Beyond personalised and toward circuit-customised medicine: targeting molecular "address codes" for diverse functional neuron subtypes in the brain (Stanley Ho Memorial Lecture)
Can we do better than small blue pills with overly broad effects in the brain?

Just as people and populations are diverse – motivating ideas of personalised medicine, nerve cells – or neurons – of the brain are immensely diverse in their types and “individual” circuits that become diseased or damaged in humans. This lecture considers newly accessible molecular routes to more specific future therapies.

The long-term goals of the research to be discussed in this Stanley Ho Memorial Lecture are to understand, at a “subcellular” molecular level, controls over the initial growth – the “development” – and diversity of cerebral cortex function-specific circuitry, and diversity of mature function. The work aims to identify causes, mechanisms, and thus potential “circuit-customised” therapeutic approaches to developmental, neuropsychiatric and degenerative disease, and to elucidate and potentially overcome blocks to brain and spinal cord regeneration in disorders like spinal cord injury. The specificity, modification, and function of quite diverse brain circuitry underlies how the brain-nervous system senses, integrates, moves the body, thinks, functions with precision, malfunctions with specificity in disease, degenerates with circuit specificity, might be regenerated, and/or might be better modeled in the laboratory. However, many relevant aspects of this neuronal circuit diversity and distinctness have been inaccessible in multiple core aspects until quite recently. Understanding what actually implements and maintains circuit specificity is a key issue regarding childhood developmental nervous system abnormalities and disease, proper function vs. dysfunction in neuropsychiatric disorders, selective neuron type vulnerability of degeneration (e.g. in motor neuron disease (MND-ALS), Huntington’s, Parkinson’s diseases), regeneration (or typical lack thereof) for spinal cord injury, and investigations of disease using human pluripotent stem cell (hiPS)-derived neurons.

Professor Jeffrey D. Macklis’ talk will consider possibilities of taking the idea of “personalised medicine”- tailored to an individual based on individual information – in a complementary direction– tailoring therapies to specific diseased or damaged brain circuitry.

This talk will be followed by a drinks reception, all welcome

This is the Dr Stanley Ho Memorial Lecture organised by the Oxford Martin School, Oxford Martin Programme on 3D Printing for Brain Repair and the Centre for Personalised Medicine

REGISTRATION

This talk will be live in-person and online

To register to attend live in-person in Oxford: www.oxfordmartin.ox.ac.uk/events/dr-stanley-ho-memorial-lecture
To register to watch live online on Crowdcast click here: www.crowdcast.io/e/dr-stanley-ho-memorial-lecture
Date: 30 January 2023, 17:00
Venue: Oxford Martin School, 34 Broad Street OX1 3BD
Venue Details: In-person and online
Speaker: Professor Jeffrey D. Macklis (Department of Stem Cell and Regenerative Biology, and Center for Brain Science, Harvard University)
Organising department: Oxford Martin School
Organisers: Centre for Personalised Medicine, Oxford Martin School (University of Oxford)
Organiser contact email address: events@oxfordmartin.ox.ac.uk
Part of: Oxford Martin School Events
Booking required?: Required
Booking url: https://www.oxfordmartin.ox.ac.uk/events/dr-stanley-ho-memorial-lecture/
Audience: Public
Editors: Thea Perry, Hannah Mitchell