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RECENSIONE

Recensione

Al222
Al222 (25522 pt) 29-Oct-2025 18:25

Monk fruit, Frutto del monaco (Siraitia grosvenorii)

Descrizione

  • Cucurbitacea originaria della Cina meridionale, i cui frutti essiccati o i loro estratti sono impiegati come dolcificanti ad alta intensità.

  • La dolcezza deriva dai mogrosidi (triterpeni glicosidici), in particolare mogroside V, con potere dolcificante ~150–300× il saccarosio.

  • Profilo sensoriale: dolcezza pulita con persistenza moderata; possibili note fruttato–erbacee/“gourd-like” a purezze basse.

Valore calorico (per 100 g di prodotto)

  • Frutto fresco: ~30–40 kcal/100 g (acqua elevata; zuccheri presenti ma non responsabili della dolcezza intensa).

  • Frutto essiccato: ~250–320 kcal/100 g.

  • Estratto ad alta purezza (mogroside V ≥20–50%): ~0–5 kcal/100 g (calorie trascurabili ai dosaggi d’uso).

  • Miscele “tabletop” con carrier (es. eritritolo/destrosio): dipende dal carrier (può variare da ~0 a ~380 kcal/100 g).

Principali sostanze contenute

  • Mogrosidi: mogroside V (principale), IV, III; triterpeni cucurbitanici glicosidici.

  • Polisaccaridi e pectine (nel frutto), amminoacidi e acidi organici in tracce.

  • Minerali minori e vitamina C (variabile; in parte perduta durante l’estrazione).

  • Marcatori analitici: titolo in mogroside V (% HPLC), umidità/aw, colore (Lab*), solubilità, ceneri.

Processo di produzione

  • Materie prime: frutti maturi → essiccazionefrantumazione.

  • Estrazione acquosa (talora idroalcolica) → filtrazione/clarificaadsorbimento su resine e desorbimentodecolorazione/de-ionizzazioneconcentrazionespray-drying o standardizzazione liquida.

  • Controlli: purezza mogroside V, microbiologia, metalli/pesticidi, eventuali solventi (se usati). Operare sotto GMP/HACCP.

Proprietà sensoriali e tecnologiche

  • Alta intensità di dolce senza apporto calorico significativo; stabile al calore (cotture da forno) e in ampio intervallo di pH.

  • Sinergie con eritritolo, allulosio, stevia e zuccheri ridotti per modulare onset, corpo e retrogusto.

  • Non apporta massa: spesso richiede bulking agents in sostituzione dello zucchero.

Impieghi alimentari

  • Bevande (anche acide), lattiero-caseari e plant-based, bakery, confetteria a ridotto zucchero, salse/sciroppi, integratori.

  • Dosaggi indicativi (estratto): 50–400 ppm sul prodotto finito (dipende da purezza/target); calibrare con prove pilota.

  • In etichetta: “estratto di frutto del monaco”; nelle miscele, dichiarare i carrier.

Nutrizione e salute

  • Indice glicemico e carico ≈0 per gli estratti puri; utile nei piani di riduzione zuccheri.

  • GRAS negli USA; status regolatorio può variare per Paese: verificare l’ammissibilità in UE e in altre giurisdizioni prima dell’uso come additivo/dolcificante.

  • Evitare claim salutistici non autorizzati.

Profilo dei grassi

  • Grassi trascurabili; SFA, MUFA, PUFA in tracce senza impatto nutrizionale.

  • Nota salute: in generale, un profilo con quota maggiore di MUFA/PUFA rispetto a SFA è considerato favorevole/neutrale per i lipidi ematici; qui non rilevante.

Qualità e specifiche (temi tipici)

  • Mogroside V (%) e mogrosidi totali (HPLC), umidità/aw, solubilità, colore (Lab*), densità apparente (polveri).

  • Microbiologia conforme (TVC, lieviti/muffe), metalli pesanti e residui di pesticidi nei limiti.

  • Sensory: assenza di note amare/erbacee eccessive; profilo pulito e ripetibile.

Conservazione e shelf-life

  • Conservare al fresco/asciutto, al riparo da luce/odori in imballi barriera all’umidità; richiudere bene.

  • Polveri: rischio caking → valutare essiccanti; shelf-life tipica 24–36 mesi se in specifica (FIFO).

Allergeni e sicurezza

  • Il frutto del monaco non è allergene maggiore UE; reazioni avverse rare.

  • In stabilimento: prevenire cross-contamination, gestire CCP per igiene, essiccazione e confezionamento.

Funzioni INCI in cosmesi

  • Denominazioni: Siraitia Grosvenorii Fruit Extract/Monk Fruit Extract.

  • Ruoli: fragrance/flavor, antioxidant/skin conditioning in prodotti leave-on/rinse-off, nel rispetto delle buone pratiche.

Troubleshooting

  • Retrogusto/erbaceo: aumentare purezza del mogroside V, modulare con eritritolo/allulosio/stevia o acidi organici (citrici/lattici).

  • Dolcezza “vuota”/mancanza di corpo: aggiungere bulking (fibre, polioli), piccole quote di zuccheri non riducenti.

  • Instabilità in bevanda (torbidità): filtrare, usare gradi altamente solubili, correggere pH e ioni.

  • Variabilità lotto-lotto: specifiche strette su mogroside V e panel sensoriale.

Sostenibilità e filiera

  • Coltivazione regionale con possibile upcycling di sottoprodotti; gestione reflui verso target BOD/COD.

  • Imballaggi riciclabili; tracciabilità e audit fornitori sotto GMP/HACCP.

Conclusione
L’estratto di frutto del monaco è un dolcificante ad alta intensità stabile e a ridotto apporto calorico, efficace in ampia gamma di matrici. La purezza in mogroside V, la sinergia con co-dolcificanti e la standardizzazione di processo sono chiavi per un profilo sensoriale pulito e costante.


Mini-glossario

  • GIindice glicemico: misura dell’impatto sulla glicemia; per l’estratto puro è ≈0.

  • ADIacceptable daily intake: dose giornaliera ammissibile; definita a livello regolatorio (verificare per Paese).

  • GRASgenerally recognized as safe: status USA per ingredienti considerati sicuri alle condizioni d’uso previste.

  • SFAgrassi saturi: eccessi possono aumentare LDL; qui sono tracce.

  • MUFAgrassi monoinsaturi (es. oleico): in genere neutrali/favorevoli; qui tracce.

  • PUFAgrassi polinsaturi (n-6/n-3): benefici se bilanciati; qui tracce.

  • TFAgrassi trans: evitare quelli industriali; non rilevanti qui.

  • ALAacido α-linolenico (n-3): precursore di EPA/DHA; conversione umana limitata (non rilevante qui).

  • EPA/DHAn-3 a lunga catena: positivi per il profilo cardiometabolico; assenti nell’estratto.

  • MCTtrigliceridi a media catena: non caratteristici dell’ingrediente.

  • GMP/HACCPgood manufacturing practice / hazard analysis and critical control points: quadri igienico–preventivi con CCP definiti.

  • BOD/CODdomanda biochimica/chimica di ossigeno: indicatori dell’impatto dei reflui di processo.

  • FIFOfirst in, first out: rotazione scorte che usa per primi i lotti più vecchi.

Bibliografia__________________________________________________________________________

Kaim U, Gawlik U, Lisiecka K. Why Does Monk Fruit Extract Remain Only Partially Approved in the EU? Regulatory Barriers and Policy Implications for Food Innovation. Foods. 2025 Aug 13;14(16):2810. doi: 10.3390/foods14162810. 

Abstract. Monk fruit extract (Siraitia grosvenorii, MFE) is a natural, non-caloric sweetener known for its intense sweetness, antioxidant properties, and potential metabolic health benefits. While certain aqueous monk fruit decoctions are recognised as non-novel foods in the UK and Ireland due to significant pre-1997 consumption, the European Union (EU) has adopted a more cautious approach under the Novel Food Regulation (EU) 2015/2283. As of October 2024, only one specific aqueous extract of monk fruit has been authorised in the EU under Regulation (EU) 2024/2345, permitting its use in several food categories. However, highly purified mogrosides and non-aqueous extracts remain unapproved due to gaps in toxicological data and the absence of industry-led applications. This review systematically analyses the EU's regulatory barriers, comparing MFE's legal status with other approved non-caloric sweeteners such as steviol glycosides and erythritol, and examining regulatory frameworks in the EU, United States, United Kingdom, and China. Findings indicate that although 18 non-caloric sweeteners are currently authorised in the EU, regulatory constraints continue to hinder the broader approval of MFE, limiting innovation and the availability of natural sweeteners for consumers. Harmonising regulations, leveraging international safety assessments, and promoting industry engagement are recommended to advance MFE's authorisation and support sustainable food innovation in the EU. Addressing these challenges is crucial to ensure that European consumers and industry can benefit from safe, innovative, and health-promoting alternatives to sugar, aligning food policy with broader public health goals and sustainability commitments.

Kaim U, Labus K. Monk Fruit Extract and Sustainable Health: A PRISMA-Guided Systematic Review of Randomized Controlled Trials. Nutrients. 2025 Apr 24;17(9):1433. doi: 10.3390/nu17091433. 

Abstract. Sustainable health approaches promote functional food alternatives that support metabolic well-being while reducing reliance on added sugars and artificial sweeteners. Monk fruit extract (MFE), a natural, non-caloric sweetener, is gaining interest for its potential metabolic benefits, but its effects and regulatory status require further evaluation. Objective: This PRISMA-guided systematic review synthesizes findings from randomized controlled trials (RCTs) assessing the impact of MFE on metabolic health, lipid profiles, inflammation, and regulatory considerations. Methods: The literature search was conducted across PubMed, Scopus, Web of Science, and Cochrane Library, covering studies published between 2015 and 2025. Inclusion criteria were human RCTs evaluating MFE's metabolic effects, while animal studies, reviews, and mixed-intervention trials were excluded. Study quality was assessed using the Cochrane risk of bias tool and the Jadad scale. Results: Five randomized controlled trials met the inclusion criteria, demonstrating that monk fruit extract (MFE) reduces postprandial glucose levels by 10-18% and insulin responses by 12-22%. No severe adverse effects were observed. Regulatory analysis indicated that MFE is approved for use in the United States and China, while its status remains under review in the European Union. Conclusions: MFE shows potential as a functional food ingredient for metabolic health. However, long-term clinical trials and a harmonized regulatory framework must confirm its safety and efficacy within sustainable health strategies.

Shivani, Thakur BK, Mallikarjun CP, Mahajan M, Kapoor P, Malhotra J, Dhiman R, Kumar D, Pal PK, Kumar S. Introduction, adaptation and characterization of monk fruit (Siraitia grosvenorii): a non-caloric new natural sweetener. Sci Rep. 2021 Mar 18;11(1):6205. doi: 10.1038/s41598-021-85689-2. PMID: 33737610; 

Abstract. Siraitia grosvenorii, an herbaceous perennial plant, native to the southern parts of China, is commonly used as a low-calorie natural sweetener. It contains cucurbitane-type triterpene glycosides known as mogrosides. The extract from monk fruit is about 300 times sweeter than sucrose. In spite of its immense importance and International demand, Siraitia grosvenorii (Swingle) is not commercially cultivated outside China since scientific information for cultivation of this species is lacking. Planting material of monk fruit plant was not available in India. Thus, the seeds of monk fruit were introduced in India from China after following International norms. Then the experiments were conducted on different aspects such as seed germination, morphological and anatomical characterization, phenology, flowering and pollination behaviors, and dynamic of mogroside-V accumulation in fruit. The hydropriming at 40 °C for 24 h was found effective to reduce the germination time and to increase the germination rate (77.33%). The multicellular uniseriate trichomes were observed in both the leaf surfaces, however, higher trichomes density was observed in the ventral surface of males compared to females. The microscopic view revealed that the ovary was trilocular (ovary consists three chambers) having two ovules in each chamber or locule. Most of the fruits were globose or oblong type with 5-7 cm in length and 4-7 cm diameter. Mogroside-V content in fruit at 80 days after pollination was 0.69% on dry weight basis. The rate of increase of mogroside-V accumulation from 50 to 70 days was very slow, whereas a sharp increase was observed from 70 to 80 days. The higher receptivity of stigma was observed with fully open flowers. The floral diagram and formula have also been developed for both male and female flowers. Our results highlighted that monk fruit can be grown in Indian conditions.

Muñoz-Labrador A, Azcarate S, Lebrón-Aguilar R, Quintanilla-López JE, Galindo-Iranzo P, Kolida S, Methven L, Rastall RA, Moreno FJ, Hernandez-Hernandez O. High-Yield Synthesis of Transglycosylated Mogrosides Improves the Flavor Profile of Monk Fruit Extract Sweeteners. J Agric Food Chem. 2021 Jan 27;69(3):1011-1019. doi: 10.1021/acs.jafc.0c07267. 

Abstract. Luo Han Guo fruit extract (Siraitia grosvenorii), mainly composed of mogroside V (50%), could be considered a suitable alternative to free sugars; however, its commercial applications are limited by its unpleasant off-notes. In the present work, a central composite design method was employed to optimize the transglycosylation of a mogroside extract using cyclodextrin glucosyltransferases (CGTases) from three different bacteriological sources (Paenibacillus macerans, Geobacillus sp., and Thermoanaerobacter sp.) considering various experimental parameters such as maltodextrin and mogroside concentration, temperature, time of reaction, enzymatic activity, and pH. Product structures were determined by liquid chromatography coupled to a diode-array detector (LC-DAD), liquid chromatography-electrospray ionization-mass spectrometry (LC-ESI-MS), and matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS). Sensory analysis of glucosylated mogrosides showed an improvement in flavor attributes relevant to licorice flavor and aftereffect. Consequently, an optimum methodology was developed to produce new modified mogrosides more suitable when formulating food products as free sugar substitutes.

Ban Q, Cheng J, Sun X, Jiang Y, Guo M. Effect of feeding type 2 diabetes mellitus rats with synbiotic yogurt sweetened with monk fruit extract on serum lipid levels and hepatic AMPK (5' adenosine monophosphate-activated protein kinase) signaling pathway. Food Funct. 2020 Sep 23;11(9):7696-7706. doi: 10.1039/d0fo01860k. 

Abstract. Monk fruit extract (MFE) is a natural sweetener that has been used as an ingredient of food and pharmaceutical products. The effects of feeding synbiotic yogurt fortified with MFE to rats with type 2 diabetes induced by high-fat diet and streptozotocin on serum lipid levels and hepatic AMPK signaling pathway were evaluated. Results showed that oral administration of the synbiotic yogurt fortified with MFE could improve serum lipid levels, respiratory exchange rate, and heat level in type 2 diabetic rats. Transcriptome analysis showed that synbiotic yogurt fortified with MFE may affect the expression of genes involved in binding, catalytic activity, and transporter activity. The Kyoto Encyclopedia of Genes and Genomes enrichment analysis revealed that these differentially expressed genes were related to AMPK signaling pathway, linoleic acid metabolism, and α-linolenic acid metabolism. Western blotting confirmed that synbiotic yogurt fortified with MFE could activate AMPK signaling and improve the protein level of the hepatic gluconeogenic enzyme G6Pase in diabetic rats. The results indicated that MFE could be a novel sweetener for functional yogurt and related products.