IP Library Granted Patent US 8,370,070
Granted Patent B2
US 8,370,070 · App. 12/239,026 · Granted Feb 5, 2013

Integrated biosensor and simulation system for diagnosis and therapy

Inventor: Dennis S. Fernandez (Atherton, CA)
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Quick Facts
Patent No.
US 8,370,070
App. No.
12/239,026
Granted
Feb 5, 2013
Kind
B2
Abstract

BioMEMS/NEMS appliance biologically monitors an individual, using biosensors to detect cellular components. Data is simulated or analyzed using systems-biology software, which provides diagnostic or therapeutic guidance.

Claims (19)

1. Integrated biosensor platform comprising:

a multifunctional array comprising a microelectronic array of biosensor electrodes in which at least one microelectrode sensor cavity generates controllable electric current or voltage for drawing probes, samples, or reagents to locations on a sensor platform thereby allowing faster, controlled hybridization or analysis thereof, whereby the multifunctional array serves as programmable or logical interconnect for coupling or switching various sensor devices, and interacts with samples and detection system to interpret samples into data for automated analysis by a systems-biology platform that electronically configures the microelectronic array to couple or interconnect selectively according to simulation or modeling to access actual host condition via one or more biosensor signals, such signals being compared by the systems-biology platform against a simulation model or other software prediction.

2. Platform of claim 1 wherein one or more of the sensors sense food.

3. System biology platform comprising:

a systems-biology platform; and

a multifunctional array comprising a microelectronic array of biosensor electrodes in which at least one microelectrode sensor cavity generates controllable electric current or voltage for drawing probes, samples, or reagents to locations on a sensor platform thereby allowing faster, controlled hybridization or analysis thereof, whereby the multifunctional array serves as programmable or logical interconnect for coupling or switching various sensor devices, and interacts with samples and detection system to interpret samples into data for automated analysis by a systems-biology platform that electronically configures the microelectronic array to couple or interconnect selectively according to simulation or modeling to access actual host condition via one or more biosensor signals, such signals being compared by the systems-biology platform against a simulation model or other software prediction.

4. Platform of claim 3 further comprising a regulation overlay.

5. A systems biology platform for computational modeling and simulation of multi-cellular systems or unicellular systems comprising:

internal or external databases, wherein the databases comprise genomics database, protein database, gene expression database, transcriptomics database, proteomics database, metabolomics database, pharmacogenomics database, pharmacokinetics database, disease database or drug database; and

a multifunctional array comprising a microelectronic array of biosensor electrodes in which at least one microelectrode sensor cavity generates controllable electric current or voltage for drawing probes, samples, or reagents to locations on a sensor platform thereby allowing faster, controlled hybridization or analysis thereof, whereby the multifunctional array serves as programmable or logical interconnect for coupling or switching various sensor devices, and interacts with samples and detection system to interpret samples into data accessible from the internal or external databases for automated analysis by a systems-biology platform that electronically configures the microelectronic array to couple or interconnect selectively according to simulation or modeling to access actual host condition via one or more biosensor signals, such signals being compared by the systems-biology platform against a simulation model or other software prediction.

6. The platform of claim 5 further comprising modeling and simulation of tissue engineering, genomic engineering, mutation studies, animal testing, chemical gradients, tissue, plants, bacteria, virus or single cell living things.

7. The platform of claim 5 , wherein the modeling and simulation of biological processes of the multi-cellular systems or unicellular systems further comprises gene transcription, RNA translation, signal transduction pathways and networks, genomic networks, protein networks, whole cell simulation, or cell growth.

8. The platform of claim 5 further comprising verification of hypotheses on the regulation of developing organisms.

9. The platform of claim 5 further comprising monitoring of effects of changing genome on the dynamics of developing organisms.

10. The platform of claim 5 further comprising determination of appropriate therapies or prevention of adverse therapy reactions.

11. The platform of claim 5 further comprising analysis of drug toxicity or drug level in a biological system.

12. The platform of claim 5 further comprising analysis of genetic composition of a biological host, or prediction of drug and food interactions in the host.

13. The platform of claim 5 further comprising generation of automated diagnostic or therapeutic recommendation or report on optimum level of nutritional substance or identification of alternative substance for consumption.

14. The platform of claim 5 further comprising one or more hardware, firmware, source or object code software, configurable logic chip or device, digital signal processor, systolic processing array, finite state machine, secured distributed network, or functionally equivalent components, thereby such system biology platform may be integrated within one or more integrated circuit, module or processor, wherein the systems biology platform may be a standalone system or integrated as a subsystem of a multi-component system.

Continuity (2)
Continuation 10646682 · Aug 22, 2003
Related Publication 20100285082A1 · Nov 11, 2010