Araştırma Makalesi
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Bisfenol A ve türevlerinin oküler toksisitesinin Tavuk Yumurtası Testi - Koryoallantoik Membran (HET-CAM) testi ile değerlendirilmesi

Yıl 2025, Cilt: 14 Sayı: 4, 254 - 259, 30.12.2025
https://doi.org/10.46810/tdfd.1773113

Öz

Bisphenol A (BPA) ve türevleri olan Bisphenol F (BPF), Bisphenol S (BPS), insanları farklı şekillerde etkileyebilen endokrin bozucu kimyasallar olarak sınıflandırılmaktadır. Bu kimyasalların olumsuz sağlık etkileri hakkında endişeler dile getirilirken, literatürde göz tahrişine dair veri bulunmamaktadır. In vivo Draize testine alternatif bir yöntem olan HET-CAM testi ile BPA ve analoglarının karşılaştırmalı tahriş potansiyelini ilk kez ortaya koymak amaçlanmıştır. BPA, BPF ve BPS'nin tahrişi veya değişiklikleri, CAM yüzeyinde kan damarlarında kanama, pıhtılaşma veya lizis gibi olumsuz değişiklikler gözlemlenerek tespit edildi. Test sonuçları, BPA'nın görünmez bir damarla lizis ile karakterize orta düzeyde tahrişe neden olduğunu, BPS'nin ise kanama ve pıhtılaşma şeklinde görünen güçlü bir tahriş etkisine sahip olduğunu göstermektedir. BPF maruziyetinden sonra CAM yüzeyinde herhangi bir tahriş oluşmadı. Sonuç olarak, işçiler için daha yüksek olabilecek maruziyet dikkate alındığında, BPA ve BPS'nin insan sağlığı için ciddi toksik kimyasallar olduğu desteklenmiştir. Aynı zamanda, bu çalışma, özellikle endüstriyel maruziyetler bağlamında, bisfenollerin tahriş potansiyelini değerlendirmek için hayvan çalışmalarına alternatif bir yaklaşım sunduğu için önemlidir.

Kaynakça

  • Wilson SL, Ahearne M, Hopkinson A. An overview of current techniques for ocular toxicity testing. Toxicology 2015; 327: 32–46.
  • Wilhelmus KR. The Draize Eye Test. Surv Ophthalmol 2001; 45: 493–515.
  • Luepke NP. Hen’s egg chorioallantoic membrane test for irritation potential. Food Chem Toxicol 1985; 23: 287–291.
  • ICCVAM. Recommended Test Method Protocol : Hen ’ s Egg Test – Chorioallantoic Membrane ( HET-CAM ) Test Method. ICCVAM Test Method Eval Rep 2010; 13: B30–B38.
  • Wu M, Cong Y, Wang K, et al. Bisphenol A impairs macrophages through inhibiting autophagy via AMPK/mTOR signaling pathway and inducing apoptosis. Ecotoxicol Environ Saf 2022; 234: 113395.
  • Bousoumah R, Leso V, Iavicoli I, et al. Biomonitoring of occupational exposure to bisphenol A, bisphenol S and bisphenol F: A systematic review. Sci Total Environ 2021; 783: 146905.
  • Ueda T, Adachi T, Hayashi T, et al. Bisphenol A triggers activation of ocular immune system and aggravates allergic airway inflammation. Clin Immunol 2024; 268: 110370.
  • Liu J, Martin JW. Prolonged Exposure to Bisphenol A from Single Dermal Contact Events. Environ Sci Technol 2017; 51: 9940–9949.
  • Chen T, Chang H. In vitro eye irritation testing models may play pivotal role in effort to pursue mild baby cleansers. Toxicol Vitr 2023; 89: 105578.
  • Derouiche MTT, Abdennour S. HET-CAM test. Application to shampoos in developing countries. Toxicol Vitr 2017; 45: 393–396.
  • Smail SS. Ex Vivo Irritation Evaluation of a Novel Brimonidine Nanoemulsion Using the Hen’s Egg Test on Chorioallantoic Membrane (HET-CAM). Cureus. Epub ahead of print 31 August 2024. DOI: 10.7759/cureus.68280.
  • Chew A-L, Maibach HI. In Vitro Methods to Predict Skin Irritation. In: Irritant Dermatitis. Berlin/Heidelberg: Springer-Verlag, pp. 501–508.
  • Batista-Duharte A, Jorge Murillo G, Pérez UM, et al. The Hen’s Egg Test on Chorioallantoic Membrane. Int J Toxicol 2016; 35: 627–633.
  • Erkekoğlu P, Yirün A, Balci Özyurt A. Toxic Effects of Bisphenols: A Special Focus on Bisphenol A and Its Regulations. In: Bisphenols. IntechOpen. Epub ahead of print 23 March 2022. DOI: 10.5772/intechopen.102714.
  • Russo G, Capuozzo A, Barbato F, et al. Cytotoxicity of seven bisphenol analogues compared to bisphenol A and relationships with membrane affinity data. Chemosphere 2018; 201: 432–440.
  • Rochester JR, Bolden AL. Bisphenol S and F: A Systematic Review and Comparison of the Hormonal Activity of Bisphenol A Substitutes. Environ Health Perspect 2015; 123: 643–650.
  • Lim S-R, Kim D-W, Sung J, et al. Astaxanthin Inhibits Autophagic Cell Death Induced by Bisphenol A in Human Dermal Fibroblasts. Antioxidants 2021; 10: 1273.
  • Bakan B, Kaptaner B, Tokmak M, et al. Toxicological investigation of bisphenol A and its derivates on human breast epithelial (MCF-10A) cells. Toxicol Vitr 2025; 104: 106004.
  • Kodila A, Franko N, Sollner Dolenc M. A review on immunomodulatory effects of BPA analogues. Arch Toxicol 2023; 97: 1831–1846.
  • Eladak S, Grisin T, Moison D, et al. A new chapter in the bisphenol A story: bisphenol S and bisphenol F are not safe alternatives to this compound. Fertil Steril 2015; 103: 11–21.
  • Liao C, Kannan K. Concentrations and Profiles of Bisphenol A and Other Bisphenol Analogues in Foodstuffs from the United States and Their Implications for Human Exposure. J Agric Food Chem 2013; 61: 4655–4662.
  • Khmiri I, Côté J, Mantha M, et al. Toxicokinetics of bisphenol-S and its glucuronide in plasma and urine following oral and dermal exposure in volunteers for the interpretation of biomonitoring data. Environ Int 2020; 138: 105644.
  • Kitagawa K, Shibata E, Yamamoto M, et al. Subacute exposure to bisphenol F diglycidyl‐ether induces chronic dermatitis characterized by psoriasis‐like skin inflammation in mice. Genes to Cells 2023; 28: 42–52.
  • Mourot‐Bousquenaud M, Langonné I, Buchheit M, et al. Identification of the allergenic sensitizing potential of bisphenol <scp>A</scp> substitutes used in the industry. Contact Dermatitis 2024; 90: 169–181.

Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen's Egg Test - Chorioallantoic Membrane (HET-CAM) assay

Yıl 2025, Cilt: 14 Sayı: 4, 254 - 259, 30.12.2025
https://doi.org/10.46810/tdfd.1773113

Öz

Bisphenol A (BPA) and its derivatives, Bisphenol F (BPF), Bisphenol S (BPS) are classified as endocrine disruptor chemicals that can affect with the human in different ways. In raising concerns about the adverse health effects of these chemicals, no ocular irritation data is available in the literature. It was aimed to reveal the comparative irritation potential of BPA and its analogues for the first time with HET-CAM test, which is an alternative method to the in vivo Draize test. Irritancy or alterations of BPA, BPF and BPS were detected by observing adverse changes such as hemorrhage, coagulation, or lysis of blood vessels on the CAM surface. Test results indicate that BPA caused moderate irritation characterized by lysis with an invisible vein, whereas BPS had a strong irritation impact appearing as hemorrhage and coagulation. There was no irritancy after BPF exposure on the CAM surface. As a conclusion, it was supported that BPA and BPS serious toxic chemicals for human health when considering exposure that may be higher for workers. At the same time, this study is significant since it offers an alternative approach to animal studies for evaluating the irritation potential of bisphenols, particularly in the context of industrial exposures.

Kaynakça

  • Wilson SL, Ahearne M, Hopkinson A. An overview of current techniques for ocular toxicity testing. Toxicology 2015; 327: 32–46.
  • Wilhelmus KR. The Draize Eye Test. Surv Ophthalmol 2001; 45: 493–515.
  • Luepke NP. Hen’s egg chorioallantoic membrane test for irritation potential. Food Chem Toxicol 1985; 23: 287–291.
  • ICCVAM. Recommended Test Method Protocol : Hen ’ s Egg Test – Chorioallantoic Membrane ( HET-CAM ) Test Method. ICCVAM Test Method Eval Rep 2010; 13: B30–B38.
  • Wu M, Cong Y, Wang K, et al. Bisphenol A impairs macrophages through inhibiting autophagy via AMPK/mTOR signaling pathway and inducing apoptosis. Ecotoxicol Environ Saf 2022; 234: 113395.
  • Bousoumah R, Leso V, Iavicoli I, et al. Biomonitoring of occupational exposure to bisphenol A, bisphenol S and bisphenol F: A systematic review. Sci Total Environ 2021; 783: 146905.
  • Ueda T, Adachi T, Hayashi T, et al. Bisphenol A triggers activation of ocular immune system and aggravates allergic airway inflammation. Clin Immunol 2024; 268: 110370.
  • Liu J, Martin JW. Prolonged Exposure to Bisphenol A from Single Dermal Contact Events. Environ Sci Technol 2017; 51: 9940–9949.
  • Chen T, Chang H. In vitro eye irritation testing models may play pivotal role in effort to pursue mild baby cleansers. Toxicol Vitr 2023; 89: 105578.
  • Derouiche MTT, Abdennour S. HET-CAM test. Application to shampoos in developing countries. Toxicol Vitr 2017; 45: 393–396.
  • Smail SS. Ex Vivo Irritation Evaluation of a Novel Brimonidine Nanoemulsion Using the Hen’s Egg Test on Chorioallantoic Membrane (HET-CAM). Cureus. Epub ahead of print 31 August 2024. DOI: 10.7759/cureus.68280.
  • Chew A-L, Maibach HI. In Vitro Methods to Predict Skin Irritation. In: Irritant Dermatitis. Berlin/Heidelberg: Springer-Verlag, pp. 501–508.
  • Batista-Duharte A, Jorge Murillo G, Pérez UM, et al. The Hen’s Egg Test on Chorioallantoic Membrane. Int J Toxicol 2016; 35: 627–633.
  • Erkekoğlu P, Yirün A, Balci Özyurt A. Toxic Effects of Bisphenols: A Special Focus on Bisphenol A and Its Regulations. In: Bisphenols. IntechOpen. Epub ahead of print 23 March 2022. DOI: 10.5772/intechopen.102714.
  • Russo G, Capuozzo A, Barbato F, et al. Cytotoxicity of seven bisphenol analogues compared to bisphenol A and relationships with membrane affinity data. Chemosphere 2018; 201: 432–440.
  • Rochester JR, Bolden AL. Bisphenol S and F: A Systematic Review and Comparison of the Hormonal Activity of Bisphenol A Substitutes. Environ Health Perspect 2015; 123: 643–650.
  • Lim S-R, Kim D-W, Sung J, et al. Astaxanthin Inhibits Autophagic Cell Death Induced by Bisphenol A in Human Dermal Fibroblasts. Antioxidants 2021; 10: 1273.
  • Bakan B, Kaptaner B, Tokmak M, et al. Toxicological investigation of bisphenol A and its derivates on human breast epithelial (MCF-10A) cells. Toxicol Vitr 2025; 104: 106004.
  • Kodila A, Franko N, Sollner Dolenc M. A review on immunomodulatory effects of BPA analogues. Arch Toxicol 2023; 97: 1831–1846.
  • Eladak S, Grisin T, Moison D, et al. A new chapter in the bisphenol A story: bisphenol S and bisphenol F are not safe alternatives to this compound. Fertil Steril 2015; 103: 11–21.
  • Liao C, Kannan K. Concentrations and Profiles of Bisphenol A and Other Bisphenol Analogues in Foodstuffs from the United States and Their Implications for Human Exposure. J Agric Food Chem 2013; 61: 4655–4662.
  • Khmiri I, Côté J, Mantha M, et al. Toxicokinetics of bisphenol-S and its glucuronide in plasma and urine following oral and dermal exposure in volunteers for the interpretation of biomonitoring data. Environ Int 2020; 138: 105644.
  • Kitagawa K, Shibata E, Yamamoto M, et al. Subacute exposure to bisphenol F diglycidyl‐ether induces chronic dermatitis characterized by psoriasis‐like skin inflammation in mice. Genes to Cells 2023; 28: 42–52.
  • Mourot‐Bousquenaud M, Langonné I, Buchheit M, et al. Identification of the allergenic sensitizing potential of bisphenol <scp>A</scp> substitutes used in the industry. Contact Dermatitis 2024; 90: 169–181.
Toplam 24 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Hücresel Etkileşimler
Bölüm Araştırma Makalesi
Yazarlar

Buket Bakan 0000-0002-4400-6776

Gönderilme Tarihi 28 Ağustos 2025
Kabul Tarihi 12 Aralık 2025
Yayımlanma Tarihi 30 Aralık 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 14 Sayı: 4

Kaynak Göster

APA Bakan, B. (2025). Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay. Türk Doğa ve Fen Dergisi, 14(4), 254-259. https://doi.org/10.46810/tdfd.1773113
AMA Bakan B. Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay. TDFD. Aralık 2025;14(4):254-259. doi:10.46810/tdfd.1773113
Chicago Bakan, Buket. “Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay”. Türk Doğa ve Fen Dergisi 14, sy. 4 (Aralık 2025): 254-59. https://doi.org/10.46810/tdfd.1773113.
EndNote Bakan B (01 Aralık 2025) Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay. Türk Doğa ve Fen Dergisi 14 4 254–259.
IEEE B. Bakan, “Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay”, TDFD, c. 14, sy. 4, ss. 254–259, 2025, doi: 10.46810/tdfd.1773113.
ISNAD Bakan, Buket. “Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay”. Türk Doğa ve Fen Dergisi 14/4 (Aralık2025), 254-259. https://doi.org/10.46810/tdfd.1773113.
JAMA Bakan B. Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay. TDFD. 2025;14:254–259.
MLA Bakan, Buket. “Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay”. Türk Doğa ve Fen Dergisi, c. 14, sy. 4, 2025, ss. 254-9, doi:10.46810/tdfd.1773113.
Vancouver Bakan B. Ocular toxicity assessment of Bisphenol A and its derivatives by The Hen’s Egg Test - Chorioallantoic Membrane (HET-CAM) assay. TDFD. 2025;14(4):254-9.