Tetrahydropiperine CAS 23434-88-0
Product Name:Tetrahydropiperine;
CAS NO.: 23434-88-0
Molecular formula: C17H23NO3
Purity & Grade: 99% HPLC; Food grade
MOQ & Package: 100g; Package according to demand
Shipping: Safe and fast delivery
Store & Shelf life: Cool & dry place; 36 months
Lead Time: about 3 days
Warehouse: USA and Germany warehouse
Certificate:COA; HPLC; MSDS; TDS,etc.
Description
What is Tetrahydropiperine ?
Tetrahydropiperine is a cyclohexyl analogue of piperine and the first natural aromatic pentanamide from Piper longum.
Tetrahydropiperine reduces the production of pro-inflammatory cytokines such as TNF - α and IL-6, as well as nitric oxide (NO), by inhibiting nuclear translocation and phosphorylation of MAPKs such as ERK, JNK, and p38. Meanwhile, Tetrahydropiperine inhibits excessive autophagy by activating pathways, protecting neurons from oxidative damage. It has anti-inflammatory, anti apoptotic, and neuroprotective effects, mainly used in the research of inflammatory diseases (such as endotoxemia, arthritis) and neurological diseases such as ischemic stroke.

| Product name | Tetrahydropiperine |
| CAS | 23434-88-0 |
| Molecular formula | C17H23NO3 |
| Molecular weight | 289.37 |
| EINECS Number | NA |
| Acidity coefficient (pKa) | -0.44±0.20(Predicted) |
| Solubility | DMF:10mg/mL; Dimethyl sulfoxide: 10mg/mL; DMSO:PBS (pH 7.2) (1:7):0.1 mg/mL; Ethanol: 10mg/mL |
| Appearance | White to off white |
| Boiling point | 261 °C(Press: 14 Torr) |
| Density | 1.156±0.06 g/cm3(Predicted) |
How to extract Tetrahydropiperine?

Extracting tetrahydropiperine typically involves extracting it from plants in the Piperaceae family. The following are the general steps for extracting it:
1. Raw material preparation: Select dried, near mature or ripe fruits of pepper plants as raw materials. These plants include pepper (Piper nigrum) and others.
2. Crushing: Crush the dried fruit to increase its surface area for subsequent extraction processes.
3. Solvent extraction: Use appropriate solvents (such as ethanol, propylene glycol, etc.) to soak and extract the crushed raw materials. The choice of solvent should be determined based on the solubility of tetrahydropiperine. The soaking time is usually several hours to several days, depending on the extraction efficiency and the properties of the solvent.
4. Filtration: Filter the extract to remove solid residue and obtain an extract containing tetrahydropiperine.
5. Concentration: Concentrate the extract to remove most of the solvent and obtain a concentrated solution. This step can be achieved through methods such as vacuum evaporation.
6. Purification: Use high-performance liquid chromatography (HPLC) and other methods to purify the concentrated solution, in order to separate high-purity tetrahydropiperine.
Multiple column chromatography or other separation techniques may be required during the purification process to ensure that the purity of the product reaches over 98%.
7. Drying: Dry the purified tetrahydropiperine to obtain the final solid product. The drying method can be freeze drying or spray drying.
Product Specification
| Items | Specification | Results |
| Physical Control | ||
| Appearance | Yellow Brown to White Powder | White Powder |
| Identification | Conform with standard | Complies |
| Odor&Taste | Characteristic | Complies |
| Loss on Drying | ≤5.0% | 4.00% |
| Ash | ≤5.0% | 3.90% |
| Particle Size | NLT 95% Pass 80 Mesh | Complies |
| Chemical Control | ||
| Extract Ratio | 4:1,10:1, 50-98% Piperine | Complies |
| Assay | Piperine | Complies |
| Total Heavy Metals | ≤10.0ppm | 9ppm |
| Lead(Pb) | ≤3.0ppm | 2.5ppm |
| Arsenic(As) | ≤2.0ppm | 1.0ppm |
| Cadmium(Cd) | ≤1.0ppm | 0.9ppm |
| Mercury(Hg) | ≤0.1ppm | 0.09ppm |
| Solvent residue | <5000ppm | 4500ppm |
| Pesticide residue | Meet USP/EP | Complies |
| PAHs | <50ppb | 40ppb |
| BAP | <10ppb | 6ppb |
| Aflatoxins | <10ppb | 8ppb |
| Microbial Control | ||
| Total Plate Count | ≤1,000cfu/g | 600cfu/g |
| Yeast&Molds | ≤100cfu/g | 60cfu/g |
| E.Coli | Negative | Negative |
| Salmonella | Negative | Negative |
| Stapaureus | Negative | Negative |
Conclusion:Conform with enterprise specification .
Where is Tetrahydropiperine usually used?
Tetrahydropiperine is a chemical substance that is a cyclohexyl analogue of piperine, derived from Piper longum. Some common uses of it:
1. Inhibition of cytochrome P450 (CYP) isoform CYP1A1: Tetrahydropiperine can inhibit cytochrome P450 (CYP) isoform CYP1A1/aryl hydrocarbon hydroxylase (AHH), with a half maximal inhibitory concentration (IC50) of 23 micromoles (μ M).
2. Promote the absorption of functional ingredients: Tetrahydropiperine can be used to promote the absorption of functional ingredients, such as in spot whitening and acne products, it can improve the absorption efficiency of vitamins, polyphenols, alkaloids and other ingredients.
3. Whitening and heating effects: As a stable, safe and non irritating ingredient, tetrahydropiperine is currently the only natural substance extracted and isolated from plants with strong penetration promoting effects. It not only promotes whitening, but also has a heating effect that can raise the temperature of the skin, thereby improving blood circulation and metabolism.
In summary, tetrahydropiperine has broad application prospects in the fields of medicine and cosmetics.
What are the effects of Tetrahydropiperine ?
Tetrahydropiperine is a natural aromatic pentanamide isolated from Piper longum, which has various biological activities and potential pharmacological effects. Here are its main effects:
1. Anti inflammatory effect: Tetrahydropiperine can inhibit nuclear translocation and phosphorylation of MAPKs such as ERK, JNK, p38, thereby reducing the production of pro-inflammatory cytokines such as TNF - α, IL-6, and nitric oxide (NO).
2. Anti apoptotic effect: By activating pathways to inhibit excessive autophagy, it protects neurons from oxidative damage and demonstrates its anti apoptotic effect.
3. Neuroprotective effect: Due to its anti-inflammatory and anti apoptotic effects, tetrahydropiperine has shown neuroprotective effects in research on neurological diseases, such as ischemic stroke.
4. Anti cancer effect: Tetrahydropiperine exhibits inhibitory effects on certain cancers by inhibiting cytochrome P450 (CYP) isoform CYP1A1/aryl hydrocarbon hydroxylase (AHH).
5. Other potential effects: Tetrahydropiperine may also have therapeutic effects on epilepsy, pain relief, and insect control.
It should be noted that these effects are mainly based on in vitro studies and animal experiments, and the exact efficacy and safety of tetrahydropiperine in humans still need further clinical trials to confirm.
How and where to buy Tetrahydropiperine wholesale?
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Note: This compound is only used for laboratory research purposes. The US authorities have not evaluated these claims. Before use, please consult your doctor and learn about available research. This product is not intended for the diagnosis, treatment, cure, or prevention of any disease.
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