EP4234716A2

Methods for determining spatial patterns of biological targets in a sample

Abstract

The present disclosure provides methods and assay systems for use in spatially encoded biological assays, including assays to determine a spatial pattern of abundance, expression, and/or activity of one or more biological targets across multiple sites in a sample. In particular, the biological targets comprise proteins, and the methods and assay systems do not depend on imaging techniques for the spatial information of the targets. The present disclosure provides methods and assay systems capable of high levels of multiplexing where reagents are provided to a biological sample in order to address tag the sites to which reagents are delivered; instrumentation capable of controlled delivery of reagents; and a decoding scheme providing a readout that is digital in nature.

EP4234716A2, drawing sheet 1
Sheet 1 of 15

Term

7.8 yearsto projected expiry

Projected expiry 25 June 2034, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 14 independent, 1 dependent

  1. 1
    A system for determining the presence and/or location of a target polynucleotide in a biological sample, the system comprising:(a) a plurality of first probes, wherein a first probe of the plurality of first probes comprises: (i) a sequence substantially complementary to at least a portion of the target polynucleotide, (ii) a first address tag that identifies a first area in the biological sample, and (iii) a first ligation region;(b) a plurality of second probes, wherein a second probe of the plurality of second probes comprises: (i) a second address tag that identifies a second area in the biological sample and (ii) a second ligation region;(c) a first microfluidic device comprising multiple first addressing channels, wherein the first probe is delivered through a first addressing channel of the multiple first addressing channels to the first area;and (d) a second microfluidic device comprising multiple second addressing channels, wherein the second probe is delivered through a second addressing channel of the multiple second addressing channels to the second area.
  2. 2
    A system for determining the presence and/or location of a target protein in a biological sample, the system comprising:(a) a plurality of first probes, wherein a first probe of the plurality of first probes comprises: (i) a binding moiety that specifically binds to the target protein, and (ii) an oligonucleotide conjugated to the binding moiety;(b) a plurality of second probes, wherein a second probe of the plurality of second probes comprises: (i) a sequence substantially complementary to a portion of the oligonucleotide of step (a), (ii) a first address tag that identifies a first area in the biological sample, and (iii) a first ligation region;(c) a plurality of third probes, wherein a third probe of the plurality of third probes comprises: (i) a second address tag that identifies a second area in the biological sample, and (ii) a second ligation region;(d) a first microfluidic device comprising multiple first addressing channels, wherein the second probe is delivered through a first addressing channel of the multiple first addressing channels;and (e) a second microfluidic device comprising multiple second addressing channels, wherein the third probe is delivered through a second addressing channel of the multiple second addressing channels.
  3. 4
    The system of any one of claims 1-3, wherein the multiple first addressing channels and/or the multiple second addressing channels is n addressing channels, wherein n is an integer between 20 and 1000, optionally wherein n is about 50.
  4. 5
    The system of any one of claims 1-4, wherein the width of each of the multiple first addressing channels and/or each of the multiple second addressing channels is about 1 µm to about 500 µm.
  5. 6
    The system of any one of claims 1-5, wherein the depth of each of the multiple first addressing channels and/or each of the multiple second addressing channels is about 1 µm to about 500 µm.
  6. 7
    The system of any one of claims 1-6, wherein the distance between each of the multiple first addressing channels and/or between each of the multiple second addressing channels is about 1 µm to about 2.0 mm.
  7. 8
    The system of any one of claims 1-8, wherein the second area forms an angle with the first area at an intersection between the first area and the second area, and wherein the angle is about 10 degrees to about 90 degrees, optionally wherein the angle is about 90 degrees.
  8. 9
    The system of any one of claims 1-8, further comprising a module for (i) staining the biological sample using immunohistochemistry, immunofluorescence, hematoxylin, or eosin and (ii) imaging the biological sample.
  9. 10
    The system of any one of claims 1-9, further comprising one or more enzymes selected from a polymerase, a reverse transcriptase, or a ligase.
  10. 11
    The system of any one of claims 1-10, wherein the second probe and/or the third probe further comprises a variable tag region, a primer sequence, a sequencing adaptor, a biotin moiety, or a combination thereof.
  11. 12
    The system of any one of claims 1-11, further comprising a splint oligonucleotide, wherein the splint oligonucleotide is substantially complementary to all or a portion of the first ligation region and all or a portion of the second ligation region.
  12. 13
    The system of any one of claims 2-12, wherein the binding moiety comprises an antibody or an antigen binding fragment thereof, an aptamer, a small molecule, an affinity capture agent, or a combination thereof.
  13. 14
    The system of or any one of claims 1 and 3-13, wherein the target polynucleotide is an mRNA molecule.
  14. 15
    The system of any one claims 1-14, wherein the biological sample is a freshly isolated tissue sample, a fixed tissue sample, a frozen tissue sample, an embedded tissue sample, a processed tissue sample, or a combination thereof, optionally wherein the fixed tissue sample is a formalin-fixed, paraffin-embedded (FFPE) sample.