Submitted:
24 December 2025
Posted:
25 December 2025
You are already at the latest version
Abstract

Keywords:
1. Introduction
2. Materials and Methods
2.1. Chemicals and Reagents
2.2. Reference Materials and Samples
2.3. Instrumentation
2.2. Total Arsenic Determination
2.3. Arsenic Speciation
2.4. Dietary Exposure Assessment
2.5. Risk Characterization
3. Results and Discussion
3.1. Method Validation for Inorganic Arsenic Determination
3.2. Occurence of Inorganic Arsenic and Organo-Arsenic Species in Rice-Based Beverages
3.3. Dietary Exposure and Risk Characterization
5. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
Abbreviations
| AB | Arsenobetaine |
| AC | Arsenocholine |
| As | Arsenic |
| As(III) | Arsenite |
| As(V) | Arsenate |
| BMDL05 | Benchmark Dose Lower Confidence Limit for a 5% increase in response |
| bw | Body weight |
| CRM | Certified Reference Material |
| DMA | Dimethylarsinic acid |
| EC | European Commission |
| EFSA | European Food Safety Authority |
| FAO | Food and Agriculture Organization of the United Nations |
| FoodEx2 | Food classification and description system developed by EFSA |
| HPLC | High-Performance Liquid Chromatography |
| HPLC-ICP-MS | High-Performance Liquid Chromatography coupled with Inductively Coupled |
| Plasma Mass Spectrometry | |
| IARC | International Agency for Research on Cancer |
| ICP-MS | Inductively Coupled Plasma Mass Spectrometry |
| iAs | Inorganic arsenic |
| JECFA | Joint FAO/WHO Expert Committee on Food Additives |
| KED | Kinetic Energy Discrimination |
| LB | Lower Bound |
| LOD | Limit of Detection |
| LOQ | Limit of Quantification |
| MB | Middle Bound |
| MOE | Margin of Exposure |
| MMA | Monomethylarsonic acid |
| oAs | Organic arsenic |
| RP | Reference Point |
| RSD | Relative Standard Deviation |
| tAs | Total arsenic |
| UB | Upper Bound |
| WHO | World Health Organization |
References
- Muehe, E.M.; Wang, T.; Kerl, C.F.; Planer-Friedrich, B.; Fendorf, S. Rice Production Threatened by Coupled Stresses of Climate and Soil Arsenic. Nat. Commun. 2019, 10, 4985. [CrossRef]
- Cubadda, F.; Aureli, F.; D’Amato, M.; Raggi, A.; Turco, A.C.; Mantovani, A. Speciated urinary arsenic as a biomarker of dietary exposure to inorganic arsenic in residents living in high-arsenic areas in Latium, Italy. Pure Appl. Chem. 2012, 84, 203–214. [CrossRef]
- IARC Arsenic, Metals, Fibres and Dusts; International Agency for Research on Cancer, 2012; ISBN 978-92-832-1320-8.
- European Food Safety Authority (EFSA) Scientific Opinion on Arsenic in Food. EFSA J. 2009, 7, 1351. [CrossRef]
- D’Amore, T.; Miedico, O.; Pompa, C.; Preite, C.; Iammarino, M.; Nardelli, V. Characterization and Quantification of Arsenic Species in Foodstuffs of Plant Origin by HPLC/ICP-MS. Life 2023, 13, 511. [CrossRef]
- European Food Safety Authority (EFSA); Schrenk, D.; Bignami, M.; Bodin, L.; Chipman, J.K.; del Mazo, J.; Grasl-Kraupp, B.; Hogstrand, C.; Hoogenboom, L. (Ron); Leblanc, J.-C.; et al. Update of the Risk Assessment of Inorganic Arsenic in Food. EFSA J. 2024, 22, e8488. [CrossRef]
- European Food Safety Authority (EFSA); Arcella, D.; Cascio, C.; Gómez Ruiz, J.Á. Chronic Dietary Exposure to Inorganic Arsenic. EFSA J. 2021, 19, e06380. [CrossRef]
- Williams, P.N.; Villada, A.; Deacon, C.; Raab, A.; Figuerola, J.; Green, A.J.; Feldmann, J.; Meharg, A.A. Greatly Enhanced Arsenic Shoot Assimilation in Rice Leads to Elevated Grain Levels Compared to Wheat and Barley. Environ. Sci. Technol. 2007, 41, 6854–6859. [CrossRef]
- Signes, A.; Mitra, K.; Burló, F.; Carbonell-Barrachina, A.A. Effect of Cooking Method and Rice Type on Arsenic Concentration in Cooked Rice and the Estimation of Arsenic Dietary Intake in a Rural Village in West Bengal, India. Food Addit. Contam. Part A 2008, 25, 1345–1352. [CrossRef]
- Williams, P.N.; Price, A.H.; Raab, A.; Hossain, S.A.; Feldmann, J.; Meharg, A.A. Variation in Arsenic Speciation and Concentration in Paddy Rice Related to Dietary Exposure. Environ. Sci. Technol. 2005, 39, 5531–5540. [CrossRef]
- European Food Safety Authority (EFSA) Management of Left-Censored Data in Dietary Exposure Assessment of Chemical Substances. EFSA J. 2010, 8, 1557. [CrossRef]
- European Commission Commission Regulation (EU) 2023/915 of 25 April 2023 on Maximum Levels for Certain Contaminants in Food and Repealing Regulation (EC) No 1881/2006 (Text with EEA Relevance); 2025;
- UNI EN 16802:2016 Foodstuffs - Determination of Elements and Their Chemical Species - Determination of Inorganic Arsenic in Foodstuffs of Marine and Plant Origin by Anion-Exchange HPLC-ICP-MS.;
- UNI EN 17851:2023 Foodstuffs - Determination of Elements and Their Chemical Species - Determination of Ag, As, Cd, Co, Cr, Cu, Mn, Mo, Ni, Pb, Se, Tl, U and Zn in Foodstuffs by Inductively Coupled Plasma Mass Spectrometry (ICP-MS) after Pressure Digestion.;
- Aida, T.; Cinzia, L.D.; Raffaela, P.; Laura, D.; Lorenza, M.; Stefania, S.; Deborah, M.; Javier, C.A.F.; Marika, F.; Giovina, C. Italian National Dietary Survey on Adult Population from 10 up to 74 Years Old – IV SCAI ADULT. EFSA Support. Publ. 2022, 19, 7559E. [CrossRef]
- CREA; Turrini, A.; Cinzia, L.D.; Raffaela, P.; Laura, D.; Lorenza, M.; Marika, F.; Giovina, C.; Deborah, M. Italian National Dietary Survey on Children Population from Three Months up to Nine Years Old – IV SCAI CHILD. EFSA Support. Publ. 2021, 18, 7087E. [CrossRef]
- European Food Safety Authority (EFSA); Salfinger, A.; Gibin, D.; Niforou, K.; Ioannidou, S. FoodEx2 Maintenance 2022. EFSA Support. Publ. 2023, 20, 7900E. [CrossRef]
- European Food Safety Authority (EFSA) Opinion of the Scientific Committee on a Request from EFSA Related to A Harmonised Approach for Risk Assessment of Substances Which Are Both Genotoxic and Carcinogenic. EFSA J. 2005, 3, 282. [CrossRef]
- Thompson, M.; Ellison, S.L.R.; Wood, R. Harmonized Guidelines for Single-Laboratory Validation of Methods of Analysis: (IUPAC Technical Report).
- Cantwell, H. The Fitness for Purpose of Analytical Methods (2025);
- European Commission Commission Regulation (EC) No 333/2007 of 28 March 2007 Laying down the Methods of Sampling and Analysis for the Official Control of the Levels of Lead, Cadmium, Mercury, Inorganic Tin, 3-MCPD and Benzo(a)Pyrene in Foodstuffs (Text with EEA Relevance ); 2007; Vol. 088;
- Muehe, E.M.; Wang, T.; Kerl, C.F.; Planer-Friedrich, B.; Fendorf, S. Rice Production Threatened by Coupled Stresses of Climate and Soil Arsenic. Nat. Commun. 2019, 10, 4985. [CrossRef]
- FAO; WHO One-Hundred-and-First Meeting - Joint FAO/WHO Expert Committee on Food Additives (JECFA);
- Meharg, A.A.; Deacon, C.; Campbell, R.C.J.; Carey, A.-M.; Williams, P.N.; Feldmann, J.; Raab, A. Inorganic Arsenic Levels in Rice Milk Exceed EU and US Drinking Water Standards. J. Environ. Monit. 2008, 10, 428. [CrossRef]
- Pedron, T.; Segura, F.; Silva, F.; Souza, A.; Maltez, H.; Batista, B. Essential and Non-Essential Elements in Brazilian Infant Food and Other Rice-Based Products Frequently Consumed by Children and Celiac Population. J. Food Compos. Anal. 2016, 49, 78–86. [CrossRef]
- dos Santos, G.M.; Pozebon, D.; Cerveira, C.; de Moraes, D.P. Inorganic Arsenic Speciation in Rice Products Using Selective Hydride Generation and Atomic Absorption Spectrometry (AAS). Microchem. J. 2017, 133, 265–271. [CrossRef]
- Guillod-Magnin, R.; Brüschweiler, B.J.; Aubert, R.; Haldimann, M. Arsenic Species in Rice and Rice-Based Products Consumed by Toddlers in Switzerland. Food Addit. Contam. Part Chem. Anal. Control Expo. Risk Assess. 2018, 35, 1164–1178. [CrossRef]
- Munera-Picazo, S.; Burló, F.; Carbonell-Barrachina, Á.A. Arsenic Speciation in Rice-Based Food for Adults with Celiac Disease. Food Addit. Contam. Part A 2014, 31, 1358–1366. [CrossRef]
- Signes-Pastor, A.J.; Deacon, C.; Jenkins, R.O.; Haris, P.I.; Carbonell-Barrachina, Á.A.; Meharg, A.A. Arsenic Speciation in Japanese Rice Drinks and Condiments. J. Environ. Monit. 2009, 11, 1930–1934. [CrossRef]
- Permigiani, I.S.; Vallejo, N.K.; Hasuoka, P.E.; Gil, R.A.; Romero, M.C. Arsenic Speciation Analysis in Cow’s Milk and Plant-Based Imitation Milks by HPLC-ICP-MS. J. Food Compos. Anal. 2024, 126, 105898. [CrossRef]
- da Rosa, F.C.; Nunes, M.A.G.; Duarte, F.A.; Flores, É.M. de M.; Hanzel, F.B.; Vaz, A.S.; Pozebon, D.; Dressler, V.L. Arsenic Speciation Analysis in Rice Milk Using LC-ICP-MS. Food Chem. X 2019, 2, 100028. [CrossRef]
- Cano-Lamadrid, M.; Munera-Picazo, S.; Burgos-Hernández, A.; Burló, F.; Carbonell-Barrachina, Á.A. Inorganic and Total Arsenic Contents in Rice and Rice-Based Foods Consumed by a Potential Risk Subpopulation: Sportspeople. J. Food Sci. 2016, 81, T1031-7. [CrossRef]
- González, N.; Calderón, J.; Rúbies, A.; Bosch, J.; Timoner, I.; Castell, V.; Marquès, M.; Nadal, M.; Domingo, J.L. Dietary Exposure to Total and Inorganic Arsenic via Rice and Rice-Based Products Consumption. Food Chem. Toxicol. 2020, 141, 111420. [CrossRef]
- Leclercq, C.; Arcella, D.; Piccinelli, R.; Sette, S.; Le Donne, C.; Turrini, A.; INRAN-SCAI 2005-06 Study Group The Italian National Food Consumption Survey INRAN-SCAI 2005-06: Main Results in Terms of Food Consumption. Public Health Nutr. 2009, 12, 2504–2532. [CrossRef]
- FAO Thinking about the Future of Food Safety. A Foresight Report; FAO: Rome, Italy, 2022; ISBN 978-92-5-135783-5.



| ICP-MS Parameters | |
| ICP RF Power | 1600 W |
| Nebulizer Gas Flow STD/KED | 1.03 l min-1 |
| Plasma Gas flow (Argon) | 15 l min-1 |
| Auxiliary Gas flow (Argon) | 1.2 l min-1 |
| Helium KED Gas Flow | 4.20 ml min-1 |
| Internal standards | 103Rh |
| Analytical masses | 75As (STD), 75As (KED), 35Cl |
| RPq | 0.25 (0.8 for 35Cl, HPLC) |
| Dwell time | 50 ms (for HPLC 750 ms and 250 ms for As and Cl, respectively) |
| Flow rate | 1.0 ml min-1 |
| Chromatographic conditions | |
| Column | Hamilton PRP – X100 (4.6x250mm, 5 µm) (Reno, Nevada, USA) |
| Column temperature | 18°C |
| Injection volume | 50 µl |
| Mobile Fase | 35 mMol (NH4)2CO3 in 3% (v/v) CH3OH, pH 10.3 (adjusted with aqueous ammonia) |
| Flow rate | 1.0 ml min-1 |
| Elution | Isocratic, 12 min |
| Arsenic species | AB, DMA, MMA, As(V) |
| Total As | DMA | MA | iAs | Σspecies | Mass balance1 (%) | |
|---|---|---|---|---|---|---|
| ERM-BC211 (n=12) |
262 ± 7 (260 ± 13)2 |
124 ± 3 (119 ± 13)2 |
17 ± 2 |
123 ± 6 (124 ± 11)2 |
264 ± 8 | 101 |
| NIST SRM 1568b (n=6) |
292 ± 8 (285 ± 14)2 |
179 ± 2 (180 ± 12)2 |
11.0 ± 0.2 (11.6 ± 3.5)2 |
99 ± 1 (92 ± 10)2 |
89 ± 3 | 99 |
| NMIJ CRM 7532-a (n=12) |
321 ± 6 (320 ± 10)2 |
17.8 ± 2.2 (18.6 ± 0.8)2 |
3 ± 1 |
301 ± 24 (298 ± 8)2 |
322 ± 26 | 100 |
| % rice | tAs | Σspecies | Recovery % |
DMA | MMA | iAs | % iAs | |||
|---|---|---|---|---|---|---|---|---|---|---|
| Rice and Almond | ||||||||||
| A | 14 | 24 | 20 | 83 | 3 | <LOQ | 17 | 85 | ||
| B | 16 | 58 | 43 | 74 | 28 | 0.9 | 14 | 33 | ||
| Rice hazelnut and cocoa | ||||||||||
| A | 14 | 20 | 18 | 90 | 5 | <LOQ | 13 | 72 | ||
| Rice and coconut | ||||||||||
| A | 14 | 20 | 15 | 75 | 2 | <LOQ | 13 | 87 | ||
| B | 17 | 21 | 22 | 105 | 2 | <LOQ | 20 | 91 | ||
| C | 17 | 25 | 24 | 96 | 2 | <LOQ | 22 | 92 | ||
| D* | 7.7 | 9 | 8 | 89 | 1 | <LOQ | 7 | 88 | ||
| Brown rice | ||||||||||
| A | 14 | 20 | 19 | 97 | 2 | <LOQ | 17 | 89 | ||
| B | 17 | 16 | 14 | 85 | 1 | <LOQ | 13 | 96 | ||
| Rice | ||||||||||
| A | 17 | 22 | 21 | 95 | 4 | <LOQ | 17 | 81 | ||
| B | 17 | 19 | 18 | 95 | 3 | <LOQ | 15 | 83 | ||
| C* | 17 | 22 | 21 | 95 | 3 | <LOQ | 18 | 86 | ||
| D | 14 | 20 | 21 | 105 | 3 | <LOQ | 18 | 86 | ||
| E | 14 | 23 | 22 | 96 | 3 | <LOQ | 19 | 86 | ||
| F | 17 | 17 | 18 | 106 | 3 | <LOQ | 15 | 83 | ||
| G | 14 | 18 | 14 | 79 | 3 | <LOQ | 11 | 76 | ||
| H | 16 | 10 | 9 | 87 | 1 | <LOQ | 8 | 89 | ||
| I | 17 | 18 | 15 | 84 | 2 | <LOQ | 13 | 90 | ||
| L | 14 | 14 | 12 | 88 | 2 | <LOQ | 11 | 85 | ||
| M | 17 | 25 | 23 | 92 | 2 | 0.7 | 21 | 90 | ||
| N | 12 | 21 | 24 | 113 | 1 | <LOQ | 23 | 96 | ||
| O | 13.7 | 33 | 28 | 84 | 3 | 0.6 | 24 | 85 | ||
| P | 14 | 16 | 14 | 91 | 2 | <LOQ | 12 | 83 | ||
| Q | 14 | 15 | 13 | 89 | 1 | 0.6 | 11 | 87 | ||
| R** | 17 | 20 | 15 | 77 | 3 | <LOQ | 13 | 82 | ||
| Mean | 15 | 23 | 21 | 91 | 3 | 1 | 15 | 84 | ||
| Median | 14 | 22 | 20 | 90 | 2 | 1 | 15 | 86 | ||
| Min-max | 7.7-17 | 9-58 | 8-43 | 74-113 | 1-28 | <LOQ-1 | 7-24 | 33-97 | ||
| N | iAs | MA | DMA | tAs | Ref |
|---|---|---|---|---|---|
| 25 | 7-24 | 1 | 1-28 | 9-58 | This study |
| 9 | 12.8 ± 0.4 | 29.5 ± 1.1 | [30] | ||
| 4 | 10.22-19.47 | <LOD-22.57 | <LOD-1.24 | 14.57-46.94 | [31] |
| 15 | 7.1-20.7 | <LOD-0.82 | 1.1-12.7 | 10.2-33.2 | [24] |
| 6 | 4.3-15.6 | 4.3-20.3 | [32] | ||
| 15 | 4.8-34.0 | 0.3-0.8 | 0.4-9.8 | 5.2-28.0 | [27] |
| 4 | 7.3-17.2 | <LOD | <LOD - 6.2 | 8.4-18.9 | [28] |
| 3 | 16.8-26.6 | 16.4-57.0 | [25] | ||
| - | 13.1 | 16.6 | [33] | ||
| 43* | 8-17 | [7] |
| Chronic Rice drink Consumption (g/kg bw per day) | |||||||
| Italia | Europe | ||||||
| Mean | Mean (min-max) | ||||||
| N | All subjects | consumers | N (range survey) | All subjects | consumers | ||
| Toddler | 5 | 0.28 | 18.0 | 53 (1-22) | 0.13 (0.01-0.50) | 13.6 (3.36-19.3) | |
| Other children | 2 | 0.05 | 8.51 | 64 (1-13) | 0.05 (0.0-0.19) | 7.67 (0.02-18.2) | |
| Adolescents | 2 | 0.04 | 4.95 | 33 (1-8) | 0.02 (0.0-0.05) | 2.84 (1.15-4.95) | |
| Adults | 16 | 0.05 | 2.07 | 119 (1-27) | 0.01 (0.0-0.05) | 1.91 (0.01-2.90) | |
| Elderly | 1 | 0.01 | 1.04 | 20 (1-4) | 0.01 (0.0-0.03) | 1.37 (0.49-3.31) | |
| Italian dietary exposure (μg/kg bw per day) | ||||||
| Rice drink* | Total Diet** | |||||
| All subject | Consumers | All subject | ||||
| Mean | MOE | Mean | MOE | Mean_ LB | Mean_ UB | |
| Toddler | 0.0042 | 14 | 0.27 | 0.2 | 0.3 | 0.61 |
| Other children | 0.0008 | 80 | 0.13 | 0.5 | 0.15 | 0.32 |
| Adolescents | 0.0005 | 112 | 0.07 | 0.8 | 0.08 | 0.16 |
| Adults | 0.0007 | 87 | 0.03 | 1.9 | 0.03 | 0.12 |
| Elderly | 0.0001 | 598 | 0.02 | 3.8 | 0.06 | 0.11 |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2025 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).