Microphysiological systems (MPS) provide relevant physiological environments in vitro for studies of pharmacokinetics, pharmacodynamics and biological mechanisms for translational research. Designing multi-MPS platforms is essential to study multi-organ systems. Typical design approaches, including direct and allometric scaling, scale each MPS individually and are based on relative sizes not function. This study's aim was to develop a new multi-functional scaling approach for integrated multi-MPS platform design for specific applications. We developed an optimization approach using mechanistic modeling and specification of an objective that considered multiple MPS functions, e.g., drug absorption and metabolism, simultaneously to identify s...
Microphysiological systems (MPS) are a promising solution, to bridge current gaps in the predictive ...
Enhancing the early detection of new therapies that are likely to carry a safety liability in the co...
Multi-organ microdevices can mimic tissue-tissue interactions that occur as a result of metabolite t...
Our goal in developing Microphysiological Systems (MPS) technology is to provide an improved approac...
Investigation of the pharmacokinetics (PK) of a compound is of significant importance during the ear...
Scaling of a microphysiological system (MPS) or physiome-on-a-chip is arguably two interrelated, mod...
Microphysiological systems (MPSs) are in vitro models that capture facets of in vivo organ function ...
Microphysiological systems (MPS) are making advances to provide more standardized and predictive phy...
The continued development of in vitro systems that accurately emulate human response to drugs or che...
The continued development of invitro systems that accurately emulate human response to drugs or chem...
Microphysiological systems (MPS), consisting of tissue constructs, biomaterials, and culture media, ...
Enhancing the early detection of new therapies that are likely to carry a safety liability in the co...
Human physiology and pathophysiology often involve systemic interactions between multiple organs or ...
Microphysiological multi-organ devices are designed to mimic the physiological interaction of variou...
Recent advances in microphysiological systems (MPS) promise a global paradigm shift in drug developm...
Microphysiological systems (MPS) are a promising solution, to bridge current gaps in the predictive ...
Enhancing the early detection of new therapies that are likely to carry a safety liability in the co...
Multi-organ microdevices can mimic tissue-tissue interactions that occur as a result of metabolite t...
Our goal in developing Microphysiological Systems (MPS) technology is to provide an improved approac...
Investigation of the pharmacokinetics (PK) of a compound is of significant importance during the ear...
Scaling of a microphysiological system (MPS) or physiome-on-a-chip is arguably two interrelated, mod...
Microphysiological systems (MPSs) are in vitro models that capture facets of in vivo organ function ...
Microphysiological systems (MPS) are making advances to provide more standardized and predictive phy...
The continued development of in vitro systems that accurately emulate human response to drugs or che...
The continued development of invitro systems that accurately emulate human response to drugs or chem...
Microphysiological systems (MPS), consisting of tissue constructs, biomaterials, and culture media, ...
Enhancing the early detection of new therapies that are likely to carry a safety liability in the co...
Human physiology and pathophysiology often involve systemic interactions between multiple organs or ...
Microphysiological multi-organ devices are designed to mimic the physiological interaction of variou...
Recent advances in microphysiological systems (MPS) promise a global paradigm shift in drug developm...
Microphysiological systems (MPS) are a promising solution, to bridge current gaps in the predictive ...
Enhancing the early detection of new therapies that are likely to carry a safety liability in the co...
Multi-organ microdevices can mimic tissue-tissue interactions that occur as a result of metabolite t...