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(2α,3β)-3-(Acetyloxy)-2-hydroxy-olean-12-en-28-oic acid is a triterpenoid compound derived from the plant kingdom, characterized by its anti-inflammatory and antioxidant properties. The presence of acetyloxy and hydroxy groups on the olean-12-en-28-oic acid structure endows it with potential pharmaceutical and medicinal applications, as well as utility in skincare and cosmetic products. Its unique molecular structure and functional groups also make it a promising building block in organic synthesis.

106894-29-5

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106894-29-5 Usage

Uses

Used in Pharmaceutical and Medicinal Applications:
(2α,3β)-3-(Acetyloxy)-2-hydroxy-olean-12-en-28-oic acid is used as a pharmaceutical and medicinal compound for its anti-inflammatory and antioxidant properties. Its chemical structure allows for potential development into drugs for various diseases and conditions.
Used in Skincare and Cosmetic Products:
This triterpenoid compound is used in skincare and cosmetic products due to its beneficial properties, which may include anti-inflammatory and antioxidant effects that can contribute to skin health and protection.
Used in Organic Synthesis:
(2α,3β)-3-(Acetyloxy)-2-hydroxy-olean-12-en-28-oic acid is utilized as a building block in organic synthesis, taking advantage of its unique molecular structure and functional groups to create new compounds with potential applications in various industries.

Check Digit Verification of cas no

The CAS Registry Mumber 106894-29-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,0,6,8,9 and 4 respectively; the second part has 2 digits, 2 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 106894-29:
(8*1)+(7*0)+(6*6)+(5*8)+(4*9)+(3*4)+(2*2)+(1*9)=145
145 % 10 = 5
So 106894-29-5 is a valid CAS Registry Number.

106894-29-5Relevant academic research and scientific papers

Rhodamine B conjugates of triterpenoic acids are cytotoxic mitocans even at nanomolar concentrations

Sommerwerk, Sven,Heller, Lucie,Kerzig, Christoph,Kramell, Annemarie E.,Csuk, René

, p. 1 - 9 (2016/12/30)

Triterpenoic acids 1–6 exhibited very low or no cytotoxicity at all, but their corresponding 2,3-di-O-acetyl-piperazinyl amides 13–18 showed low EC50values for several human tumor cell lines. Their cytotoxicity, however, was also high for the non-malignant mouse fibroblasts NIH 3T3. A significant improvement was achieved by preparing the rhodamine B derivatives 19–24. While rhodamine B is not cytotoxic (up to a concentration of 30μM – cut-off of the assay), the triterpenoid piperazine-spacered rhodamine B derivatives were cytotoxic in nano-molar concentration. Compound 24 (a diacetylated maslinic acid derivative) was most toxic for several human tumor cell lines but less toxic for mouse fibroblasts NIH 3T3. Staining and double-staining experiments revealed 24 to act as a mitocan.

Semi-synthesis of acylated triterpenes from olive-oil industry wastes for the development of anticancer and anti-HIV agents

Parra, Andres,Martin-Fonseca, Samuel,Rivas, Francisco,Reyes-Zurita, Fernando J.,Medina-O'Donnell, Marta,Martinez, Antonio,Garcia-Granados, Andres,Lupia?ez, Jose A.,Albericio, Fernando

, p. 278 - 301 (2014/02/14)

A broad set of potential bioactive conjugate compounds has been semi-synthesized through solution- and solid-phase organic procedures, coupling two natural pentacyclic triterpene acids, oleanolic (OA) and maslinic acids (MA), at the hydroxyl groups of the A-ring of the triterpene skeleton, with 10 different acyl groups. These acyl OA and MA derivatives have been tested for their anti-proliferative (against the b16f10 murine melanoma cancer cells) and antiviral (as inhibitors of the HIV-1-protease) effects. Several derivatives have shown high levels of early and total apoptosis (up to 90%). Most of the compounds that exhibited anti-proliferative effects also generated ROS, probably involving the activation of an intrinsic apoptotic route. The only four compounds that did not cause the release of ROS could be related to the participation of a probable extrinsic activation of the apoptosis mechanism. A great number of these acyl OA and MA derivatives have proved to be potent inhibitors of the HIV-1-protease, the most active inhibitors having IC 50 values between 0.31 and 15.6 μM, these values being between 4 and 186 times lower than their non-acylated precursors. The potent activities exhibited in the apoptosis-activation processes and in the inhibition of the HIV-1-protease by some OA and MA acylated derivatives imply that these compounds could be used as new, safe, and effective anticancer and/or antiviral drugs.

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