| Literature DB >> 36077552 |
Sayed Aliul Hasan Abdi1, Amena Ali2, Shabihul Fatma Sayed3, Sumathi Nagarajan3, Prawez Alam4, Abuzer Ali5.
Abstract
Octocrylene is a widely used ingredient in sunscreen products, and it has been observed that the use of sunscreen has been increasing over the last few decades. In this paper, we investigated the way in which sunscreen's ingredient octocrylene may disrupt normal vitamin D synthesis pathway, resulting in an imbalance in vitamin D levels in the body. The key techniques used for this insilico investigation were molecular docking, molecular dynamic (MD) simulation, and MMPBSA-based assessment. Vitamin D abnormalities have become very common in human health. Unknown exposure to chemicals may be one of the important risk factors. In molecular docking analysis, octocrylene exhibited a binding energy of -11.52 kcal/mol with vitamin D binding protein (1KXP) and -11.71 for the calcitriol native ligand. Octocrylene had a binding potency of -11.152 kcal/mol with the vitamin D receptor (1DB1), and calcitriol had a binding potency of -8.73 kcal/mol. In addition, octocrylene has shown binding energy of -8.96 kcal/mol with CYP2R1, and the calcitriol binding energy was -10.36 kcal/mol. Regarding stability, the root-mean-square deviation (RMSD), the root-mean-square fluctuation (RMSF), the radius of gyration, hydrogen bonding, and the solvent-accessible surface area (SASA) exhibited that octocrylene has a stable binding pattern similar to calcitriol. These findings revealed that incessant exposure to octocrylene may disrupt normal vitamin D synthesis.Entities:
Keywords: in silico study; octocrylene; sunscreen’s ingredient; vitamin D disruption
Mesh:
Substances:
Year: 2022 PMID: 36077552 PMCID: PMC9456232 DOI: 10.3390/ijms231710154
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Figure 1Chemical structure of octocrylene.
Example of brand and concentration of octocrylene.
| SN | Product Name | Octocrylene Concentration | Information Source |
|---|---|---|---|
| 1 | Nivea Sun | Octocrylene 50 mg | Available online: |
| 2 | Bana Boat Sport performance | Octocrylene 13.76 mg | Available online: |
| 3 | Bana Boat | Octocrylene 1.33 mg | Available online: |
| 4 | Neutrogena Sunscreen SPF 70—6.7 Ounces Lotion 190 gm | Octocrylene 1.9 mg | Available online: |
| 5 | Coppertone Sport Clear SPF 30 | Octocrylene 5.98 mg | Available online: |
| 6 | Coppertone Sport Clear SPF 50 | Octocrylene 5.98 mg | Avialble online: |
Figure 2Octocrylene molecular interaction with the vitamin D binding protein.
Figure 3Calcitriol molecular interaction with the vitamin D binding protein.
Figure 4Octocrylene molecular interaction with the vitamin D receptor.
Figure 5Calcitriol molecular interaction with the vitamin D receptor.
Figure 6Octocrylene molecular interaction with the enzyme CYP2R1.
Figure 7Calcitriol molecular interaction with the enzyme CYP2R1.
Molecular interaction analyses.
| Ligands | Amino Acid Residues Involved in | Docking | Inhibition | Protein |
|---|---|---|---|---|
| Octocrylene | LYS 213 | −11.52 | 365.25 nM | 1KXP |
| Calcitriol | LYS 213 | −11.71 | 117.72 nM | |
| Octocrylene | SER 275 | −11.15 | 979.57 nM | 1DB1 |
| Calcitriol | SER 278 | −8.73 | 2.99 µM | |
| Octocrylene | ASN 217 | −11.9 | 271.01 nM | 3CZH |
| Calcitriol | ASN 217 | −13.03 | 25.63 nM |
Figure 8Molecular dynamic (MD) simulation. Black colour is for the vitamin D binding protein+ octocrylene. Red colour is for the vitamin D binding protein + calcitriol. Green colour is for the vitamin D receptor + octocrylene. Blue colour is for the vitamin D receptor + calcitriol. Yellow colour is for the enzyme CYP2R1 + octocrylene. Brown colour is for the enzyme CYP2R1 + calcitriol. (A) RMSD for 10 ns. (B) RMSF for to 10 ns. (C) Radius of gyration corresponds to 10 ns. (D) Number of hydrogen bonds between the ligand and the receptor. (E) SASA for 10 ns.
Molecular mechanics Poisson–Boltzmann surface area (MM-PBSA) and interaction energy.
| Parameters | Octocrylene + Vitamin D Binding Protein (1KXP) | Calcitriol + Vitamin D Binding Protein (1KXP) | Octocrylene + Vitamin D Receptor | Calcitriol + Vitamin D Receptor | Octocrylene + | Calcitriol + |
|---|---|---|---|---|---|---|
| van der Waal’s energy | −37.87 ± 0.133 | −43.35 ± 0.16 | −49.28± 0.07 | −55.09 ± 0.09 | −49.62 ± 0.08 | −54.75 ± 0.08 |
| Electrostatic | −1.8019 ± 0.03 | −1.699 ± 0.02 | −0.477 ± 0.0094 | −41.82± 0.1 | −0.752 ± 0.0087 | −49.62 ± 0.08 |
| Solvation energy | −1.8019 ± 1.2 | −1.91 ± 0.01 | −5.05 ± 0.009 | −41.82 ± 0.1 | −5.009 ± 0.0093 | −5.11 ± 0.008 |
| Binding free energy | −41.82 ± 0.1 | −46.96 ± 0.17 | −54.81 ± 0.07 | −63.25 ± 0.095 | −55.37 ± 0.086 | −61.06 ± 0.08 |
| Interaction Energy | Coul-SR: | Coul-SR: | Coul-SR: | Coul-SR: | Coul-SR: | Coul-SR: |
| LJ-SR: | LJ-SR: | LJ-SR: | LJ-SR: | LJ-SR: | LJ-SR: |
Important ADME and QSAR tool box points of Octocrylene.
| SN | ADME Parameters | Results |
|---|---|---|
| 1 | Molecular weight | 361.48 g/mol |
| 2 | GI absorption | High |
| 3 | BBB permeant | Yes |
| 4 | Log | −3.44 cm/s |
| 5 | CYP1A2 inhibitor | Yes |
| 6 | CYP2C19 inhibitor | Yes |
| 7 | CYP2C9 inhibitor | Yes |
| 8 | CYP2D6 inhibitor | Yes |
| 9 | CYP3A4 inhibitor | Yes |
Information about the protein and ligands used in the study.
| Protein Data Bank | Ligand | Control |
|---|---|---|
| Vitamin D binding protein (1KXP) | ||
| Vitamin D receptor (1DB1) | Octocrylene | Calcitriol |
| Enzyme CYP2R1 (3CZH) | PubChem Id 22571 | PubChem Id 5280453 |