| Literature DB >> 36136464 |
Raluca Maria Hlihor1, Mihaela Roșca1, Laura Hagiu-Zaleschi1, Isabela Maria Simion1, Gabriel Mihăiță Daraban2, Vasile Stoleru1.
Abstract
Accelerating heavy metal pollution is a hot issue due to a continuous growth in consumerism and increased activities in various global industries. Soil contamination with heavy metals has resulted in their incorporation into the human food web via plant components. Accumulation and amplification of heavy metals in human tissues through the consumption of medicinal plants can have hazardous health outcomes. Therefore, in this critical review we aim to bring together published information on this subject, with a special highlight on the knowledge gaps related to heavy metal stress in medicinal plants, their responses, and human health related risks. In this respect, this review outlines the key contamination sources of heavy metals in plants, as well as the absorption, mobilization and translocation of metal ions in plant compartments, while considering their respective mechanisms of detoxification. In addition, this literature review attempts to highlight how stress and defensive strategies operate in plants, pointing out the main stressors, either biotic or abiotic (e.g., heavy metals), and the role of reactive oxygen species (ROS) in stress answers. Finally, in our research, we further aim to capture the risks caused by heavy metals in medicinal plants to human health through the assessment of both a hazard quotient (HQ) and hazard index (HI).Entities:
Keywords: detoxification mechanisms; medicinal plants; plant responses to abiotic stress; reactive oxygen species; toxic metals
Year: 2022 PMID: 36136464 PMCID: PMC9504071 DOI: 10.3390/toxics10090499
Source DB: PubMed Journal: Toxics ISSN: 2305-6304
Figure 1A structured literature review according to data from Web of Science database comprising of the link between plant detoxification mechanisms and the risks posed to human health given the safety levels of heavy metals in plants.
Figure 2Sources of plants contamination with heavy metals and uptake, mobility and translocation of ions in plant parts.
Heavy metals contents in medicinal plants compartments.
| Plant sp. | Plant Samples Origin | Plant Part | Heavy Metals Ions Concentration (mg/kg) | Refs. | |||||
|---|---|---|---|---|---|---|---|---|---|
| Cd(II) | Pb(II) | Cu(II) | Zn(II) | Ni(II) | Mn(II) | ||||
|
| Qingchengzi mining area, China | roots | 0.15–1.22 | 43–83.2 | 1.7–3.8 | 43.9–212.7 | - | - | [ |
| aerial parts | 0.12–0.79 | 5.5–42.4 | 1.6–2.9 | 36.6–151.8 | - | - | |||
|
| roots | 0.93–2.20 | 128.4–212.2 | 7.3–8.9 | 35.9–127.2 | - | - | ||
| aerial parts | 2.11–5.18 | 51.7–71.7 | 5.8–11.5 | 23.1–58.2 | - | - | |||
|
| roots | 0.31–15.0 | 65.9–344.7 | 14–18.4 | 90.1–651 | - | - | ||
| aerial parts | 0.30–14.5 | 20.9–181.8 | 7.6–17 | 70–344.9 | - | - | |||
|
| roots | 0.83 | 25.8 | 11.7 | 129.8 | - | - | ||
| aerial parts | 0.37 | 21.8 | 9.9 | 73.1 | - | - | |||
| Laboratory | roots | 0.13–0.15 | 2.305–2.989 | 15.164–18.420 | 28.787–39.604 | 3.689–5.983 | 81.35–97.37 | [ | |
| aerial parts | 0.10–0.11 | 0.412–0.753 | 8.979–22.241 | 14.463–14.957 | 0.898–0.983 | 8.91–9.25 | |||
| roots | 0.11–0.24 | 1.770–7.247 | 25.326–25.284 | 51.72–142.23 | 3.307–16.155 | 60.41–272.78 | |||
| aerial parts | 0.10–0.12 | 0.345–1.015 | 17.194–27.875 | 21.445–22.577 | 1.229–2.485 | 24.80–25.21 | |||
| roots | 0.12–0.13 | 1.198–2.211 | 16.459–29.079 | 23.569–27.267 | 3.625–4.481 | 54.50–70.81 | |||
| aerial parts | 0.08–0.11 | 0.648–0.834 | 10.453–12.709 | 18.798–19.370 | 1.208–2.399 | 16.54–32.05 | |||
| roots | 0.098–0.10 | 0.481–1.818 | 8.495–17.822 | 23.755–23.789 | 0.595–3.412 | 41.27–57.97 | |||
| aerial parts | 0.103–0.11 | 0.390–0.793 | 10.350–14.509 | 16.278–19.621 | 1.445–1.837 | 19.66–41.13 | |||
| roots | 0.116–0.13 | 0.286–1.893 | 6.173–35.347 | 21.178–32.894 | 0.716–3.927 | 33.65–66.64 | |||
| aerial parts | 0.09–0.12 | 0.551–2.180 | 10.397–23.762 | 17.441–26.995 | 1.052–4.821 | 13.67–78.67 | |||
| Agricultural fields contaminated by the | roots | 2.3–160.9 | 20.5–1566.9 | - | 46.8–1755.9 | - | - | [ | |
| stems | 3.1–27.1 | 71.2–2157.9 | - | 74.9–683.2 | - | - | |||
| leaves | 28.4–113.2 | 89.97–5784.7 | - | 80.2–2881.9 | - | - | |||
| flowering stalks | 0.62–15.6 | 31.4–1147.3 | - | 57.1–349.3 | - | - | |||
|
| Commercially available teas produced in different | flowers | 0.08–0.81 | 0.56–1.28 | 4.09–11.4 | 63.4–109 | - | 54.7–184 | [ |
|
| leaves | 36.3–202 | 1.50–4.77 | 9.35–22.6 | 30.7–116 | - | 1.15–1.76 | ||
|
| From | flowers | 0.02–0.04 | 0.09–0.42 | 11.00–15.00 | - | - | - | [ |
|
| flowers | 0.01 | 0.14–0.24 | 4.00–24.00 | - | - | - | ||
|
| flowers | 0.01–0.02 | 0.04–0.49 | 11.00–17.00 | - | - | - | ||
|
| aerial parts | 0.01 | 0.60–2.03 | 10.00–15.00 | - | - | - | ||
|
| flowers | 0.01–0.05 | 0.01–0.32 | 0.00–17.00 | - | - | - | ||
|
| leaves | 0.02–0.12 | 0.08–0.09 | 127–142 | - | - | - | ||
|
| aerial parts | 0.05 | 0.14–0.95 | 131–348 | - | - | - | ||
|
| aerial parts | 0.06–0.07 | 0.04 | 198–201 | - | - | - | ||
|
| leaves | 0.01–0.10 | 0.18–1.28 | 157–309 | - | - | - | ||
|
| leaves | 0.05–0.07 | 0.06–0.11 | 122–133 | - | - | - | ||
|
| aerial parts | 0.03–0.09 | 0.07–0.11 | 131–191 | - | - | - | ||
|
| Ash-shouback south region, Jordan | aerial parts | BLD | 33.03 | 13.23 | 16.18 | 23.85 | 15.52 | [ |
|
| aerial parts | BLD | 1.26 | 10.40 | 15.80 | BLD | 14.7 | ||
|
| aerial parts | BLD | BLD | 7.66 | 114.91 | 0.47 | 44.0 | ||
|
| Site close to a country road inside the Canale | flowers | 0.03/0.27 | 2.88/3.96 | 6.27/9.36 | 21.33/26.46 | 0.40/5.80 | - | [ |
| roots | 0.02/0.77 | 3.40/73.30 | 6.45/8.75 | 29.82/25.60 | 0.04/1.12 | - | |||
| cauline leaves | 0.02/0.72 | 0.24/7.82 | 2.71/10.13 | 20.66/29.33 | 0.32/1.32 | - | |||
| stalk | 0.02/0.27 | 0.02/70.30 | 1.09/2.25 | 18.10/26.70 | 0.02/0.09 | - | |||
|
| flowers | 0.09/0.02 | 0.47/1.55 | 1.77/2.75 | 10.45/8.47 | 0.09/0.02 | - | ||
| roots | 0.76/0.81 | 0.35/30.32 | 3.97/6.76 | 14.91/39.17 | 0.04/0.05 | - | |||
| basal leaves | 0.34/0.96 | 0.74/8.60 | 0.98/5.28 | 9.14/17.20 | 0.39/0.36 | - | |||
| stalk | 0.43/0.39 | 0.13/0.61 | 0.36/2.00 | 6.76/9.24 | 0.02/0.91 | - | |||
|
| flowers | 0.02/3.12 | 0.59/1.89 | 4.20/0.12 | 37.42/18.87 | 0.02/3.45 | - | ||
| roots | 0.12/0.84 | 0.52/8.48 | 7.80/17.38 | 14.97/67.13 | 0.19/0.44 | - | |||
| cauline leaves | 0.01/0.01 | 0.77/2.91 | 1.93/4.94 | 6.35/20.25 | 0.39/0.02 | - | |||
| stalk | 0.02/0.99 | 0.04/2.10 | 0.79/2.96 | 2.67/13.38 | 0.02/0.06 | - | |||
|
| flowers | 0.07/0.02 | 0.10/0.83 | 1.21/6.20 | 2.12/19.91 | 0.11/0.50 | - | ||
| roots | 0.05/0.08 | 1.83/3.50 | 7.48/9.24 | 3.72/36.88 | 0.53/0.02 | - | |||
| cauline leaves | 0.02/0.15 | 0.56/8.81 | 3.79/8.30 | 3.60/27.31 | 0.17/0.29 | - | |||
| stalk | 0.02/0.02 | 0.26/9.21 | 3.27/9.24 | 1.49/15.60 | 0.02/0.02 | - | |||
|
| flowers | 3.51/0.05 | 0.11/0.58 | 3.48/4.81 | 18.75/15.29 | 1.11/0.79 | - | ||
| roots | 0.17/0.19 | 0.40/4.82 | 3.67/7.86 | 11.77/17.7 | 0.49/0.50 | - | |||
| basal leaves | 0.02/1.16 | 0.29/4.81 | 1.76/21.25 | 23.27/53.90 | 0.02/1.16 | - | |||
| cauline leaves | 0.02/0.27 | BLD | 2.59/6.40 | 3.31/66.35 | 0.45/0.33 | - | |||
| stalk | 0.15/0.11 | 0.02/4.32 | 2.29/2.84 | 5.34/35.75 | 0.33/0.19 | ||||
|
| “Dealul | flowers | 0.16–0.68 | - | 22.56–43.62 | 23.66–30.64 | - | 11.91–20.67 | [ |
| leaves | 0.078–0.84 | - | 0.465–5.602 | 30.2–75.62 | - | 194.6–254.2 | |||
| stems | 0.42–4.65 | - | 17.64–19.85 | 13.16–17.64 | - | 7.25–15.74 | |||
|
| Sites from the Rhodope Mountains | aerial parts | 0.35–0.92 | 0.7–1.9 | 5.6–9.1 | 21–47 | 0.7–11.7 | 12–69 | [ |
| Soil from | roots | - | - | 8.50 | 49.5 | - | 81.0 | [ | |
| Van Lake Basin Van Turkey | aerial parts | 0.15 | 0.14 | 10.80 | 18.84 | - | 20.04 | [ | |
|
| Meža Valley (Slovenia) | aerial parts | 0.2–0.9 | 1.1–15.5 | 5.0–18.7 | 29.1–73.5 | - | 17.3–318.0 | [ |
|
| aerial parts | 0.2–4.2 | 2.1–25.1 | 6.3–11.7 | 26.9–103.4 | - | 7.8–75.4 | ||
|
| aerial parts | 0.3–5.7 | 1.5–15.9 | 4.2–9.9 | 23.2–211.7 | - | 16.6–163.2 | ||
|
| aerial parts | 0.3–16 | 1.4–195.9 | 4.2–9.3 | 33.3–799.5 | - | 10.3–75.4 | ||
| Kuyavia- | inflorescences | - | 4.1–6.80 | 21.75–30.85 | 64.75–106.2 | - | 124.3–338.6 | [ | |
| leaves + stems | - | 12.00–17.90 | 7.80–16.20 | 41.95–116.9 | - | 128.0–289.1 | |||
| roots | - | 5.00–20.80 | 22.00–28.20 | 34.05–109.4 | - | 119.6–264.6 | |||
|
| Sites in Spreča river valley, Bosnia and Herzegovina | aerial parts | 0.022 | 0.04 | 13.81 | 31.8 | 1.7 | - | [ |
|
| aerial parts | 0.034 | 3.36 | 16.92 | 34.5 | 42.9 | - | ||
|
| aerial parts | 0.019 | 1.31 | 13.87 | 32.2 | 7.6 | - | ||
|
| aerial parts | BLD | BLD | 12.9 | 38.9 | 5.2 | - | ||
|
| aerial parts | BLD | BLD | 12.1 | 36.2 | 6.1 | - | ||
|
| Natural | flower | - | - | 12.82 | 18.15 | - | 24.38 | [ |
|
| flower | - | - | 20.35 | 22.36 | - | 36.60 | ||
|
| aerial parts | - | - | 23.95 | 49.65 | - | 21.80 | ||
|
| aerial parts | - | - | 20.50 | 32.40 | - | 49.39 | ||
|
| aerial parts | - | - | 15.77 | 25.12 | - | 40.65 | ||
|
| aerial parts | - | - | 23.06 | 39.84 | - | 13.84 | ||
|
| flower | - | - | 35.50 | 31.80 | - | 20.61 | ||
|
| Laboratory studies | seeds | 0.11 | BLD | 11.61 | 50.58 | 1.13 | 18.81 | [ |
| roots | 0.14 | BLD | 7.44 | 15.03 | 2.89 | 17.56 | |||
| Landfill site | root | 0.294–1.63 | 1.335–18.03 | 29.35–75.82 | 39.50–166.2 | 8.84–77.66 | 138.0–560.7 | [ | |
| stalk | 0.620–2.077 | 0.029–4.141 | 3.331–33.85 | 40.82–230.6 | 0.241–70.65 | 38.10–237.2 | |||
| leaf | 0.609–2.190 | 0.639–6.240 | 17.91–62.86 | 58.30–721.9 | 6.77–163.5 | 172– | |||
|
| Muthi shops and open street markets in | tuber | 0–0.04 | 0.58–1.50 | 7.83–11.90 | 27.15–40.67 | 2.54–2.59 | 182.25–234.79 | [ |
|
| stem bark | 0–0.04 | 0.24–1.96 | 1.96–3.47 | 3.99–5.16 | 2.47–2.52 | 55.14– | ||
|
| root | 0.24–0.28 | 3.69–5.16 | 4.58–19.70 | 51.68–107.33 | 3.82–6.28 | 169– | ||
|
| root | 0.27–0.39 | 0.37–4.54 | 13.00–19.33 | 45.25–55.93 | 12–30 | 238–248.69 | ||
|
| bulb | 0.01–0.06 | 0.22–1.23 | 5.61–11.25 | 34.07–102.57 | 4.24–10 | 60.69–145.76 | ||
|
| whole plant | 0.11–0.15 | 0–3.93 | 6.25–7.15 | 20.48–24.37 | 4.56–6.55 | 144– | ||
|
| bulb | 0–0.01 | 0.1–0.42 | 2.46–3.71 | 19.79–25.28 | 398–4.89 | 41.86–49.57 | ||
|
| root | 0.01 | 2.87–3.62 | 5.78–6.61 | 34.56–36.11 | 5.78–6.61 | 44.77–55.28 | ||
|
| Historical | leaf | 0.005–0.053 | 2.18–25.63 | 1.88–15.21 | 12.66–31.01 | 0.211–1.29 | - | [ |
|
| leaf | 0.002–0.078 | 1.117–13.79 | 5.70–13.84 | 20.45–35.49 | 0.108–0.812 | - | ||
|
| 0.3 | 10 | 20 | 50 | - | - | [ | ||
BLD—below limit of detection.
Figure 3Human exposure to heavy metals from phytotherapy and cosmetics.
Figure 4Schematic representation of stress factors, their action on plants/herbs and defense mechanisms.
Figure 5Main reactions of metalloenzymes involved in ROS metabolism in plant cells.
Heavy metals effects on enzymatic and non-enzymatic antioxidants in medicinal plants.
| Plant | Metals Ions | Level of Heavy Metals | Plant Growth System | Plant | Enzymatic | Nonenzymatic Antioxidant | Refs. |
|---|---|---|---|---|---|---|---|
|
| Cu(II) | 50–600 µM | hydroponic | root and leaves | SOD↑ | MDA↑ | [ |
|
| Cd(II) | 0–200 µM | hydroponic | root, stem, | SOD↓ | MDA↑ | [ |
|
| Cr(III) | 0–30,512 µg/g | soil | root, stem, | SOD↑ | MDA↑ | [ |
|
| Cr(III) | 0, 0.5, 1 mM | soil | leaves | SOD↑ | Proline↑ | [ |
| roots | - | Citric acid↑ | |||||
|
| soil | leaves | SOD↑ | Proline↑ | |||
| root | - | Citric acid↑ | |||||
|
| Cd(II) | 0, 0.045, and 0.09 mM | hydroponic culture | root, stem and leaves | GR↑ | GSH↑ | [ |
|
| Fe(II) | 25, 50, 100 and 200 µM | hydroponic culture | root and leaves | SOD↑ | - | [ |
|
| Co(II) | 0, 0.01 and 1 mM | hydroponic | plants | SOD↓ | TBARS↑ | [ |
|
| Cd | 0, 100 and 500 µM | hydroponic | plants | SOD↑ | Proline↑ | [ |
| Pb | 0, 500, 1000, 1500 mg/kg | soil | plants | CAT↑ | Flavonoid↑ | [ | |
|
| Ni(II) | 100, 250, and 500 μM | hydroponic system | roots and leaves | CAT↑ | Soluble proteins | [ |
| Cd(II) and Al(III) | 0–100 mg/kg | soil | epigeal parts | DPPH↑ | Phenols↑ | [ | |
|
| Mn(II) | 0 and 1000 μM | soil | shoots | APX↑ | AsA ↓ | [ |
| Cd(II) | 0–40 mg/kg | soil | leaves | CAT↑ | Proline↑ | [ | |
|
| Cd(II) | 0, 10 μM | hydroponic | shoots | PAL↓ | Total soluble phenols↑ | [ |
| root | PAL↓ | Total soluble phenols↑ | |||||
| Ni(II) | 0–500 ppm | soil mixed with perlite | leaves | - | Anthocyanins↓ | [ | |
| Cu(II) | 0–1000 ppm | soil mixed with perlite | leaves | - | Anthocyanins↓ | ||
| Zn(II) | 0–3000 ppm | soil mixed with perlite | leaves | - | Anthocyanins↓ | ||
|
| Cd(II) | 0–360 μM | hydroponic | flowers | SOD↑ | MDA↑ | [ |
|
| Zn(II) | 43.2–343.2 mg/kg | orthic luvisol | anthodia | - | Apigenin↑ | [ |
|
| Pb(II) | 0–75 μM | hydroponic | leaves | - | Proline↑ | [ |
|
| Ni(II) | 0–500 ppm | soil mixed | leaves | SOD↑ | Anthocyanins↓ | [ |
| Cu(II) | 0–1000 ppm | soil mixed with perlite | leaves | SOD↑ | Anthocyanins↓ | ||
| Zn(II) | 0–3000 ppm | soil mixed with perlite | leaves | SOD↑ | Anthocyanins↓ | ||
| Cd(II) | 0–40 mg/kg | soil | leaves | SOD↑ | Carotenoids↑ | [ | |
| Pb(II) | 0–180 mg/kg | soil | leaves | SOD↑ | Carotenoids↑ | ||
| Cd(II), Pb(II) and Zn(II) | 0.25, 16 and 46.03 mg/kg vs. and 14, 142 and 207 mg/kg | soil | shoots | CAT↑ | MDA↑ | [ | |
| Cd(II), Pb(II) and Zn(II) | 0.25, 16 and 46.03 mg/kg vs. and 14, 142 and 207 mg/kg | soil | shoots | CAT↓ | MDA↓ | ||
|
| Cd(II) | 0–54.60 mg/kg | soil | roots and aerial parts | SOD↑ | Polysaccharide↑ | [ |
|
| Cd(II) | 2.7–301.2 mg/kg | metalliferous and non-metalliferous soil | leaves | POD↑ | GSH↑ | [ |
|
| Pb(II) | 0–400 μM | hydroponic | leaves | APX↑ | Protein↓ | [ |
|
| Cd(II) | 0–200 mg/kg | soil | leaves | APX↑ | H2O2↑ | [ |
Enzymatic antioxidants: SOD—Superoxide dismutase; POD—peroxidase; CAT—Catalase; APX—ascorbate peroxidase; GPX—Guaiacol peroxidase; GR—glutathione reductase; DPPH—radical scavenging activity; GST—Glutathione S-transferase; GPO—Guaiacol peroxidase; MDHAR—Monodehydroascorbate reductase; DHAR—dehydroascorbate reductase; PAL—Phenylalanine ammonia-lyase activity; PPO—Polyphenol oxidase; GSH-Px—Glutathione peroxidase; NR—Nitrate reductase; p5CS—Pyrroline-5-carboxylate synthase. Non-enzymatic antioxidants: AsA—Ascorbic acid, NPT—Non-protein thiols; MDA: Malondialdehyde; H2O2—Hydrogen peroxide; GSH—Reduced glutathione; GSSG—Oxidized glutathione; ASC—Ascorbate; DHASC—Dehydroascorbate; TBARS—Thiobarbituric acid reactive substances; LPO—Lipid peroxidation; NO—Nitrite-derived nitric oxide; PC—Phytochelatins; ↑—increase; ↓—decrease.
Equations used in risk assessments of heavy metals in food products.
| Risk Equations | Equation Form | Equation Parameters | Refs. | |
|---|---|---|---|---|
| Reference Dose, RfD |
| (2) | [ | |
| Potential Dose, PD | (3) | [ | ||
| Average Daily Dose, ADD |
| (4) | [ | |
| Average Daily Dose, ADDor Estimated Daily Intake, EDI |
| (5) | [ | |
|
| (6) | |||
| Hazard Quotient, HQ |
| (7) | [ | |
|
| (8) | |||
| Hazard Index, HI |
| (9) | [ | |
| Risk for carcinogenic chemical substances |
| (10) | [ | |
| Cumulative risk |
| (11) | [ | |
Hazard quotient (HQ) and hazard index (HI) of heavy metals in the medicinal plants or associated products.
| Herbal/Herbal Mix/Product | Heavy Metals Detected | HQ | HI | Refs. | |
|---|---|---|---|---|---|
| Metal Ion | Concentration (mg/kg) | ||||
| Cr(III) | 4.58 | 9.41 × 10−5 | 8.84 × 10−2 | [ | |
| Ni(II) | 4.12 | 6.35 × 10−3 | |||
| Cu(II) | 24.73 | 1.91 × 10−2 | |||
| Zn(II) | 58.11 | 5.97 × 10−3 | |||
| As(II) | 0.19 | 1.91 × 10−2 | |||
| Cd(II) | 0.45 | 1.37 × 10−2 | |||
| Hg(II) | 0.20 | 8.72 × 10−3 | |||
| Pb(II) | 1.74 | 1.54 × 10−2 | |||
| Cr(III) | 0.76 | 2.61 × 10−5 | 7.68 × 10−2 | ||
| Ni(II) | 4.53 | 1.16 × 10−2 | |||
| Cu(II) | 10.27 | 1.32 × 10−2 | |||
| Zn(II) | 14.92 | 2.55 × 10−3 | |||
| As(II) | 0.10 | 8.59 × 10−3 | |||
| Cd(II) | 0.06 | 3.02 × 10−3 | |||
| Hg(II) | 0.36 | 2.62 × 10−2 | |||
| Pb(II) | 0.79 | 1.16 × 10−2 | |||
|
| Cr(III) | 0.05 | 6.61 × 10−3 | 9.53 × 10−2 | |
| Ni(II) | 5.27 | 4.87 × 10−3 | |||
| Cu(II) | 82.93 | 3.83 × 10−2 | |||
| Zn(II) | 50.49 | 3.11 × 10−3 | |||
| As(II) | 0.04 | 4.47 × 10−3 | |||
| Cd(II) | 0.24 | 4.47 × 10−3 | |||
| Hg(II) | 0.20 | 5.22 × 10−3 | |||
| Pb(II) | 7.01 | 3.71 × 10−2 | |||
| Cr(III) | 0.28 | 5.06 × 10−6 | 3.87 × 10−2 | ||
| Ni(II) | 2.98 | 3.98 × 10−3 | |||
| Cu(II) | 13.56 | 9.06 × 10−3 | |||
| Zn(II) | 13.21 | 1.18 × 10−3 | |||
| As(II) | 0.03 | 3.04 × 10−3 | |||
| Cd(II) | 0.26 | 6.84 × 10−3 | |||
| Hg(II) | 0.22 | 8.07 × 10−3 | |||
| Pb(II) | 0.86 | 6.55 × 10−3 | |||
|
| Pb(II) | 3.30 | 0.1269 | 0.7229 | [ |
| Cr(III) | 10.70 | 0.5487 | |||
| Cu(II) | 12.3 | 0.0473 | |||
|
| Pb(II) | 3.75 | 0.2875 | 1.228 | |
| Cr(III) | 8.45 | 0.86 | |||
| Cu(II) | 10.5 | 0.0807 | |||
|
| Pb(II) | 4.00 | 0.3075 | 1.472 | |
| Cr(III) | 10.60 | 1.08 | |||
| Cu(II) | 11.05 | 0.0850 | |||
|
| Pb(II) | 4.00 | 0.3075 | 1.438 | |
| Cr(III) | 10.15 | 1.04 | |||
| Cu(II) | 11.85 | 0.091 | |||
|
| Pb(II) | 3.00 | 0.23 | 0.776 | |
| Cr(III) | 5.35 | 0.54 | |||
| Cu(II) | 0.81 | 0.006 | |||
|
| Pb(II) | 3.92 | 0.3 | 0.876 | |
| Cr(III) | 5.60 | 0.57 | |||
| Cu(II) | 0.86 | 0.0065 | |||
| Argy Wormwood | Pb(II) | 4.713 | 0.316 | 1.326 | [ |
| Cd(II) | 1.051 | 0.247 | |||
| As(II) | 0.884 | 0.692 | |||
| Hg(II) | 0.027 | 0.063 | |||
| Cu(II) | 16.39 | 0.008 | |||
| Plantain Herb | Pb(II) | 3.110 | 0.209 | 1.541 | |
| Cd(II) | 0.269 | 0.063 | |||
| As(II) | 1.506 | 1.179 | |||
| Hg(II) | 0.036 | 0.085 | |||
| Cu(II) | 11.44 | 0.005 | |||
| Peppermint | Pb(II) | 1.836 | 0.123 | 0.653 | |
| Cd(II) | 0.116 | 0.027 | |||
| As(II) | 0.329 | 0.257 | |||
| Hg(II) | 0.103 | 0.242 | |||
| Cu(II) | 9.254 | 0.004 | |||
| Rhubarb | Pb(II) | 0.340 | 0.023 | 0.159 | |
| Cd(II) | 0.086 | 0.020 | |||
| As(II) | 0.112 | 0.088 | |||
| Hg(II) | 0.011 | 0.026 | |||
| Cu(II) | 3.551 | 0.002 | |||
| Chrysanthemum Flower | Pb(II) | 0.888 | 0.060 | 1.146 | |
| Cd(II) | 0.257 | 0.060 | |||
| As(II) | 0.270 | 0.211 | |||
| Hg(II) | 0.345 | 0.810 | |||
| Cu(II) | 9.903 | 0.005 | |||
| Common Coltsfoot Flower | Pb(II) | 1.173 | 0.079 | 0.651 | |
| Cd(II) | 0.081 | 0.019 | |||
| As(II) | 0.647 | 0.506 | |||
| Hg(II) | 0.018 | 0.042 | |||
| Cu(II) | 10.30 | 0.005 | |||
| Turmeric Root Tuber | Pb(II) | 0.580 | 0.039 | 0.159 | |
| Cd(II) | 0.179 | 0.042 | |||
| As(II) | 0.087 | 0.068 | |||
| Hg(II) | 0.004 | 0.009 | |||
| Cu(II) | 2.348 | 0.001 | |||
|
| Zn(II) | 4.10 | 0.77 | 2.07 | [ |
| Pb(II) | 0.74 | 0.13 | |||
| Cd(II) | 0.10 | 0.10 | |||
| Ni(II) | 0.39 | 0.29 | |||
| Cu(II) | 0.08 | 0.01 | |||
| Fe(II) | 7.9 | 0.77 | |||
|
| Zn(II) | 5.20 | 1.00 | 2.52 | |
| Pb(II) | 0.79 | 0.15 | |||
| Cd(II) | 0.12 | 0.12 | |||
| Ni(II) | 0.37 | 0.25 | |||
| Cu(II) | 0.26 | 0.04 | |||
| Fe(II) | 9.8 | 0.96 | |||
|
| Zn(II) | 5.18 | 0.99 | 2.30 | |
| Pb(II) | 0.74 | 0.13 | |||
| Cd(II) | 0.16 | 0.16 | |||
| Ni(II) | 0.38 | 0.27 | |||
| Cu(II) | 0.12 | 0.02 | |||
| Fe(II) | 7.5 | 0.73 | |||
|
| Zn(II) | 5.60 | 1.04 | 2.44 | |
| Pb(II) | 0.62 | 0.10 | |||
| Cd(II) | 0.13 | 0.13 | |||
| Ni(II) | 0.37 | 0.25 | |||
| Cu(II) | 0.07 | 0.01 | |||
| Fe(II) | 9.3 | 0.91 | |||
|
| Zn(II) | 7.20 | 1.39 | 2.69 | |
| Pb(II) | 2.75 | 0.51 | |||
| Cd(II) | 0.17 | 0.17 | |||
| Ni(II) | 0.63 | 0.48 | |||
| Cu(II) | 0.51 | 0.11 | |||
| Fe(II) | 0.3 | 0.03 | |||
|
| Pb(II) | 0.0126 | 1.76 | 2.65 | [ |
| Cd(II) | 0.00178 | 0.89 | |||
| Hedyotidis diffusae herba | Pb(II) | 0.00302 | 0.85 | 2.72 | |
| As(II) | 0.00088 | 0.41 | |||
| Cd(II) | 0.00146 | 1.46 | |||
| Plantaginis herba | Pb(II) | 0.00264 | 0.37 | 1.00 | |
| As(II) | 0.00239 | 0.56 | |||
| Cd(II) | 0.00014 | 0.07 | |||
| Lysimachiae herba | Pb(II) | 0.00323 | 0.9 | 1.53 | |
| As(II) | 0.00065 | 0.3 | |||
| Cd(II) | 0.00032 | 0.32 | |||
| Violae herba | Pb(II) | 0.00464 | 0.65 | 1.24 | |
| As(II) | 0.00175 | 0.41 | |||
| Cd(II) | 0.00036 | 0.18 | |||
| Centipedae herba | Pb(II) | 0.00673 | 0.38 | 1.00 | |
| As(II) | 0.00168 | 0.16 | |||
| Cd(II) | 0.00232 | 0.46 | |||
| Eckloniae/Laminariae thallus | Pb(II) | 0.00267 | 0.15 | 3.42 | |
| As(II) | 0.0337 | 3.13 | |||
| Cd(II) | 0.0007 | 0.14 | |||
| Toxicodendri resina | Pb(II) | 0.0738 | 1.55 | 11.9 | |
| As(II) | 0.00478 | 0.17 | |||
| Cd(II) | 0.00055 | 0.04 | |||
| Hg(II) | 0.0977 | 10.2 | |||
| Pheretima | Pb(II) | 0.0141 | 0.66 | 1.15 | |
| As(II) | 0.0024 | 0.19 | |||
| Cd(II) | 0.00164 | 0.27 | |||
| Hg(II) | 0.00015 | 0.03 | |||
| Fossilia Ossis Mastodi | Pb(II) | 0.0054 | 0.76 | 2.19 | |
| As(II) | 0.0056 | 1.3 | |||
| Cd(II) | 0.00026 | 0.13 | |||
| Haematitum | Pb(II) | 0.00559 | 0.78 | 2.08 | |
| As(II) | 0.00525 | 1.22 | |||
| Hg(II) | 0.00011 | 0.08 | |||
| Tea bags | Fe(II) | 1.05–7.45 | 2.00 × 10−4–1.42 × 10−3 | 0.68–1.11 | [ |
| Zn(II) | 0.10–0.30 | 4.44 × 10−5–1.33 × 10−3 | |||
| As(II) | 1.40–2.00 | 0.62–0.89 | |||
| Cd(II) | 0.10–1.50 | 0.01–0.20 | |||
| Pb(II) | 0.10–0.40 | 3.81 × 10−3–1.52 × 10−3 | |||