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selected publications
Wu M,
Jung L, Cooper AB, Fleet C, Chen C, Breault L, Clark K, Cai Z, Vincent S,
Bottega S, Shen Q, Richardson A, Bosenburg M, Naber SP, DePinho RA, Kuperwasser
C, Robinson MO. Tissue transgenic model of human breast cancer in mice. Proc.
Natl. Acad. Sci 28;106(17):7022-7, 2009
DiMeo TA, Anderson K, Fen, C., Padkhe P, Naber S, Perou C., Kuperwasser C. A
novel lung metastasis signature links wnt signaling with cancer cell
self-renewal and the epithelial-mesenchymal transition in basal-like breast
cancer. Cancer Research 69:5364-73, 2009.
Gupta, P.B., Onder, T.T., Jiang, G., Tao, K., Kuperwasser, C., Weinberg, R.A.,
Lander, E.S. Identification of selective inhibitors of cancer stem cells by
high-throughput screening Cell 138(4):645-59, 2009.
Arendt LM, Rudnick JA, Keller PJ,Kuperwasser C#. Stroma in Breast Development
and Disease. Seminars in Cellular Biology (in press) 2009 Oct 24. [Epub ahead of
print]
Fillmore
C, Kuperwasser C. Human breast cancer cell lines contain stem-like cells
with the capacity to self-renew, give rise to phenotypically diverse progeny and
survive chemotherapy. Breast Cancer Research Mar 26;10(2):R25, 2008.
Maroulakou
I, Oemler W, Naber SP, Klebba I, Kuperwasser C, Tsichlis P. Distinct
roles of three Akt isoforms in lactogenic differentiation and involution. Journal
of Cellular Physiology 217:468-477, 2008.
Christine
Fillmore, Charlotte Kuperwasser
Human breast cancer stem cell markers CD44 and CD24: enriching for cells
with functional properties in mice or in man.
Breast Cancer Research 2007;9(3):303.,
2007. Click here for text.
Paulson KE, Rieger-Christ, K, McDevitt MA, Kuperwasser
C, Kim J, Zhang X, Hu M, Berasi SP, Huang C, Paganelli, RH, Dilip Giri, MD;
Seth Kauffman, MD; Joanne Blum, MD;Netto G, Huang Z, Wazer DE, Summerhayes IC,
Yee AS. Alterations of the HBP1 transcriptional repressor are associated with
invasive breast cancer, Cancer Research
67(13):6136-45.), 2007.
Thuy L. Phung, Godfred Eyiah-Mensah, Rebekah
O’Donnell, Sharon Shechter, Kenneth Walsh, Charlotte
Kuperwasser, Laura E. Benjamin. Endothelial
Akt signaling is rate limiting for rapamycin inhibition of mouse mammary tumor
progression. Cancer Research 67(11):5070-5, 2007.
Boutrus S., Hwu D., Chan, M,
Kuperwasser C., Lin C., Gerogakoudi I., A Portable Two-Color In
Vivo Flow Cytometer for Real-Time Detection of Fluorescently-Labeled
Circulating Cells, Journal of
Biomedical Optics Letters 12(2):
e1-3, 2007. Click here for
text.
Gupta PB, Proia D, Weremowicz J, Naber
S, Weinberg R, Kuperwasser C., Systemic stromal effects of estrogen
promotes the growth of estrogen receptor-negative cancers, Cancer Research
67(5):2062-71, 2007.
Click here for text.
Piyush B. Gupta, Charlotte Kuperwasser,
Contributions of estrogen to ER-negative breast tumor growth. Journal
of Steriod Biochemistry & Molecular Biology, 102(1-5):71-8, 2006
David
Proia, Charlotte Kuperwasser. Reconstruction of human mammary tissues in
a mouse model Nature
Protocols 1(1):
206-241, 2006. Click here for
text.
Gupta, PB, Kuperwasser, C, Brunet, J-P.,
Ramaswamy, S., Naber,
SP., Weinberg, RA. The melanocyte
differentiation program predisposes for metastasis following neoplastic
transformation, Nature Genetics
37(10):1047-1054,2005.
DiMeo TA, Kuperwasser C., The evolving paradigm of tissue-specific
metastasis. Breast Cancer Research 8:301-303, 2005. Click here
for text.
Charlotte Kuperwasser,
Scott Dessain , Benjamin E. Bierbaum, Dan Garnet, Kara Sperandio, Stephan, Naber,
Robert A. Weinberg, Michael Rosenblatt, A mouse model of human breast cancer
metastasis to human bone, Cancer Research, 65:6130-6138,2005.
Click here for text.
Proia D, Kuperwasser C. Stroma: tumor agonist or antagonist,
Cell Cycle 4(8): 1022-1025, 2005.
Gupta P.B., Kuperwasser C. Disease
models of Breast cancer, Drug Discovery Today, 1: 9-16,2004.
Click here for text.
Charlotte Kuperwasser,
Tony Chavarria, Min Wu,Greg Magrane, Joe W Gray, Loucinda Carey, Andrea
Richardson, Robert A. Weinberg,
Reconstruction of functionally normal and malignant human breast tissues in
mice, Proc. Natl. Acad. Sci,
101: 4966-4971, 2004. Click here
for text.
Kuperwasser,
C., Hurlbut, G.D., Kittrell, F.S.,
Dickenson, E., Laucirica, R.,
Medina
, D., Naber, S.P., Jerry, D.J.
“Development of spontaneous mammary tumors in BALB/c p53-heterozygous mice: a
model for Li-Fraumeni
syndrome”. Am
J
Pathol,157:
2151-2159, 2000.
C.
Kuperwasser, J. Pinkas, G.D. Hurlbut, S.P.
Naber, D.J. Jerry. “Cytoplasmic sequestration and functional
repression of
p53 in the mammary epithelium is reversed by hormonal treatment”. Cancer
Res, 60: 2723-2729, 2000.
Jerry,
D.J., Kittrell, F.S., Kuperwasser, C.,
Dickinson
, E.S., Bonilla, P.J., Butel, J.S.,
Medina
, D., “A
mammary-specific model demonstrates the role for the p53 tumor suppressor gene
in tumor development”.
Oncogene,
19: 1052-1058, 2000.
Jerry, D.J., Pinkas, J., Kuperwasser, C.,
Dickinson
, E.S., Naber, S.P. “Regulation of the p53 tumor suppressor gene and its
targets during involution”. J Mamm Biol Neo, 4: 177-181, 1999.
D.J. Jerry, C. Kuperwasser,
S.R.Downing, J. Pinkas, C. He,
E. Dickinson
, S.Marconi, S.P. Naber. “Delayed involution of the mammary gland in BALB/c
null mice”. Oncogene, 17: 2305-2312, 1998.
D.
Medina, L.C. Stephens, P.J. Bonilla, C.A. Hollmann, D. Schwahn, C.
Kuperwasser, D.J. Jerry, J.S. Butel, R.E.
Meyn.
“Radiation-induced tumorigenesis in preneoplastic mouse mammary glands in
vivo: significance of p53 status
and
apoptosis”. Mol Carcinogenesis, 22: 199-207, 1998.
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