LAMA2, PLXDC2 and MLL4 as novel biomarkers for prediabetes and diabetes
The invention relates to LAMA2, PLXDC2 and MLL4 as novel biomarkers for prediabetes and diabetes. Specifically, use of a set of probes with specific binding affinities to prediabetes and diabetes protein markers comprising MLL4, LAMA2, and PLXDC2 for screening prediabetes and diabetes for care and/or treatment is disclosed. The set of probes comprises a first probe, a second probe and a third probe having specific binding affinities to the MLL4, LAMA2, and PLXDC2, respectively. A diagnostic kit device/apparatus comprising a set of probes is disclosed. A method for detecting and identifying prediabetes and/or diabetes in a subject in need thereof is also disclosed. The subject in need thereof identified as having prediabetes or diabetes is subject to a care and/or a treatment regime for the prediabetes or diabetes. Also disclosed is a method for identifying prediabetes and/or diabetes protein markers.
1 . A lateral flow diagnostic device for detecting and identifying prediabetes and/or diabetes, comprising:
(i) a substrate having a top surface and a bottom surface opposite to the top surface, and a top end and a bottom end opposite to the top end;
(ii) a sample loading area;
(iii) a capture antibody area, containing capture antibodies immobilized to the substrate in the capture antibody area to capture prediabetes and diabetes protein markers consisting of MLL4, LAMA2 and PLXDC2;
(iv) a reagent area, containing a conditioning reagent;
(v) a detection antibody area, containing detection antibodies to detect the captured prediabetes and diabetes protein markers consisting of the MLL4, LAMA2 and PLXDC2; and
(vi) optionally a positive control area;
wherein the sample loading area, the detection antibody area, the reagent area, the capture antibody area, and the positive control area are located on the top surface of the substrate, allowing these areas to be in fluidic communication, the sample loading area being located at the top end and the capture antibody area located at the bottom end with the optionally positive control area located either after or before the capture antibody area.
2 . The lateral flow diagnostic device of claim 1 , wherein the capture antibodies and detection antibodies are polyclonal antibodies.
3 . The lateral flow diagnostic device of claim 1 , wherein the capture antibodies and detection antibodies are monoclonal antibodies.
4 . The lateral flow diagnostic device of claim 1 , wherein the detection antibodies are labeled with colloidal gold, or a color-generating enzyme, and the conditioning reagent comprises a substrate for the color-generating enzyme.
5 . A method for detecting and identifying prediabetes and/or diabetes, comprising:
(a) providing the lateral flow diagnostic device of claim 1 ;
(b) supplying a serum sample from a subject in need thereof, and
(c) detecting whether the levels of prediabetes and diabetes protein markers consisting of MLL4, LAMA2 and PLXDC2 in the serum sample are increased as compared with a healthy control, wherein an increase in the levels of the protein markers MLL4, LAMA2, and PLXDC2 is indicative of the subject in need thereof having the prediabetes or diabetes.
6 . The method of claim 5 , wherein the detection antibody area shows color signals when the levels of the markers in the serum sample are above a decision threshold.
7 . The method of claim 5 , wherein the detecting step is performed by visualizing a color change.
8 . A method of manufacture of the lateral flow diagnostic device for detecting prediabetes and/or diabetes of claim 1 , comprising providing a set of antibodies with specific binding affinities to prediabetes and diabetes protein markers consisting of MLL4, LAMA2, and PLXDC2, wherein the set of antibodies comprises:
(a) a first antibody having a specific binding affinity to the MLL4;
(b) a second antibody having a specific binding affinity to the LAMA2; and
(c) a third antibody having a specific binding affinity to the PLXDC2.