-Vanillyloctanamide is used as an anti-inflammatory agent due to its reported properties, making it a promising candidate for the development of new drugs aimed at managing inflammation-related conditions.

Check Digit Verification of cas no

The CAS Registry Mumber 58493-47-3 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,8,4,9 and 3 respectively; the second part has 2 digits, 4 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 58493-47:
(7*5)+(6*8)+(5*4)+(4*9)+(3*3)+(2*4)+(1*7)=163
163 % 10 = 3
So 58493-47-3 is a valid CAS Registry Number.
InChI:InChI=1/C16H25NO3/c1-3-4-5-6-7-8-11-17-16(19)13-9-10-14(18)15(12-13)20-2/h9-10,12,18H,3-8,11H2,1-2H3,(H,17,19)

58493-47-3SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 20, 2017

Revision Date: Aug 20, 2017

1.Identification

1.1 GHS Product identifier

Product name 4-hydroxy-3-methoxy-N-octylbenzamide

1.2 Other means of identification

Product number -
Other names OCTANAMIDE,N-VANILLYL

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:58493-47-3 SDS

58493-47-3Downstream Products

58493-47-3Relevant academic research and scientific papers

Vanilla amide synthesis method

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Paragraph 0083-0086; 0096-0098, (2021/06/13)

The invention discloses a vanilla amide synthesis method, which comprises the following step: by taking alcohol and vanilla amide as raw materials, or aldehyde and vanilla amide as raw materials, inorganic ferric salt and inorganic indium salt as a composite catalyst and oxygen as an oxidant, carrying out one-pot reaction in an organic solvent to generate vanilla amide. The synthesis raw materials adopted by the synthesis method are wide in source, a large amount of chemical reaction waste can be avoided in the whole reaction process, and the synthesis method is clean and environmentally friendly, has the advantages of mild and controllable reaction conditions, simple operation, convenience in product separation and purification, high product yield, wide universality of reaction substrates and the like, and is a method suitable for industrial production.

Application of hansch's model to capsaicinoids and capsinoids: A study using the quantitative structure-activity relationship. A novel method for the synthesis of capsinoids

Barbero, Gerardo F.,Molinillo, Jose M. G.,Varela, Rosa M.,Palma, Miguel,MacIas, Francisco A.,Barroso, Carmelo G.

experimental part, p. 3342 - 3349 (2011/07/30)

We describe a synthetic approach for two families of compounds, the capsaicinoids and capsinoids, as part of a study of the quantitative relationship between structure and activity. A total of 14 capsaicinoids of increasing lateral chain lengths, from 2 to 16 carbon atoms, were synthesized. In addition, 14 capsinoids with identical lateral chains, as well as capsiate and dihydrocapsiate, have been synthesized, and a new method for the synthesis of these compounds has been developed. The yields range from 48.35 to 98.98%. It has been found that the synthetic capsaicinoids and capsinoids present a lipophilia similar to those of the natural compounds and present similar biological activity. The bioactivity of the synthetic capsaicinoids and capsinoids decreases proportionally to the degree of difference in lipophilia (higher or lower) compared to the natural compounds. Biological activity was determined using the etiolated wheat (Triticum aestlvum L.) coleoptiles bioassay and by comparing results of the synthesis with those presented by their counterpart natural compounds. The bioactivities found correlated directly to the lipophilic properties of the synthesized compounds.

Highly efficient synthesis of capsaicin analogues by condensation of vanillylamine and acyl chlorides in a biphase H2O/CHCl3 system

Wang, Bo,Yang, Fan,Shan, Yi-Fan,Qiu, Wen-Wei,Tang, Jie

supporting information; experimental part, p. 5409 - 5412 (2009/10/17)

Highly efficient synthesis of capsaicin analogues was developed using condensation of vanillylamine with acyl chlorides in a biphase H2O/CHCl3 system under mild conditions. For C4-C18 aliphatic or aromatic acyl chlorides, the yields were up to 93-96% with high purity after a simple work-up procedure, and only 1-1.16 equiv of acyl chloride was needed in the reaction.

A novel acylase from Streptomyces mobaraensis that efficiently catalyzes hydrolysis/synthesis of capsaicins as well as N-acyl-L-amino acids and N-acyl-peptides

Koreishi, Mayuko,Zhang, Demin,Imanaka, Hiroyuki,Imamura, Koreyoshi,Adachi, Shuji,Matsuno, Ryuichi,Nakanishi, Kazuhiro

, p. 72 - 78 (2007/10/03)

A novel enzyme that catalyzes efficient hydrolysis of capsaicin (8-methyl-N-vanillyl-6-nonenamide) was isolated from the culture broth of Streptomyces mobaraensis. The enzyme consisted of two dissimilar subunits with molecular masses of 61 and 19 KDa. The enzyme was activated and stabilized in the presence of Co2+. It showed a pH optimum of about 8 and was stable at temperatures of up to 55°C for 1 h at pH 7.8. The specific activity of the enzyme for the hydrolysis of capsaicin was 10 2-104 times higher than those for the enzymes reported to date. In an aqueous/n-hexane biphasic system, capsaicin analogues such as octanoyl, decanoyl, and lauroyl vanillylamides were synthesized from the corresponding fatty acids and vanillylamine at yields of 50% or greater. In addition, the enzyme catalyzed the deacylation of N-lauroyl-L-amino acids and N-lauroyl-L-dipeptides and the efficient synthesis of Nα-lauroyl-L-lysine, Nε-lauroyl-L-lysine, and various N-lauroyl-peptides in aqueous solution in both the absence and the presence of glycerol.

Enzymatic synthesis of capsaicin analogs with liver acetone powder

Kobata, Kenji,Yoshikawa, Koichi,Kohashi, Masahiro,Watanabe, Tatsuo

, p. 2789 - 2790 (2007/10/03)

The enzymatic synthesis of capsaicin analogs with saturated or unsaturated acyl moieties has been achieved by using liver acetone powder as a catalyst.

Vanilloids. 1. Analogs of Capsaicin with Antinociceptive and Antiinflammatory Activity

Janusz, John M.,Buckwalter, Brian L.,Young, Patricia A.,LaHann, Thomas R.,Farmer, Ralph W.,et al.

, p. 2595 - 2604 (2007/10/02)

As part of a program to establish structure-activity relationships for vanilloids, analogs of the pungent principle capsaicin, the alkyl chain portion the parent structure (and related compounds derived from homovanillic acid) was varied.In antinociceptive and antiinflammatory assays (rat and mouse hot plate and croton oil-inflamed mouse ear), compounds with widely varying alkyl chain structures were active.Short-chain compounds were active by systemic administration in the assays mentioned above but they retained the high pungency and acute toxicity characteristic of capsaicin.In contrast, the long chain cis-unsaturates, NE-19550 (vanillyloleamide) and NE-28345 (oleylhomovanillamide), were orally active, less pungent, and less acutely toxic than capsaicin.The potential of these compounds as antiinflammatory/analgesic agents is discussed in light of recent data on the mechanism of action of vanilloids on sensory nerve fibers.

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