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Reference: https://app.jove.com/t/2725/transplan... Transplanting cells directly into the kidneys of adult zebrafish represents a significant advancement in the field of regenerative medicine and developmental biology. This technique allows researchers to study kidney function and disease in a living organism, providing insights that are often unattainable through traditional in vitro methods. The adult zebrafish, with its transparent body and regenerative capabilities, serves as an ideal model for such experiments. By introducing specific cell types into the renal environment, scientists can observe the interactions between transplanted cells and the host tissue, shedding light on cellular behavior, integration, and potential therapeutic effects. The process of cell transplantation into the zebrafish kidney involves several meticulous steps to ensure successful integration and functionality of the transplanted cells. Initially, the target cells are isolated and prepared for transplantation, which may include genetic modifications or labeling to track their behavior post-transplant. Following this, a precise surgical technique is employed to introduce the cells into the kidney, often utilizing microinjection methods that minimize damage to surrounding tissues. Post-operative care and monitoring are crucial, as they allow researchers to assess the viability of the transplanted cells and their ability to contribute to kidney function or repair. Furthermore, the implications of this research extend beyond basic science, offering potential pathways for developing novel therapies for kidney diseases. By understanding how transplanted cells interact with the native kidney environment, researchers can identify key factors that promote or inhibit cell survival and integration. This knowledge could lead to innovative strategies for treating renal disorders, including chronic kidney disease and acute kidney injury, ultimately improving patient outcomes. The zebrafish model, with its rapid development and ease of genetic manipulation, continues to be a valuable tool in exploring these complex biological processes and advancing regenerative medicine.