Developing 3D printed lung models

Woolcock Institute of Medical Research · Glebe NSW 2037 · N/A
+60d ago

Developing 3D printed lung models

Woolcock Institute of Medical Research
$70k - $90k
KEY POINTS WE FOUND
  • Develop 3D printed lung models for inhalation therapy research.
  • Create an artificial respiratory model integrating airway replicas with 3D bioprinting.
  • Validate the model by testing inhalation therapies against industry-approved methodologies.

Developing 3D printed lung models

Inhaled therapies have been a cornerstone in the treatment of patients living with chronic respiratory diseases. While there has been significant progress and research activity within the field of inhalation therapy, only a handful of new inhaled products have successfully progressed to market. 

The failure to translate promising inhaled drugs to the clinic will continue to exist due to the absence of a predictive in vitro platform that could accurately mimic the physiological conditions and inhalation processes of the respiratory tract.

We aim to develop an artificial respiratory model that integrates airway replicas with 3D bioprinting as a physiologically relevant platform to assess the pharmacokinetics and pharmacodynamics of novel inhalation therapeutics in vitro. Additionally, the study will also validate the use of the model by testing different inhalation therapies and comparing them to industry-approved testing methodologies.

If you are interested in applying for this PhD opportunity and would like more information, please contact Dr Hui Xin Ong at huixin.ong@mq.edu.au.

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Skills

0 of 19 matched
3d bioprintingAirway replicasAttention to detailBioprinting technologiesCollaborativeCritical thinkingIn vitro model developmentInhalation therapyMarketing analysisPharmacodynamicsPharmacokineticsPhysiological modellingProblem solvingResearch methodologyRespiratory biologyRespiratory system anatomy and physiologyScientific communicationTeamworkToxicology

Woolcock Institute of Medical Research

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