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Optogenetic approaches for understanding homeostatic and degenerative processes in Drosophila.

Wen Kin LimPrameet KaurHuanyan HuangRichard Shim JoAnupriya RamamoorthyLi Fang NgJahnavi SureshFahrisa Islam MaishaAjay S MathuruNicholas S Tolwinski
Published in: Cellular and molecular life sciences : CMLS (2021)
Many organs and tissues have an intrinsic ability to regenerate from a dedicated, tissue-specific stem cell pool. As organisms age, the process of self-regulation or homeostasis begins to slow down with fewer stem cells available for tissue repair. Tissues become more fragile and organs less efficient. This slowdown of homeostatic processes leads to the development of cellular and neurodegenerative diseases. In this review, we highlight the recent use and future potential of optogenetic approaches to study homeostasis. Optogenetics uses photosensitive molecules and genetic engineering to modulate cellular activity in vivo, allowing precise experiments with spatiotemporal control. We look at applications of this technology for understanding the mechanisms governing homeostasis and degeneration as applied to widely used model organisms, such as Drosophila melanogaster, where other common tools are less effective or unavailable.
Keyphrases
  • stem cells
  • drosophila melanogaster
  • gene expression
  • gram negative
  • cell therapy
  • current status
  • genome wide
  • multidrug resistant
  • dna methylation
  • risk assessment
  • human health