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84012-30-6
  • Product Name:Papaya, ext.(Carica papaya L.)
  • Efficacy:Antibacterial and antiparasitic
  • Application:Verterinary
  • Molecular:Complex mixture
Product Details

Papaya fruit extract (Papaya, ext.)

Carica papaya L. fruit extract is a natural plant extract extracted from the fruit of Carica papaya L., widely used in the fields of cosmetics, food, and medicine.

Basic Properties

CAS number: 84012-30-6

EINECS number: 281-675-0

Appearance: usually light yellow to brown powder or liquid

Odor: Characteristic orange flavor (Citrus aroma type)

Molecular formula/molecular weight: a mixture without a fixed molecular formula and molecular weight

Solubility: soluble in solvents such as water and ethanol

Main chemical components:

Papain - Core Active Ingredient

Papain

Rennin (rennin)

Multiple vitamins (A, B ₁, B ₂ C、K)

Minerals (calcium, potassium, magnesium, copper, etc.)

Carotenoids (β - carotene, cryptoxanthin, tomato hydrocarbons, etc.)

Carbohydrates (sucrose, invert sugar), pectin, small amounts of organic acids (tartaric acid, malic acid)


main purpose

Cosmetics/Daily Chemical Industry (Main Applications)

This is the core application area of the extract, labeled as "skin conditioner" in the cosmetic ingredient list.

Humectant: Helps the skin retain moisture

Skin conditioning agents: improve skin condition

Tonic: Promotes skin vitality

Exfoliation/Rejuvenation: Papain hydrolyzes keratin, softens and removes aging keratinocytes, accelerates skin metabolism, and has the effects of cleansing, softening, lightening pigmentation, anti wrinkle, and inhibiting acne

Common application products: cleanser, facial mask, essence, exfoliating product, whitening product, etc


food sector

Digestive aid: Papain can help with protein digestion and can be used for chronic indigestion and gastritis

Meat tenderizer: softens meat texture through protein hydrolysis by proteases

Nutritional supplement: rich in vitamins and carotenoids, with certain nutritional value


Medical/healthcare field

Antibacterial and antiparasitic: Papain has a certain inhibitory effect on Mycobacterium tuberculosis; Papain can drive away tapeworms, roundworms, and whipworms

Antitumor activity: Research has found that papain has anti-tumor activity against lymphocytic leukemia cells; Papaya leaf extract has inhibitory effect on a variety of cancer cells (cervical cancer, breast cancer, liver cancer, lung cancer, pancreatic cancer, etc.), and has no side effects on normal cells

Trauma repair: Papain can be used for wound debridement with necrotic tissue, enzymatic debridement in chronic otitis media, and burns

Anti inflammatory and antioxidant: possessing certain anti-inflammatory and free radical scavenging abilities

Auxiliary hypoglycemic effect: research shows that it has inhibitory effect on type II diabetes related enzymes


safety

GHS classification: No hazard classification found, no hazard statement

Toxicity: Oral/dermal/inhalation toxicity has not been determined (high safety)

Attention: Papain is an effective antigen and may cause allergic reactions; Intravenous injection has high toxicity

Cosmetic use: not recommended for essence or perfume


Summary

Dimension Description

Source: Carica papaya L. fruit extract

Core active ingredient Papain

Main application areas: cosmetics (skin conditioning, exfoliation, moisturizing)

Secondary application areas include food (digestive aid, tender meat), medicine (antibacterial, anti-tumor, wound repair)

Application of extracts from muscovy fruits and melons in the field of veterinary medicine

The extract of passion fruit (CAS: 84012-30-6) is currently mainly in the research and application exploration stage in the field of veterinary medicine, and has not yet been widely used as a formally registered veterinary drug raw material like mupirocin and milberoxime. However, its potential in the veterinary field has been confirmed by multiple studies.

Main application directions of veterinary drugs

Poultry anti worm (deworming)

This is currently the most extensively researched direction. A study by Makerere University in Uganda has shown that papaya leaf/fruit extract has a significant insecticidal effect on poultry worm infections (such as Ascaridia galli):

In vitro experiment: A concentration of 0.08 g/mL can cause over 50% of adult chicken roundworms to lose their motility within 5 hours

In vivo experiment: The fecal egg count reduction rate (FECR) was as high as 97.67%, second only to levamisole hydrochloride (98.67%), and significantly better than the traditional drug piperazine citrate (35.67%)

Core active ingredients: Vitamin C (42%), sterols (13%), triterpenoids (6%), among which Vitamin C is believed to enhance the host's anti parasitic immune response


Poultry anti coccidiosis

Research conducted by the University of Togo and the National Agricultural University of Kenya has confirmed that papaya seed extract has a significant in vitro inhibitory effect on poultry coccidiosis (caused by Eimeria spp.):

At a concentration of 75 mg/mL, it can inhibit approximately 74.53% of the sporulation of coccidian cysts

Simultaneously possessing strong antioxidant activity (69.77 mg/g), it helps to enhance the immunity of poultry

Can be used as a natural raw material for developing new anti coccidiosis compound preparations

Taenia prevention and control (oral vaccine carrier)

Papaya has also been explored as a delivery platform for oral vaccines, used to control various zoonotic tapeworm parasites such as Taenia solium and Echinococcus granulosus

Papaya extract itself has a killing effect on various types of parasites (by destroying the cell membrane of the parasite through protease activity, inhibiting energy metabolism, and interfering with nerve signal transduction)

Papaya suspension culture system can serve as a recombinant antigen expression platform for developing low-cost oral vaccines

The cost of each dose of vaccine is about $0.12, which is 85% lower than traditional vaccines


mechanism of action

The insecticidal effect of extracts from muscovy fruits and melons in veterinary medicine is mainly achieved through the following pathways:

Protease activity (papain): destroys parasite cell membrane and protein structure

Alkaloids (Papain): neurotoxic to parasites

Triterpenes/sterols: inhibit mitochondrial function, interfere with insect energy metabolism

Vitamin C: enhances host immune defense ability, synergistically increases efficacy


Summary

Dimension Description

The registration status of veterinary drugs has not been officially registered as veterinary raw materials, and is currently mainly in the research stage

Main research directions: Poultry deworming (worms, coccidiosis), tapeworm prevention and control

Core advantages: natural, low-cost, no drug residue, and less likely to develop drug resistance

Target animals: poultry (chickens), livestock (pigs, cows)

Compared with traditional drugs, the deworming effect is comparable to levamisole and superior to piperazine

Commercialization prospects as a natural alternative to deworming drugs have great potential in the fields of organic farming and antibiotic free farming




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