Jerzy Szablowski

@jerzyszablowski.bsky.social

Assistant Professor at Rice Univ. Bioengineering. Developing molecular tools to interact with the brain and treat brain disorders. Co-founder at Imprint Bio. Inc. for papers: www.szablowskilab.org tools: https://www.addgene.org/Jerzy_Szablowski/

Tenure - deeply grateful to the students, postdocs, mentors, collaborators, and colleagues who made this possible. The next chapter will expand the lab towards a couple of new directions, including multiplexed interfacing with deep tissues and reengineering drug discovery.

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What is the next frontier in brain therapy? Small molecules act everywhere; our work targets brain regions with mm precision. Next frontier? Targeting microscale - neuronal connections, ensembles. Here, we test AAV9.retro for noninvasive transduction of neuronal projections. preprint comments

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If some calcium enters a dendrite, how far does it diffuse? Rebecca Frank Hayward (who is on the job market!) measured this. www.sciencedirect.com/science/arti... She combined a blue light-activated Ca++ channel with a red-fluorescent Ca++ sensor. The length constant is about 5 microns.

All-optical mapping of Ca2+ transport and homeostasis in dendrites

Calcium mediates many important signals in dendrites. However, the basic transport properties of calcium in dendrites have been difficult to measure: …

sciencedirect.com

Could one envision a synthetic receptor technology that is fully programmable, able to detect diverse extracellular antigens – both soluble and cell-attached – and convert that recognition into a wide range of intracellular responses, from gene expression and real-time fluorescence to modulation..

Excited to share a new review on Magnets for Mechanobiology - teamed up w/ fellow 🧲 enthusiasts from Boston/Madrid/Zurich/Singapore to share how we manipulate cellular microenvironments w/ magnetic fields! Thanks to @danielgmadrid11.bsky.social for bringing us together! doi.org/10.1002/aisy...

Magnetic Actuation for Mechanomedicine

In this perspective, the emergence of magneto-mechanical actuation systems in biomedical research and mechanomedicine is explored. These materials, ranging from single particles to 3D scaffolds, enab...

doi.org