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Kornea Epitelinin Mekanik ve Kimyasal Yaralanmaları için Ex Vivo ve In Vivo Hay...
Kornea Epitelinin Mekanik ve Kimyasal Yaralanmaları için Ex Vivo ve In Vivo Hay...
JoVE Journal
Medicine
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JoVE Journal Medicine
Ex Vivo and In Vivo Animal Models for Mechanical and Chemical Injuries of Corneal Epithelium

Kornea Epitelinin Mekanik ve Kimyasal Yaralanmaları için Ex Vivo ve In Vivo Hayvan Modelleri

Full Text
4,722 Views
07:10 min
April 6, 2022

DOI: 10.3791/63217-v

Kuo Hsuan Hung1,2,3, Lung Kun Yeh1,2

1Department of Ophthalmology,Chang-Gung Memorial Hospital, 2Chang-Gung University College of Medicine, 3Institute of Clinical Medicine,National Yang Ming Chiao Tung University

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Overview

This study develops animal models using mice and rabbits to investigate mechanical and chemical injuries to the corneal epithelium. These models aim to facilitate the screening of new therapeutics and to understand the underlying mechanisms of corneal injury.

Key Study Components

Area of Science

  • Neuroscience
  • Ophthalmology
  • Pharmacology

Background

  • Corneal injuries can be caused by mechanical or chemical factors.
  • Understanding these injuries is crucial for developing effective treatments.
  • Animal models are essential for studying the mechanisms of corneal injury.
  • This study focuses on murine and rabbit models for research purposes.

Purpose of Study

  • To create reliable animal models for studying corneal epithelial injuries.
  • To screen potential therapeutics for corneal injuries.
  • To elucidate the mechanisms underlying corneal injury.

Methods Used

  • Ex vivo and in vivo animal models were established.
  • Mechanical injuries were induced using a skin biopsy punch.
  • Chemical injuries were assessed through controlled exposure.
  • Fluorescent staining was utilized to confirm the area of injury.

Main Results

  • The developed models provide a platform for studying corneal injuries.
  • Techniques for creating and assessing injuries were successfully validated.
  • Fluorescent staining effectively visualized epithelial defects.
  • These models can be used for future therapeutic screenings.

Conclusions

  • The study successfully establishes animal models for corneal injury research.
  • These models are valuable for testing new therapeutics.
  • Understanding the mechanisms of injury can lead to better treatment options.

Frequently Asked Questions

What types of injuries are studied in this research?
The research focuses on mechanical and chemical injuries to the corneal epithelium.
Why are animal models important in this study?
Animal models allow researchers to study the mechanisms of corneal injury and test new treatments.
What methods are used to create corneal injuries?
Injuries are created using a skin biopsy punch for mechanical wounds and controlled exposure for chemical injuries.
How is the area of injury confirmed?
The area of injury is confirmed using fluorescent staining techniques.
What are the potential applications of this research?
The findings can be used to screen new therapeutics for corneal injuries and improve treatment strategies.

Burada, kornea epitelinin mekanik ve kimyasal hasarı için fare ve tavşana dayalı hayvan modelleri, yeni terapötikleri ve altta yatan mekanizmayı taramak için geliştirilmiştir.

Mekanik ve kimyasal kornea yaralanmalarını incelemek için Ex vivo ve in vivo hayvan modelleri oluşturuldu. Bu teknik, araştırmacıların korneanın mekanik ve kimyasal yaralanmalarını incelemeleri için kolayca oluşturulmuş bir platform sağlar. Bir murin kornea epitel yarası oluşturmak için, anestezi uygulanan farenin merkezi korneasını yaranın iyi sınırlandırılmış ve iyi ölçülebilir bir alanını doğrulamak için bir cilt biyopsi yumruğu kullanarak işaretleyin.

Dairesel bir iz bırakmak için yumruğu merkezi korneanın üzerine hafifçe girintileyin ve kornea epitelini, Bowman'ın tabakasına zarar vermemek için 0,5 milimetrelik bir çapak ile elde tutulan bir kornea pas halkası sökücü kullanarak Bowman'ın tabakasına kadar indirin. Yara kenarındaki artık gevşek dokuları kornea forsepsleri ile çıkarın. Floresan boyama ile debridman alanını, floreseini çözmek için bir floresein kağıdına bir damla normal salin koyarak ve daha sonra floresan içeren damlayı kobalt mavisi ışık altında görselleştirmek için murin epitel defektine yerleştirerek onaylayın.

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