IP Library Granted Patent US 8,986,945
Granted Patent B2
US 8,986,945 · App. 11/841,972 · Granted Mar 24, 2015

Methods and compositions for detecting rare cells from a biological sample

Inventors: Ping Lin (San Diego, CA); Andrea Ghetti (San Diego, CA); Wenge Shi (San Marcos, CA); Mengjia Tang (San Diego, CA); Gioulnar I. Harvie (San Diego, CA); Huimin Tao (San Diego, CA); Guoliang Tao (San Diego, CA); Lei Wu (San Diego, CA); David Cerny (San Diego, CA); Jia Xu (San Diego, CA); Douglas T. Yamanishi (Redondo Beach, CA)
Assignee: Aviva Biosciences Corporation
C12N5/0693G01N33/5094G01N33/54346G01N33/56972G01N33/574G01N2333/70525G01N2333/70589G01N2800/52
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Quick Facts
Patent No.
US 8,986,945
App. No.
11/841,972
Granted
Mar 24, 2015
Kind
B2
Abstract

Provided are methods and compositions for isolating and detecting rare cells from a biological sample containing other types of cells, particularly including debulking that uses a microfabricated filter for filtering samples. The enriched rare cells can be used in a downstream process such as identification, characterization or growth in culture, or in other ways. Also included is a method of determining tumor aggressiveness or the number or proportion of cancer cells in the enriched sample by detecting telomerase activity, nucleic acid or expression after enrichment of rare cells. Also provided is an efficient, rapid method to specifically remove red and white blood cells from a biological sample containing at least one of the cell types, leading to enrichment of rare target cells including circulating tumor (CTC), stromal, mesenchymal, endothelial, fetal, stem, or non-hematopoietic cells et cetera from a blood sample.

Claims (25)

1. A method for isolating a target cell from a biological sample containing other types of cells, said method comprising:

a) enriching the sample by selectively removing at least one non-target cell type without removing the target cell;

b) debulking the sample by reducing the sample volume without removing the target cell; and

c) subjecting the enriched sample comprising the target cell to a downstream process that identifies, characterizes, or utilizes the target cell population

wherein the target cell is an epithelial cell, a mesenchymal cell, a tumor cell, an infected cell, a mutated cell, a damaged cell, a stem cell, or a fetal cell, and

1) wherein the target cell is identified by detection of telomerase activity or by detection of a CD44 splice variant; or

2) wherein the method further comprises a step of determining whether the target cell has a therapeutic antibody bound to it; or

3) wherein the method is used to evaluate a cancer therapeutic process or to determine a clinical end point for a cancer drug evaluation process.

2. A method for isolating a target cell from a biological sample containing other types of cells, said method comprising:

a) enriching the sample by selectively removing at least one non-target cell type without removing the target cell;

b) debulking the sample by reducing the sample volume without removing the target cell; and

c) subjecting the enriched sample comprising the target cell to a downstream process that identifies, characterizes, or utilizes the target cell population,

wherein the target cell is an epithelial cell, a mesenchymal cell, a tumor cell, an infected cell, a mutated cell, a damaged cell, a stem cell, or a fetal cell,

wherein the presence, number, proportion, or property of the target cell(s) in the sample is used to evaluate the subject from which the biological sample is obtained, and

1) wherein the isolated target cell is grown in suitable media to produce a culture of cancerous cells; or

2) wherein the target cell is a cell to which a therapeutic antibody is bound.

3. The method of claim 2 , wherein the culture of cancerous cells is used to evaluate a drug candidate or a cancer therapy treatment protocol.

4. A method for detecting a non-hematopoietic cancer cell in a blood sample, comprising the steps of:

a) removing the majority of the hematopoietic cells from the sample using depletion methods without removing the cancer cells if any are present, to provide an enriched sample; and

b) assessing the presence or activity level of telomerase in the enriched sample, or detecting the presence or expression level in the enriched sample of a nucleic acid that encodes telomerase;

wherein the presence or amount of telomerase activity or telomerase nucleic acid or telomerase expression is used to determine a probability that the blood sample contained at least one cancer cell.

5. The method of claim 4 , wherein the presence or activity level of telomerase in the enriched sample is assessed by telomerase repeat amplification protocol (TRAP).

6. The method of claim 4 , wherein the presence of telomerase in the enriched sample is determined using immunodetection methods to detect the telomerase protein itself.

7. The method of claim 4 , which comprises removing white blood cells (WBCs) by allowing them to bind to a specific binding member affixed to a solid support.

8. The method of claim 7 , wherein the specific binding member is a CD50 antibody or a CD45 antibody.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2014
From: YAMANISHI, DOUGLAS T.
To: AVIVA BIOSCIENCES CORPORATION
Reel/Frame 033479/0089 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2010
From: LIN, PING; GHETTI, ANDREA; SHI, WENGE; TANG, MENGJIA; HARVIE, GIOULNAR I.; TAO, HUIMIN; TAO, GUOLIANG; WU, LEI; CERNY, DAVID; XU, JIA
To: AVIVA BIOSCIENCES CORPORATION
Reel/Frame 023799/0549 →
Continuity (4)
Continuation 11777962 · Jul 13, 2007
Continuation In Part 11497919 · Aug 2, 2006
Provisional Application 60831156 · Jul 14, 2006
Related Publication 20080206757A1 · Aug 28, 2008