Alternatives to in vivo Draize rabbit eye and skin irritation tests with a focus on 3D reconstructed human cornea-like epithelium and epidermis models

被引:74
|
作者
Lee M. [1 ]
Hwang J.-H. [1 ]
Lim K.-M. [1 ]
机构
[1] College of Pharmacy, Ewha Womans University, Seoul
关键词
3D reconstructed human cornea-like epithelium (RhCE) models; 3D reconstructed human epithelium (RhE) models; Alternative to animal tests; Eye irritation; Skin irritation;
D O I
10.5487/TR.2017.33.3.191
中图分类号
学科分类号
摘要
Human eyes and skin are frequently exposed to chemicals accidentally or on purpose due to their external location. Therefore, chemicals are required to undergo the evaluation of the ocular and dermal irritancy for their safe handling and use before release into the market. Draize rabbit eye and skin irritation test developed in 1944, has been a gold standard test which was enlisted as OECD TG 404 and OECD TG 405 but it has been criticized with respect to animal welfare due to invasive and cruel procedure. To replace it, diverse alternatives have been developed: (i) For Draize eye irritation test, organotypic assay, in vitro cytotoxicity- based method, in chemico tests, in silico prediction model, and 3D reconstructed human cornealike epithelium (RhCE); (ii) For Draize skin irritation test, in vitro cytotoxicity-based cell model, and 3D reconstructed human epidermis models (RhE). Of these, RhCE and RhE models are getting spotlight as a promising alternative with a wide applicability domain covering cosmetics and personal care products. In this review, we overviewed the current alternatives to Draize test with a focus on 3D human epithelium models to provide an insight into advancing and widening their utility.
引用
收藏
页码:191 / 203
页数:12
相关论文
共 17 条
  • [1] Ocular irritation and photo-irritation testing of medical devices and extracts using 3D reconstructed human cornea-like tissue models.
    Pobis, P.
    Kandarova, H.
    TOXICOLOGY LETTERS, 2021, 350 : S252 - S253
  • [2] In-house performance assessment of 3D QobuR-Reconstructed Human Cornea-Like Epithelium (RhCE) for the evaluation of eye hazard
    Chacon, Manuel
    Vazquez, Natalia
    Persinal-Medina, Mairobi
    Alonso-Alonso, Sergio
    Alcalde, Ignacio
    Merayo-Lloves, Jesus
    Meana, Alvaro
    TOXICOLOGY IN VITRO, 2022, 82
  • [3] Development of an Eye Irritation Test Method Using an In-House Fabrication of a Reconstructed Human Cornea-like Epithelium Model for Eye Hazard Identification
    Yamamoto, Naoki
    Hiramatsu, Noriko
    Kato, Yoshinao
    Sato, Atsushi
    Kojima, Hajime
    BIOENGINEERING-BASEL, 2024, 11 (04):
  • [4] Two tiered approaches combining alternative test methods and minimizing the use of reconstructed human cornea-like epithelium tests for the evaluation of eye irritation potency of test chemicals
    Ko, Kyung Yuk
    Jeon, Hye Lyun
    Kim, Joohwan
    Kim, Tae Sung
    Hong, Yoon-hee
    Jeong, Mi Kyung
    Park, Kyo-Hyun
    Kim, Bae-Hwan
    Park, Sera
    Jang, Won-hee
    Cho, Sun-A
    An, Susun
    Cho, Ah Rang
    Yi, Jung-Sun
    Kim, Ji-Young
    Kim, Hak
    Lee, Jong Kwon
    Park, Ki Sook
    TOXICOLOGY IN VITRO, 2020, 63
  • [5] Establishment and performance assessment of an in-house 3D Reconstructed Human Cornea-Like Epithelium (RhCE) as a screening tool for the identification of liquid chemicals with potential eye hazard
    Garcia, Imane
    Capallere, Christophe
    Arcioni, Marianne
    Brulas, Marie
    Plaza, Christelle
    Meyrignac, Celine
    Bauza, Eric
    Botto, Jean-Marie
    TOXICOLOGY IN VITRO, 2019, 61
  • [6] Phototoxicity and biocompatibility assessment of medical devices using 3D reconstructed human cornea-like tissue model
    Pobis, P.
    Kand'arova, H.
    TOXICOLOGY LETTERS, 2023, 384 : S200 - S201
  • [7] 3D reconstructed human cornea-like tissue model as an alternative to animal experiments in the biocompatibility testing of medical devices
    Pobis, P.
    Kubalcova, J.
    Kandarova, H.
    TOXICOLOGY LETTERS, 2022, 368 : S179 - S180
  • [8] Evaluation of the effect of cellulose nanofibers on skin irritation using a 3D in vitro reconstructed human epidermis model
    Fujita, K.
    Obara, S.
    Maru, J.
    Endoh, S.
    Kitano, Y.
    TOXICOLOGY LETTERS, 2019, 314 : S196 - S197
  • [9] Evaluation of Eye Irritation Potential of Solid Substance with New 3D Reconstructed Human Cornea Model, MCTT HCE™
    Jang, Won-hee
    Jung, Kyoung-mi
    Yang, Hye-ri
    Lee, Miri
    Jung, Haeng-Sun
    Lee, Su-Hyon
    Park, Miyoung
    Lim, Kyung-Min
    BIOMOLECULES & THERAPEUTICS, 2015, 23 (04) : 379 - 385
  • [10] Me-too validation study for in vitro eye irritation test with 3D-reconstructed human cornea epithelium, MCTT HCE™
    Lim, Song-E
    Ha, Su Jin
    Jang, Won-Hee
    Jung, Kyung-Mi
    Jung, Mi-Sook
    Yeo, Kyung-Wook
    Kim, Jin-Sik
    Jeong, Tae-Cheon
    Kang, Mi-Jeong
    Kim, Seol Yeong
    Lee, Su-Hyun
    Ko, Kyung-Yuk
    Kim, Tae-Sung
    Park, Ki-Sook
    Bae, SeungJin
    Lim, Kyung-Min
    TOXICOLOGY IN VITRO, 2019, 55 : 173 - 184