Sensor for measuring a bioanalyte such as lactate

Chemistry: electrical and wave energy – Apparatus – Electrolytic

Reexamination Certificate

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C204S403150, C204S403010

Reexamination Certificate

active

06464849

ABSTRACT:

FIELD OF THE INVENTION
This invention relates to sensors for measuring bioanalytes and to methods for making such sensors. More particularly, the invention relates to sensors for sensing lactate and to methods for making such sensors.
BACKGROUND OF THE INVENTION
Lactate is a small molecule that is produced by all tissues and organs of a patient's body that are in “distress.” Wherever in the patient's body the demands for oxygen exceed the supply, then a state of low perfusion exists and lactate is produced. For example, lactate is produced if a patient is bleeding, if a patient's heart is failing, if a person's limb is in danger of being lost, or if a person is not getting enough oxygen to breathe. Thus many life and limb threatening clinical states produce elevated blood lactate levels, even in the face of adequate oxygen delivery to the patient. It is a matter of oxygen supply and metabolic demand.
At the cellular level, lactate is inversely proportional to the vital cellular energy stores of adenosine triphosphate and is produced within six seconds of inadequate perfusion or cellular injury. It is thus an ideal biochemical monitor of cellular viability at the tissue level, and of patient viability at the systemic level.
Clinically, the dire significance of elevated and rising blood lactate values is known. Trauma physicians and clinical evidence support the hypothesis that a simple, inexpensive, continuous, monitor of lactate in the trauma setting, will save lives by providing timely, life-saving information that will help dictate triage and therapy. For example, an emergency room patient who has a blood lactate level of 4 mM has a 92% mortality rate within the next 24 hours. If this level is 6 mM, then the mortality rate rises to 98%. In animal experiments, blood lactate levels begin to rise within minutes of hemorrhage, and conversely, begin to fall just as quickly with adequate resuscitation. In multivariate analysis, blood lactate is the best indicator of the degree of shock (superior to blood pressure, heart rate, urine output, base deficit, blood gas and Swan-Ganz data) and is proportional to the shed blood volume. Blood lactate levels correlate with a trauma patient's chances of survival. Therapy that fails to control a patient's increasing lactate levels must be modified or additional diagnoses quickly sought.
Sensors have been developed for detecting lactate concentrations in a given fluid sample. For example, U.S. Pat. Nos. 5,264,105; 5,356,786; 5,262,035; and 5,320,725 disclose wired enzyme sensors for detecting analytes such as lactate or glucose.
SUMMARY OF THE INVENTION
One aspect of the present invention relates to a sensor including a bundle of electrically conductive fibers. The sensor also includes a sensing material coating at least some of the fibers in the bundle, and an insulating layer surrounding the bundle of electrically conductive fibers. The conductive fibers provide a large substrate surface area for supporting the sensing material. Thus, the sensor has a large surface area of sensing material even at small sizes. This large surface area of sensing material provides numerous advantages. For example, the large surface area assists in improving the response/sensing time of the sensor. Also, the large surface area assists in lengthening the useful life of the sensor.
Another aspect of the present invention relates to a method for making a sensor. The method includes applying a sensing material to a bundle of electrically conductive fibers. The method also includes covering the bundle of electrically covered fibers with an insulating layer after the sensing material has been applied to the fibers.
These and various other features which characterize the invention are pointed out with particularity in the attached claims. For a better understanding of the invention, it's advantages, and objectives obtained by its use, reference should be made to the drawings and to the accompanying description, in which there is illustrated and described preferred aspects of the present invention.


REFERENCES:
patent: 4008717 (1977-02-01), Kowarski
patent: 4573968 (1986-03-01), Parker
patent: 4640821 (1987-02-01), Mody et al.
patent: 4734184 (1988-03-01), Burleigh et al.
patent: 4919649 (1990-04-01), Timothy et al.
patent: 5004583 (1991-04-01), Guruswamy et al.
patent: 5112455 (1992-05-01), Cozzette et al.
patent: 5165406 (1992-11-01), Wong
patent: 5220920 (1993-06-01), Gharib
patent: 5243982 (1993-09-01), Möstl et al.
patent: 5264105 (1993-11-01), Gregg et al.
patent: 5271815 (1993-12-01), Wong
patent: 5330634 (1994-07-01), Wong et al.
patent: D354347 (1995-01-01), Knute et al.
patent: D354559 (1995-01-01), Knute et al.
patent: 5384028 (1995-01-01), Ito
patent: 5431174 (1995-07-01), Knute
patent: 5503728 (1996-04-01), Kaneko et al.
patent: 5505828 (1996-04-01), Wong et al.
patent: 5512159 (1996-04-01), Yoshioka et al.
patent: 5609749 (1997-03-01), Yamauchi et al.
patent: 0 256 415 (1988-02-01), None
patent: 0 327 658 (1989-08-01), None
patent: 0 420 296 (1991-04-01), None
patent: WO 96/22730 (1996-08-01), None
Jaraba et al. (“NADH amperometirc sensor based on poly93-methylthiopene)-coated cylindrical carbon fiber microelectrodes: application to the enzymatic determination of L-lactate”, Electrochimica Acta, vol. 43, No. 23, pp. 3555-3565, 1998).*
Netchiporouk et al. (“Properties of carbon fibre microelectrodes as a basis for enzyme biosensors”, Analytica chimica Acta 303 (1995) 275-283).*
Sakslund, H. et al., “Development and evaluation of glucose microsensors based on electrochemical codeposition of ruthenium and glucose oxidase onto carbon fiber microelectrodes,”Journal of Electroanalytical Chemistry, vol. 397, pp. 149-155 (1995).
Sakslund, H. et al., “Analysis of the factors determining the sensitivity of a miniaturized glucose biosensor made by codeposition of palladium and glucose oxidase onto an 8 &mgr;m carbon fiber,”Journal of Electroanalytical Chemistry, vol. 402, pp. 149-160 (1996).

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