Applications and Ethics of Gene Editing Technology in Genetic Disease Treatment

Authors

  • Zhiyi Jiang Chongqing Bashu Secondary School

DOI:

https://doi.org/10.62177/chst.v3i3.1582

Keywords:

Gene Editing, Genetic Disease Treatment, CRISPR-Cas9, Ethical Governance, Off-Target Effects, Germline Editing, Base Editing, Clinical Translation

Abstract

Gene editing technology is fundamentally reshaping the paradigm of genetic disease treatment, and its clinical translation marks the entry of modern medicine into an era of precise intervention. The CRISPR-Cas9 system, with its programmable targeting capability, provides radical solutions for monogenic genetic diseases, achieving historic breakthroughs in the treatment of thalassemia and sickle cell disease. Technological iterations have spawned new paradigms of base editing and prime editing, enabling single-base precise correction while circumventing double-strand break risks, representing a qualitative leap in the safety dimension. Ethical controversies focus on the unpredictability of off-target effects, the intergenerational responsibility boundaries of germline editing, and the social equity of technology benefit distribution, urgently requiring the establishment of global collaborative governance mechanisms. Innovations in delivery systems have broken through organ-targeting bottlenecks, making in vivo in situ editing possible. Future development directions lie in integrating artificial intelligence to optimize editing design, perfecting lifelong safety monitoring systems, constructing ethical consensus across multicultural backgrounds, promoting deep synergy between technological innovation and humanistic care, and ultimately achieving a paradigm shift in genetic disease treatment from symptom management to etiological eradication.

Downloads

Download data is not yet available.

References

Zhang, Q., & Gu, M. L. (2022). Gene editing technology and its clinical application. Chemistry of Life, 42(01), 41–55.

Sun, X. F. (2021, August 3). Construction and key technology research and development of monogenic genetic disease iPS cell bank and its efficient gene editing platform [Unpublished project report]. The Third AffiliatedHospital of Guangzhou Medical University, Guangdong Province.

Qiu, Z. C., Li, Z. F., & Shi, H. (2021). Gene editing technology and its research progress and application prospects in disease treatment. Journal of Kunming University of Science and Technology (Natural Science Edition), 46(05), 100–109.

Anonymous. (2020). Gene editing technology successfully treats genetic disease for the first time. Chinese Journal of Clinical Oncology and Rehabilitation, 27(08), 1024.

Xie, F. Y. (2019). Application progress of gene editing technology in gene therapy. Biological Chemical Engineering, 5(01), 162–164.

Downloads

How to Cite

Jiang, Z. (2026). Applications and Ethics of Gene Editing Technology in Genetic Disease Treatment. Critical Humanistic Social Theory, 3(3). https://doi.org/10.62177/chst.v3i3.1582

Issue

Section

Articles