Edwin Rubel is an American academic and developmental neurobiologist holding the position of emeritus professor at the University of Washington. He was the foun
American academic and developmental neurobiologist
Edwin Rubel is an American academic and developmental neurobiologist holding the position of emeritus professor at the University of Washington. He was the founding director and first Virginia Merrill Bloedel Chair in Basic Hearing Research from 1989 to 2017.
Education
Rubel completed his undergraduate and graduate education at Michigan State University. He received his MA in psychology in 1967 for the thesis "Imprinting in the Quail, Coturnix coturnix".[1] He received his PhD in psychology in 1969 for his thesis entitled "A comparison of somatotopic organization in sensory neocortex of newborn kittens and adult cats",[2] published in The Journal of Comparative Neurology in 1971.[3] His PhD advisors were John I. Johnson.[4] and Glen I. Hatton.
Scientific career
Rubel's research is on methods and preparations to better understand the development, plasticity, pathology and potential repair of the inner ear and auditory pathways of the brain,[5] and has published over 300 papers.[6] He has made contributions to several different areas of auditory neuroscience.[7] These include studies of the development and plasticity of neurons in the auditory brainstem, damage and regeneration of hair cells and protection of the mechanosensory cells in the inner ear for hearing and balance.
Auditory brainstem
Rubel and colleagues made considerable contributions to the study of the auditory brainstem, describing the anatomy, organization, development and plasticity of these structures in birds and mammals. Studies included descriptions of the tonotopic organization of brainstem nuclei in chick,[8][9] leading to identification of neural circuitry underlying interaural time differences.[10][11] His group also studied the effects of cochlear removal on brainstem organization in chick [12] and in gerbil,[13] demonstrating a critical period for cochlear influences.
Hair cell regeneration
Rubel and colleagues demonstrated that hair cell regeneration occurred in birds after exposure to aminoglycoside antibiotics[14] or acoustic trauma,[15] paralleling studies by Cotanche[16] and Corwin and Cotanche.[17] Prior to these studies it was generally believed that hair cell regeneration did not occur in warm-blooded animals.[18]
Hair cell damage and prevention of hearing loss
With colleagues at the University of Washington and Fred Hutchinson Cancer Research Center, Rubel develop the zebrafish as a model system for understanding hair cell damage and regeneration.[19][20] Studies identified mutations that altered susceptibility to ototoxic agents, and small molecule screens for compounds that prevent hair cell damage.[21] Through iterative chemistry, they developed a lead compound with improved otoprotective potency, improved pharmacokinetic properties and reduced off-target activity (ORC-13661).[22] This compound has been licensed to Oricula Therapeutics, co-founded by Rubel, and has been approved for use in humans by the FDA.[23]
^Rubel, Edwin W (1971). "A comparison of somatotopic organization in sensory neocortex of newborn kittens and adult cats". J Comp Neurol. 143 (4): 447–480. doi:10.1002/cne.901430404. PMID11393201. S2CID15475388.
^Cramer, Karina S.; Coffin, Allison B. (2017). "Auditory System Development: A Tribute to Edwin W Rubel". Auditory Development and Plasticity. Springer Handbook of Auditory Research. Vol. 64. pp. 1–15. doi:10.1007/978-3-319-21530-3_1. ISBN978-3-319-21529-7.
^Rubel EW, Parks TN (1975). "Organization and development of brain stem auditory nuclei of the chicken: tonotopic organization of n. magnocellularis and n. laminaris". J Comp Neurol. 164 (4): 411–33. doi:10.1002/cne.901640403. PMID1206127. S2CID605374.
^Parks TN, Rubel EW (1975). "Organization and development of brain stem auditory nuclei of the chicken: organization of projections from n. magnocellularis to n. laminaris". J Comp Neurol. 164 (4): 435–48. doi:10.1002/cne.901640404. PMID1206128. S2CID14288196.
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