Literatur
-
1
Bell J.
The
polymerase chain reaction.
Immunol Today.
1989;
10
351-355
-
2
Berger U, Bettelheim R, Mansi J L, Easton D, Coombes R C, Neville A M.
The
relationship between micrometastases in the bone marrow, histopathologic
features of the primary tumor in breast cancer and prognosis.
Amer
J Clin Pathol.
1988;
90
1-6
-
3
Bergsagel P L, Victor-Kobrin C, Timblin C R, Trepel J, Kuehl W M.
A murine
cDNA encodes a pan-epithelial glycoprotein that is also expressed
on plasma cells.
J Immunol.
1992;
148
590-596
-
4
Brugger W, Bross K J, Glatt M, Weber E, Mertelmann R, Kanz L.
Mobilization of tumor cells
and hematopoietic progenitor cells into peripheral blood of patients
with solid tumors.
Blood.
1994;
83
636-640
-
5
Burchill S A, Bradbury M F, Pittman K, Southgate J, Smith B, Selby P.
Detection of epithelial
cancer cells in perpheral blood reverse transcriptase-polymerase
chain reaction.
Brit J Cancer.
1995;
71
278-281
-
6
Cote R J, Rosen P P, Lesser M L, Old L J, Osborne M P.
Prediction
of early relapse in patients with operable breast cancer by detection
of occult bone marrow micrometastases.
J Clin Oncol.
1991;
9
1749-1756
-
7
Datta Y H, Adams P T, Drobyski W R, Ethier S P, Terry V H, Roth M S.
Sensitive detection
of occult Breast cancer by the reverse-transcriptase polymerase
chain reaction.
Journal of Clinical Oncology.
1994;
12
475-482
-
8
Delsol G, Gatter K C, Stein H, Erber W N, Pulfod K AE, Zinne K, Mason D Y.
Human lymphoid
cells express epithelial menbrane antigen.
Lancet.
1984;
2
1124-1128
-
9
Dearnaley D P, Sloane J P, Ormerod M G, Steele K, Coombes R C, Clink H M, Powles T J, Ford H AT, Gazet J C, Neville A M.
Increased
detection of mammary carcinoma cells in marrow smears using antisera
to epithelial membrane antigen.
Br J Cancer.
1981;
44
85-90
-
10
Diel I J, Kaufmann M, Goerner R, Costa S D, Kaul S, Bastert G.
Detection of tumor cells
in bone marrow of patients with primary breast cancer: A prognostic
factor for distant metastasis.
J Clin Oncol.
1992;
10
1534-1539
-
11 Diel I J, Kaufmann M, Costa S D, Bastert G. Monoclonal antibodies
to detect breast cancer cells in bone marrow. Lippincott
Company, Philadelphia 1994: 143-164
-
12
Diel I J, Kaufmann M, Solomayer E F, Wallwiener D, Gollan C, Goerner R, Kaul S, Costa S D, von Minckwitz G, Holle R, Bastert G.
Prognostische Bedeutung
des Tumorzellnachweises im Knochenmark im Vergleich zum Nodalstatus
beim primären Mammakarzinom.
Geburtsh Frauenheilk.
1997;
57
333-341
-
13
Fodstad Ø, Høifødt H K, Rye P D.
New
immunobead techniques for sensitive detection of malignant cells
in blood and bone marrow.
Proc Am Assoc Cancer Res.
1996;
37
214
-
14
Franke W W, Schiller D L, Moll R, Winter S, Schmid E, Engelbrecht E, Denk H, Krepler R, Platzer B.
Diversity
of Cytokeratins. Differatiation specific expression of cytokeratin
polypeptides in epithelial cells and tissues.
J Mol Biol.
1981;
153
933-959
-
15
Funke I, Schraut W.
Meta-analyses
of studies on bone marrow micrometastases: An independent prognostic
impact remains to be substantiated.
J Clin Oncol.
1998;
16
557-566
-
16
Gebhardt F, Zanker K S, Brandt B.
Differential
expression of alternatively spliced c-erbB-2 mRNA in primary tumors,
lymph node metastases, and bone marrow micrometastases from breast
cancer patients.
Biochem Biophys Res Commun.
1998;
247
319-323
-
17
Gerhard M, Juhl H, Kalthoff H, Schreiber H W, Wagener C, Neumaier M.
Specific detection
of Carcinoembryonic antigen-expressing turmor cells in bone marrow
aspirates by polymerase chain reaction.
Journal of Clinical
Oncology.
1994;
12
725-729
-
18
Gold P, Freedman S O.
Demonstration
of tumor specific antigens in human colonic carcinomata by immunologic
tolerance and absorption techniques.
J Exp Med.
1965;
121
439-462
-
19
Graaf D H, Gunhild M ., MÆlandsmo, Ruun P, Forus A, Fφjord T, Fodstad, Hovig E.
Ectopic
Expression of target genes may represent an inherent limitation
of RT-PCR assays used for micrometastasis detection: studies on
the epithelial glycoprotein gene EGP-2.
Int J Cancer.
1997;
72
191-196
-
20
Kaul S ., Zhong X Y, Diel I, Bastert G.
Tumor cell contamination
(TC) in bone marrow of breast cancer patients: Improved sensitivity
and quantification of tumor cells using BM2-immunomagnetic beads.
Arch
of Gyneco Obstet.
1996;
258
192
-
21
Kimoto Y.
A
possibility of all mRNA expression in a human single lymphocyte.
Hum
Cell.
1996;
9
367-370
-
22
Krismann M, Todt B, Schröder J, Gareis D, Müller K M, Seeber S, Schütte J.
Low
specificity of cytokeratin 19 reverse transcriptase-polymerase chain
reaction analyses for detection of hematogenous lung cancer dissemination.
Journal
of Clinical Oncology.
1995;
13
2769-2775
-
23
Kvalheim G, Fjeld J G, Pihl A.
Immunomagnetic
removal of B-Lymphoma cells using a novel mono-sized magnetizable
polymer bead, M-280, in conjunction with primary IgM and IgG antibodies.
Bone Marrow
Transplant.
1989;
4
567
-
24
Landys K, Persson S, Kovarik J, Hultborn R, Holmberg E.
Prognostic value
of bone marrow biopsy in operable breast cancer patients at the
time of initial diagnosis: Results of a 20-year median follow-up.
Breast
Cancer Res Treat.
1998;
49
27-33
-
25
Luke S, Kaul K.
Detection
of breast cancer cells inblood using immunomagnetic bead selection
and reverse transcription-polymerase chain reaction.
Mol
Diagn.
1998;
3
149-155
-
26
Moreno J G, Croce C M, Fischer R, Monne M, Vihko P, Mulholland G, Gomella L G.
Detection
of hematogenous micrometastasis in patients with prostate cancer.
Cancer
Res.
1992;
52
6110-6112
-
27
Myers T W, Gelfand D H.
Reverse transcription
and DNA amplification by a Thermus thermophilus DANN polymerase.
Biochemistry.
1991;
30
7661-7666
-
28
Naito H, Kuzumaki N, Uchino J, Kobayashi R, Shikano T, Ishikawa Y, Matsumoto S.
Detection of Tyrosine
Hydroxylase mRNA and minimal neuroblastoma cells by the reverse
transcription polymerase chain reaction.
Eur J Cancer.
1991;
27
762-765
-
29
Naume B, Borgen E, Nesland J M, Beiske K, Gilen E, Renolen A, Ravnas G, Qvist H, Karesen R, Kvalheim G.
Increased sensitivity
for detection of micrometastases in bone-marrow/peripheral-blood stem-cell
products from breast-cancer patients by negative immunomagnetic
separation.
Int J Cancer.
1998;
78
556-560
-
30
Noguchi S, Aihara T, Nakamori S, Motomura K, Inaji H, Imaoka S, Koyama H.
The
detection of breast carcinoma micrometastases in axillary lymph
nodes by means of reverse transcriptase-polymerase chain reaction.
Cancer.
1994;
74
1595-1600
-
31
Pantel K, Schlimok G, Angstwurm M, Weckermann C, Schmaus W, Gath H, Passlick B ., Izbicki J, Riethmüller G.
Methodological
analysis of immunocytochemical screening for disseminated epithelial
tumor cells in bone marrow.
J Hematother.
1994;
3
165-173
-
32 Pantel K, Braun S, Passlick B, Schlimok G. Minimal residual epithelial
cancer: Diagnostic approaches and prognostic relevance. Gustav Fischer
Verlag, Stuttgart, New York 1996
-
33
Peters W P, Ross M, Vredenburgh J J, Meisenberg B, Marks L B, Winer E, Kurtzberg J, Bast R C, Jones R, Shpall E.
High-dose chemotherapy and
autologous bone marrow support as consolidation after standard-dose
adjuvant therapy for high-risk primary breast cancer.
J Clin
Oncol.
1993;
11
1132-1143
-
34
Ross A A., Cooper B M, Lazarus H M, Mackay W, Moss T J, Cibanu N, Tallman M S, Kennedy M J, Davidson N E, Sweet D.
Detection and viability
of tumor cells in peripheral blood stem cell collections from breast
cancer patients using immunocytochemical and clonogenic assy techniques.
Blood.
1993;
82
2605-2610
-
35
Saiki R K, Scharf S, Faloona F, Mullis K B, Horn G T, Erlich H A, Arnheim N.
Enzymatic
amplification of beta-globin genomic sequences and restriction site
analysis for diagnosis of sickle cell anemia.
Science.
1985;
230
1350-1354
-
36 Schildberg F W, Kiffner E. Interdisziplinäre
Therapie des Mammakarzinoms. perimed Fachbuch-Verlagsgesellschaft
mbH 1985
-
37
Schlimok G, Funke I, Bock B, Schweiberer B, Witte J, Riethmuller G.
Epithelial
tumor cells in bone marry of patients with colorectal cancer: Immunocytochemical
detection, phenotypic characterization, and prognostic significance.
J
Clin Oncol.
1990;
8
831-837
-
38
Schlimok G, Pantel K, Loibner H, Fackler-Schwalbe I, Riethmüller G.
Reduction
of metastatic carcinoma cells in bone marrow by intravenously administered
monoclonal antibody: towards a noval surrogate test to monitor adjuvant
therapies of solid tumours.
Eur J Cancer.
1995;
31
1799-1803
-
39
Schlimok G.
Techniken
zur Erkennung minimal residueller Erkrankung.
Zytologie
Onkolge.
1997;
3
293-297
-
40
Shea T C, Mason J R, Storniolo, AM.
Sequential cycles of high-dose carboplatin
administered with recombinant granulocyte-macrophage colony-stimulating
factor and repeated infusion of autologous peripheral blood progenitor
cells: A novel and effective method for delivering multiple courses
of dose-intensive therapy.
J Clin Oncol.
1992;
10
464-473
-
41
Smith B, Selby P, Southgate J, Pittman K, Bradley C, Blair G E.
Detection
of melanoma cells in peripheral blood by means of reverse transcriptase
and polymerase chain reaction.
Lancet.
1991;
338
1227-1229
-
42
Sohn C, Baudendistel A, Thiel C, Kaufmann M, Bastert G.
Die sonographisch nachgewiesene
Gefäßdichte: Ein neuer Prognosefaktor?.
Zbl
Gynäk.
1996;
118
-
43
Untch M, Harbeck N, Eiermann W.
Micrometastases in
bone marrow in patients with breast cancer.
British Medical
Journal.
1988;
296
290
-
44
Zhong X Y, Kaul S, Diel I, Bastert G.
Tumor
cell contamination (TC) in bone marrow of breast cancer patients:
sensitive detection by reverse transcriptase-polymerase chain reactions
for MUC1, CEA, keratin 19 and GA733-2.
Arch of
Gyneco Obstet.
1996;
258
92
-
45
Zhong Y X, Kaul S, Eichner A, Bastert G.
Low
specificity of MUC1 as a marker to detect epithelial cancer dissemination
in human bone marrow and blood.
Clin Lab.
1998;
44
971-978
-
46
Zhong Y X, Kaul S, Eichner A, Diel I, Bastert G.
Analysis of sensitivity and
specificity of cytokeratin 19 reverse transcriptase polymerase chain
reaction for detection of occult breast cancer in bone marrow and
leukapheresis products.
Cancer Res and Clin Oncol.
1999;
125
286-291
-
47 Zhong Y X, Kaul S, Eichner A, Bastert G. Evaluating
GA733-2 mRNA as a marker for the detection of micrometastatic
breast cancer in peripheral blood and bone marrow. Arch
of Gyneco Obstet 1999 263: 2-7
-
48
Zhong Y X, Kaul S, Eichner A, Diel I, Bastert G.
Sensitivity and specificity
of immunocytochemistry for the detection of tumor cells in the bone
marrow of patients with breast cancer.
Tumor Diagnostik.
1999c;
20
39-44
-
49 Zhong Y X, Kaul S, Eichner A, Bastert G. Evaluation
of carcinoembryonic antigen reverse transcriptase-polymerase chain
reaction for the detection of breast cancer dissemination in bone
marrow and peripheral blood. Cancer Res and Clin Oncol 1999 125: 669-675
-
50 Lin Y S, Zhong X Y, Hohaus S, Kaul S, Haas R. Detection
of tumor cells in leukapheresis products from patients with breast
cancer using immunocytochemical staining method. Arch
of Gyneco Obstet 2000 263: 119-126
-
51 Zhong X Y, Kaul S, Lin Y S, Eichler A, Bastert G. Sensitive
detection of micrometastases in bone marrow from patients with breast
cancer using immunomagnetic isolation of tumor cells in combination with
reverse transcriptase polymerase chain reaction for cytokeratin-19. Cancer
Res and Clin Oncol 2000 126: 212-218
Korrespondenz
Dr. X. Y. Zhong
Frauenklinik
Universität Basel
Schanzenstrasse 46
CH-4031 Basel
Phone: 0041/61/325 9220
Fax: 0041/61/325 9399
Email: Zhong@unibas.ch