In the era of precision oncology, major strides are being made to use individual tumor information for clinical decision-making. Differing from traditional biopsy methods, the emerging practice of liquid biopsy provides a minimally invasive way of obtaining tumor cells and derived molecules. Liquid biopsy provides a means to detect and monitor disease progression, recurrence, and treatment response in a noninvasive way, and to potentially complement classical biopsy. Uveal melanoma (UM) is a unique malignancy, with diagnosis heavily reliant on imaging, few repeat biopsies, and a high rate of metastasis, which occurs hematogenously and often many years after diagnosis. In this disease setting, a noninvasive biomarker to detect, monitor, and study the disease in real time could lead to better disease understanding and patient care. While advances have been made in the detection of tumor-disseminated components, sensitivity and specificity remain important challenges. Ambiguity remains in how to interpret current findings and in how liquid biopsy can have a place in clinical practice. Related publications in UM are few compared to other cancers, but with further studies we may be able to uncover more about the biology of disseminated molecules and the mechanisms involved in the progression to metastasis.

1.
McLaughlin
CC
,
Wu
XC
,
Jemal
A
,
Martin
HJ
,
Roche
LM
,
Chen
VW
.
Incidence of noncutaneous melanomas in the U.S
.
Cancer
.
2005
Mar
;
103
(
5
):
1000
7
.
[PubMed]
0008-543X
2.
Ghazawi
FM
,
Darwich
R
,
Le
M
,
Rahme
E
,
Zubarev
A
,
Moreau
L
, et al.
Uveal melanoma incidence trends in Canada: a national comprehensive population-based study
.
Br J Ophthalmol
.
2019
Dec
;
103
(
12
):
1872
6
.
[PubMed]
0007-1161
3.
Virgili
G
,
Gatta
G
,
Ciccolallo
L
,
Capocaccia
R
,
Biggeri
A
,
Crocetti
E
, et al.;
EUROCARE Working Group
.
Incidence of uveal melanoma in Europe
.
Ophthalmology
.
2007
Dec
;
114
(
12
):
2309
15
.
[PubMed]
0161-6420
4.
Van Raamsdonk
CD
,
Bezrookove
V
,
Green
G
,
Bauer
J
,
Gaugler
L
,
O’Brien
JM
, et al.
Frequent somatic mutations of GNAQ in uveal melanoma and blue naevi
.
Nature
.
2009
Jan
;
457
(
7229
):
599
602
.
[PubMed]
0028-0836
5.
Van Raamsdonk
CD
,
Griewank
KG
,
Crosby
MB
,
Garrido
MC
,
Vemula
S
,
Wiesner
T
, et al.
Mutations in GNA11 in uveal melanoma
.
N Engl J Med
.
2010
Dec
;
363
(
23
):
2191
9
.
[PubMed]
0028-4793
6.
Chen
X
,
Wu
Q
,
Tan
L
,
Porter
D
,
Jager
MJ
,
Emery
C
, et al.
Combined PKC and MEK inhibition in uveal melanoma with GNAQ and GNA11 mutations
.
Oncogene
.
2014
Sep
;
33
(
39
):
4724
34
.
[PubMed]
0950-9232
7.
Moore
AR
,
Ceraudo
E
,
Sher
JJ
,
Guan
Y
,
Shoushtari
AN
,
Chang
MT
, et al.
Recurrent activating mutations of G-protein-coupled receptor CYSLTR2 in uveal melanoma
.
Nat Genet
.
2016
Jun
;
48
(
6
):
675
80
.
[PubMed]
1061-4036
8.
Johansson
P
,
Aoude
LG
,
Wadt
K
,
Glasson
WJ
,
Warrier
SK
,
Hewitt
AW
, et al.
Deep sequencing of uveal melanoma identifies a recurrent mutation in PLCB4
.
Oncotarget
.
2016
Jan
;
7
(
4
):
4624
31
.
[PubMed]
1949-2553
9.
Amaro
A
,
Gangemi
R
,
Piaggio
F
,
Angelini
G
,
Barisione
G
,
Ferrini
S
, et al.
The biology of uveal melanoma
.
Cancer Metastasis Rev
.
2017
Mar
;
36
(
1
):
109
40
.
[PubMed]
0167-7659
10.
Harbour
JW
,
Chen
R
.
The DecisionDx-UM Gene Expression Profile Test Provides Risk Stratification and Individualized Patient Care in Uveal Melanoma
.
PLoS Curr
.
2013
Apr
;
5
:
5
.
[PubMed]
2157-3999
11.
Onken
MD
,
Worley
LA
,
Ehlers
JP
,
Harbour
JW
.
Gene expression profiling in uveal melanoma reveals two molecular classes and predicts metastatic death
.
Cancer Res
.
2004
Oct
;
64
(
20
):
7205
9
.
[PubMed]
0008-5472
12.
Horsman
DE
,
Sroka
H
,
Rootman
J
,
White
VA
.
Monosomy 3 and isochromosome 8q in a uveal melanoma
.
Cancer Genet Cytogenet
.
1990
Apr
;
45
(
2
):
249
53
.
[PubMed]
0165-4608
13.
Prescher
G
,
Bornfeld
N
,
Hirche
H
,
Horsthemke
B
,
Jöckel
KH
,
Becher
R
.
Prognostic implications of monosomy 3 in uveal melanoma
.
Lancet
.
1996
May
;
347
(
9010
):
1222
5
.
[PubMed]
0140-6736
14.
Damato
B
,
Duke
C
,
Coupland
SE
,
Hiscott
P
,
Smith
PA
,
Campbell
I
, et al.
Cytogenetics of uveal melanoma: a 7-year clinical experience
.
Ophthalmology
.
2007
Oct
;
114
(
10
):
1925
31
.
[PubMed]
0161-6420
15.
Harbour
JW
,
Onken
MD
,
Roberson
ED
,
Duan
S
,
Cao
L
,
Worley
LA
, et al.
Frequent mutation of BAP1 in metastasizing uveal melanomas
.
Science
.
2010
Dec
;
330
(
6009
):
1410
3
.
[PubMed]
0036-8075
16.
Shain
AH
,
Bagger
MM
,
Yu
R
,
Chang
D
,
Liu
S
,
Vemula
S
, et al.
The genetic evolution of metastatic uveal melanoma
.
Nat Genet
.
2019
Jul
;
51
(
7
):
1123
30
.
[PubMed]
1061-4036
17.
van Poppelen
NM
,
Drabarek
W
,
Smit
KN
,
Vaarwater
J
,
Brands
T
,
Paridaens
D
, et al.
SRSF2 Mutations in Uveal Melanoma: A Preference for In-Frame Deletions?
Cancers (Basel)
.
2019
Aug
;
11
(
8
):
1200
.
[PubMed]
2072-6694
18.
Park
JJ
,
Diefenbach
RJ
,
Joshua
AM
,
Kefford
RF
,
Carlino
MS
,
Rizos
H
.
Oncogenic signaling in uveal melanoma
.
Pigment Cell Melanoma Res
.
2018
Nov
;
31
(
6
):
661
72
.
[PubMed]
1755-1471
19.
Field
MG
,
Durante
MA
,
Anbunathan
H
,
Cai
LZ
,
Decatur
CL
,
Bowcock
AM
, et al.
Punctuated evolution of canonical genomic aberrations in uveal melanoma
.
Nat Commun
.
2018
Jan
;
9
(
1
):
116
.
[PubMed]
2041-1723
20.
Augsburger
JJ
,
Corrêa
ZM
,
Augsburger
BD
.
Frequency and implications of discordant gene expression profile class in posterior uveal melanomas sampled by fine needle aspiration biopsy
.
Am J Ophthalmol
.
2015
Feb
;
159
(
2
):
248
56
.
[PubMed]
0002-9394
21.
De Mattos-Arruda
L
,
Mayor
R
,
Ng
CK
,
Weigelt
B
,
Martínez-Ricarte
F
,
Torrejon
D
, et al.
Cerebrospinal fluid-derived circulating tumour DNA better represents the genomic alterations of brain tumours than plasma
.
Nat Commun
.
2015
Nov
;
6
(
1
):
8839
.
[PubMed]
2041-1723
22.
Berry
JL
,
Xu
L
,
Murphree
AL
,
Krishnan
S
,
Stachelek
K
,
Zolfaghari
E
, et al.
Potential of Aqueous Humor as a Surrogate Tumor Biopsy for Retinoblastoma
.
JAMA Ophthalmol
.
2017
Nov
;
135
(
11
):
1221
30
.
[PubMed]
2168-6165
23.
Bidard
FC
,
Madic
J
,
Mariani
P
,
Piperno-Neumann
S
,
Rampanou
A
,
Servois
V
, et al.
Detection rate and prognostic value of circulating tumor cells and circulating tumor DNA in metastatic uveal melanoma
.
Int J Cancer
.
2014
Mar
;
134
(
5
):
1207
13
.
[PubMed]
0020-7136
24.
Alix-Panabières
C
,
Pantel
K
.
Challenges in circulating tumour cell research
.
Nat Rev Cancer
.
2014
Sep
;
14
(
9
):
623
31
.
[PubMed]
1474-175X
25.
Charitoudis
G
,
Schuster
R
,
Joussen
AM
,
Keilholz
U
,
Bechrakis
NE
.
Detection of tumour cells in the bloodstream of patients with uveal melanoma: influence of surgical manipulation on the dissemination of tumour cells in the bloodstream
.
Br J Ophthalmol
.
2016
Apr
;
100
(
4
):
468
72
.
[PubMed]
0007-1161
26.
Tura
A
,
Lüke
J
,
Merz
H
,
Reinsberg
M
,
Lüke
M
,
Jager
MJ
, et al.
Identification of circulating melanoma cells in uveal melanoma patients by dual-marker immunoenrichment
.
Invest Ophthalmol Vis Sci
.
2014
Jun
;
55
(
7
):
4395
404
.
[PubMed]
0146-0404
27.
Mazzini
C
,
Pinzani
P
,
Salvianti
F
,
Scatena
C
,
Paglierani
M
,
Ucci
F
, et al.
Circulating tumor cells detection and counting in uveal melanomas by a filtration-based method
.
Cancers (Basel)
.
2014
Feb
;
6
(
1
):
323
32
.
[PubMed]
2072-6694
28.
Torres
V
,
Triozzi
P
,
Eng
C
,
Tubbs
R
,
Schoenfiled
L
,
Crabb
JW
, et al.
Circulating tumor cells in uveal melanoma
.
Future Oncol
.
2011
Jan
;
7
(
1
):
101
9
.
[PubMed]
1479-6694
29.
Fernandes
BF
,
Belfort
RN
,
Di Cesare
S
,
Burnier
MN
 Jr
.
Circulating uveal melanoma cells: should we test for them?
Can J Ophthalmol
.
2008
Apr
;
43
(
2
):
155
8
.
[PubMed]
0008-4182
30.
Alix-Panabières
C
,
Pantel
K
.
Clinical Applications of Circulating Tumor Cells and Circulating Tumor DNA as Liquid Biopsy
.
Cancer Discov
.
2016
May
;
6
(
5
):
479
91
.
[PubMed]
2159-8274
31.
Tobal
K
,
Sherman
LS
,
Foss
AJ
,
Lightman
SL
.
Detection of melanocytes from uveal melanoma in peripheral blood using the polymerase chain reaction
.
Invest Ophthalmol Vis Sci
.
1993
Aug
;
34
(
9
):
2622
5
.
[PubMed]
0146-0404
32.
Foss
AJ
,
Guille
MJ
,
Occleston
NL
,
Hykin
PG
,
Hungerford
JL
,
Lightman
S
.
The detection of melanoma cells in peripheral blood by reverse transcription-polymerase chain reaction
.
Br J Cancer
.
1995
Jul
;
72
(
1
):
155
9
.
[PubMed]
0007-0920
33.
Pinzani
P
,
Mazzini
C
,
Salvianti
F
,
Massi
D
,
Grifoni
R
,
Paoletti
C
, et al.
Tyrosinase mRNA levels in the blood of uveal melanoma patients: correlation with the number of circulating tumor cells and tumor progression
.
Melanoma Res
.
2010
Aug
;
20
(
4
):
303
10
.
[PubMed]
0960-8931
34.
Boldin
I
,
Langmann
G
,
Richtig
E
,
Schwantzer
G
,
Ardjomand
N
,
Wegscheider
B
, et al.
Five-year results of prognostic value of tyrosinase in peripheral blood of uveal melanoma patients
.
Melanoma Res
.
2005
Dec
;
15
(
6
):
503
7
.
[PubMed]
0960-8931
35.
Schuster
R
,
Bechrakis
NE
,
Stroux
A
,
Busse
A
,
Schmittel
A
,
Scheibenbogen
C
, et al.
Circulating tumor cells as prognostic factor for distant metastases and survival in patients with primary uveal melanoma
.
Clin Cancer Res
.
2007
Feb
;
13
(
4
):
1171
8
.
[PubMed]
1078-0432
36.
Callejo
SA
,
Antecka
E
,
Blanco
PL
,
Edelstein
C
,
Burnier
MN
 Jr
.
Identification of circulating malignant cells and its correlation with prognostic factors and treatment in uveal melanoma. A prospective longitudinal study
.
Eye (Lond)
.
2007
Jun
;
21
(
6
):
752
9
.
[PubMed]
0950-222X
37.
Keilholz
U
,
Goldin-Lang
P
,
Bechrakis
NE
,
Max
N
,
Letsch
A
,
Schmittel
A
, et al.
Quantitative detection of circulating tumor cells in cutaneous and ocular melanoma and quality assessment by real-time reverse transcriptase-polymerase chain reaction
.
Clin Cancer Res
.
2004
Mar
;
10
(
5
):
1605
12
.
[PubMed]
1078-0432
38.
Ulmer
A
,
Beutel
J
,
Süsskind
D
,
Hilgers
RD
,
Ziemssen
F
,
Lüke
M
, et al.
Visualization of circulating melanoma cells in peripheral blood of patients with primary uveal melanoma
.
Clin Cancer Res
.
2008
Jul
;
14
(
14
):
4469
74
.
[PubMed]
1078-0432
39.
Suesskind
D
,
Ulmer
A
,
Schiebel
U
,
Fierlbeck
G
,
Spitzer
B
,
Spitzer
MS
, et al.
Circulating melanoma cells in peripheral blood of patients with uveal melanoma before and after different therapies and association with prognostic parameters: a pilot study
.
Acta Ophthalmol
.
2011
Feb
;
89
(
1
):
17
24
.
[PubMed]
1755-375X
40.
Eide
N
,
Faye
RS
,
Høifødt
HK
,
Sandstad
B
,
Qvale
G
,
Faber
R
, et al.
Immunomagnetic detection of micrometastatic cells in bone marrow of uveal melanoma patients: a paradox
.
Acta Ophthalmol
.
2015
Feb
;
93
(
1
):
59
66
.
[PubMed]
1755-375X
41.
Bande
MF
,
Santiago
M
,
Muinelo-Romay
L
,
Blanco
MJ
,
Mera
P
,
Capeans
C
, et al.
Detection of circulating melanoma cells in choroidal melanocytic lesions
.
BMC Res Notes
.
2015
Sep
;
8
(
1
):
452
.
[PubMed]
1756-0500
42.
Anand
K
,
Roszik
J
,
Gombos
D
,
Upshaw
J
,
Sarli
V
,
Meas
S
, et al.
Pilot Study of Circulating Tumor Cells in Early-Stage and Metastatic Uveal Melanoma
.
Cancers (Basel)
.
2019
Jun
;
11
(
6
):
856
.
[PubMed]
2072-6694
43.
Tura
A
,
Merz
H
,
Reinsberg
M
,
Lüke
M
,
Jager
MJ
,
Grisanti
S
, et al.
Analysis of monosomy-3 in immunomagnetically isolated circulating melanoma cells in uveal melanoma patients
.
Pigment Cell Melanoma Res
.
2016
Sep
;
29
(
5
):
583
9
.
[PubMed]
1755-1471
44.
Terai
M
,
Mu
Z
,
Eschelman
DJ
,
Gonsalves
CF
,
Kageyama
K
,
Chervoneva
I
, et al.
Arterial Blood, Rather Than Venous Blood, is a Better Source for Circulating Melanoma Cells
.
EBioMedicine
.
2015
Sep
;
2
(
11
):
1821
6
.
[PubMed]
2352-3964
45.
Lo
YM
,
Zhang
J
,
Leung
TN
,
Lau
TK
,
Chang
AM
,
Hjelm
NM
.
Rapid clearance of fetal DNA from maternal plasma
.
Am J Hum Genet
.
1999
Jan
;
64
(
1
):
218
24
.
[PubMed]
0002-9297
46.
Diehl
F
,
Schmidt
K
,
Choti
MA
,
Romans
K
,
Goodman
S
,
Li
M
, et al.
Circulating mutant DNA to assess tumor dynamics
.
Nat Med
.
2008
Sep
;
14
(
9
):
985
90
.
[PubMed]
1078-8956
47.
Murtaza
M
,
Dawson
SJ
,
Pogrebniak
K
,
Rueda
OM
,
Provenzano
E
,
Grant
J
, et al.
Multifocal clonal evolution characterized using circulating tumour DNA in a case of metastatic breast cancer
.
Nat Commun
.
2015
Nov
;
6
(
1
):
8760
.
[PubMed]
2041-1723
48.
De Mattos-Arruda
L
,
Weigelt
B
,
Cortes
J
,
Won
HH
,
Ng
CK
,
Nuciforo
P
, et al.
Capturing intra-tumor genetic heterogeneity by de novo mutation profiling of circulating cell-free tumor DNA: a proof-of-principle
.
Ann Oncol
.
2014
Sep
;
25
(
9
):
1729
35
.
[PubMed]
0923-7534
49.
Jiang
P
,
Lo
YM
.
The Long and Short of Circulating Cell-Free DNA and the Ins and Outs of Molecular Diagnostics
.
Trends Genet
.
2016
Jun
;
32
(
6
):
360
71
.
[PubMed]
0168-9525
50.
Stroun
M
,
Lyautey
J
,
Lederrey
C
,
Mulcahy
HE
,
Anker
P
.
Alu repeat sequences are present in increased proportions compared to a unique gene in plasma/serum DNA: evidence for a preferential release from viable cells?
Ann N Y Acad Sci
.
2001
Sep
;
945
(
1
):
258
64
.
[PubMed]
0077-8923
51.
Madic
J
,
Piperno-Neumann
S
,
Servois
V
,
Rampanou
A
,
Milder
M
,
Trouiller
B
, et al.
Pyrophosphorolysis-activated polymerization detects circulating tumor DNA in metastatic uveal melanoma
.
Clin Cancer Res
.
2012
Jul
;
18
(
14
):
3934
41
.
[PubMed]
1078-0432
52.
Metz
CH
,
Scheulen
M
,
Bornfeld
N
,
Lohmann
D
,
Zeschnigk
M
.
Ultradeep sequencing detects GNAQ and GNA11 mutations in cell-free DNA from plasma of patients with uveal melanoma
.
Cancer Med
.
2013
Apr
;
2
(
2
):
208
15
.
[PubMed]
2045-7634
53.
Cabel
L
,
Riva
F
,
Servois
V
,
Livartowski
A
,
Daniel
C
,
Rampanou
A
, et al.
Circulating tumor DNA changes for early monitoring of anti-PD1 immunotherapy: a proof-of-concept study
.
Ann Oncol
.
2017
Aug
;
28
(
8
):
1996
2001
.
[PubMed]
0923-7534
54.
Cayrefourcq
L
,
Alix-Panabières
C
. (
2019
). CTCs as Liquid Biopsy: Where Are We Now? In Molecular Medicine. (IntechOpen), p 84366.
55.
Ragusa
M
,
Barbagallo
C
,
Statello
L
,
Caltabiano
R
,
Russo
A
,
Puzzo
L
, et al.
miRNA profiling in vitreous humor, vitreal exosomes and serum from uveal melanoma patients: pathological and diagnostic implications
.
Cancer Biol Ther
.
2015
;
16
(
9
):
1387
96
.
[PubMed]
1538-4047
56.
Russo
A
,
Caltabiano
R
,
Longo
A
,
Avitabile
T
,
Franco
LM
,
Bonfiglio
V
, et al.
Increased Levels of miRNA-146a in Serum and Histologic Samples of Patients with Uveal Melanoma
.
Front Pharmacol
.
2016
Nov
;
7
:
424
.
[PubMed]
1663-9812
57.
Stark
MS
,
Gray
ES
,
Isaacs
T
,
Chen
FK
,
Millward
M
,
McEvoy
A
, et al.
A Panel of Circulating MicroRNAs Detects Uveal Melanoma With High Precision
.
Transl Vis Sci Technol
.
2019
Nov
;
8
(
6
):
12
12
.
[PubMed]
2164-2591
58.
Achberger
S
,
Aldrich
W
,
Tubbs
R
,
Crabb
JW
,
Singh
AD
,
Triozzi
PL
.
Circulating immune cell and microRNA in patients with uveal melanoma developing metastatic disease
.
Mol Immunol
.
2014
Apr
;
58
(
2
):
182
6
.
[PubMed]
0161-5890
59.
van Niel
G
,
D’Angelo
G
,
Raposo
G
.
Shedding light on the cell biology of extracellular vesicles
.
Nat Rev Mol Cell Biol
.
2018
Apr
;
19
(
4
):
213
28
.
[PubMed]
1471-0072
60.
Cocucci
E
,
Meldolesi
J
.
Ectosomes and exosomes: shedding the confusion between extracellular vesicles
.
Trends Cell Biol
.
2015
Jun
;
25
(
6
):
364
72
.
[PubMed]
0962-8924
61.
Deatherage
BL
,
Cookson
BT
.
Membrane vesicle release in bacteria, eukaryotes, and archaea: a conserved yet underappreciated aspect of microbial life
.
Infect Immun
.
2012
Jun
;
80
(
6
):
1948
57
.
[PubMed]
0019-9567
62.
Robinson
DG
,
Ding
Y
,
Jiang
L
.
Unconventional protein secretion in plants: a critical assessment
.
Protoplasma
.
2016
Jan
;
253
(
1
):
31
43
.
[PubMed]
0033-183X
63.
Zaborowski
MP
,
Balaj
L
,
Breakefield
XO
,
Lai
CP
.
Extracellular Vesicles: Composition, Biological Relevance, and Methods of Study
.
Bioscience
.
2015
Aug
;
65
(
8
):
783
97
.
[PubMed]
0006-3568
64.
Skog
J
,
Würdinger
T
,
van Rijn
S
,
Meijer
DH
,
Gainche
L
,
Sena-Esteves
M
, et al.
Glioblastoma microvesicles transport RNA and proteins that promote tumour growth and provide diagnostic biomarkers
.
Nat Cell Biol
.
2008
Dec
;
10
(
12
):
1470
6
.
[PubMed]
1465-7392
65.
Al-Nedawi
K
,
Meehan
B
,
Micallef
J
,
Lhotak
V
,
May
L
,
Guha
A
, et al.
Intercellular transfer of the oncogenic receptor EGFRvIII by microvesicles derived from tumour cells
.
Nat Cell Biol
.
2008
May
;
10
(
5
):
619
24
.
[PubMed]
1465-7392
66.
Keller
S
,
König
AK
,
Marmé
F
,
Runz
S
,
Wolterink
S
,
Koensgen
D
, et al.
Systemic presence and tumor-growth promoting effect of ovarian carcinoma released exosomes
.
Cancer Lett
.
2009
Jun
;
278
(
1
):
73
81
.
[PubMed]
0304-3835
67.
Aga
M
,
Bentz
GL
,
Raffa
S
,
Torrisi
MR
,
Kondo
S
,
Wakisaka
N
, et al.
Exosomal HIF1α supports invasive potential of nasopharyngeal carcinoma-associated LMP1-positive exosomes
.
Oncogene
.
2014
Sep
;
33
(
37
):
4613
22
.
[PubMed]
0950-9232
68.
Hoshino
A
,
Costa-Silva
B
,
Shen
TL
,
Rodrigues
G
,
Hashimoto
A
,
Tesic Mark
M
, et al.
Tumour exosome integrins determine organotropic metastasis
.
Nature
.
2015
Nov
;
527
(
7578
):
329
35
.
[PubMed]
0028-0836
69.
Dos Anjos Pultz
B
,
Andrés Cordero da Luz
F
,
Socorro Faria
S
,
Peixoto Ferreira de Souza
L
,
Cristina Brígido Tavares
P
,
Alonso Goulart
V
, et al.
The multifaceted role of extracellular vesicles in metastasis: priming the soil for seeding
.
Int J Cancer
.
2017
Jun
;
140
(
11
):
2397
407
.
[PubMed]
0020-7136
70.
Chin
AR
,
Wang
SE
.
Cancer-derived extracellular vesicles: the ‘soil conditioner’ in breast cancer metastasis?
Cancer Metastasis Rev
.
2016
Dec
;
35
(
4
):
669
76
.
[PubMed]
0167-7659
71.
Becker
A
,
Thakur
BK
,
Weiss
JM
,
Kim
HS
,
Peinado
H
,
Lyden
D
.
Extracellular Vesicles in Cancer: Cell-to-Cell Mediators of Metastasis
.
Cancer Cell
.
2016
Dec
;
30
(
6
):
836
48
.
[PubMed]
1535-6108
72.
Lee
TH
,
Chennakrishnaiah
S
,
Meehan
B
,
Montermini
L
,
Garnier
D
,
D’Asti
E
, et al.
Barriers to horizontal cell transformation by extracellular vesicles containing oncogenic H-ras
.
Oncotarget
.
2016
Aug
;
7
(
32
):
51991
2002
.
[PubMed]
1949-2553
73.
Horibe
S
,
Tanahashi
T
,
Kawauchi
S
,
Murakami
Y
,
Rikitake
Y
.
Mechanism of recipient cell-dependent differences in exosome uptake
.
BMC Cancer
.
2018
Jan
;
18
(
1
):
47
.
[PubMed]
1471-2407
74.
Halvaei
S
,
Daryani
S
,
Eslami-S
Z
,
Samadi
T
,
Jafarbeik-Iravani
N
,
Bakhshayesh
TO
, et al.
Exosomes in Cancer Liquid Biopsy: A Focus on Breast Cancer
.
Mol Ther Nucleic Acids
.
2018
Mar
;
10
:
131
41
.
[PubMed]
2162-2531
75.
Sharma
P
,
Ludwig
S
,
Muller
L
,
Hong
CS
,
Kirkwood
JM
,
Ferrone
S
, et al.
Immunoaffinity-based isolation of melanoma cell-derived exosomes from plasma of patients with melanoma
.
J Extracell Vesicles
.
2018
Feb
;
7
(
1
):
1435138
.
[PubMed]
2001-3078
76.
Eldh
M
,
Olofsson Bagge
R
,
Lässer
C
,
Svanvik
J
,
Sjöstrand
M
,
Mattsson
J
, et al.
MicroRNA in exosomes isolated directly from the liver circulation in patients with metastatic uveal melanoma
.
BMC Cancer
.
2014
Dec
;
14
(
1
):
962
.
[PubMed]
1471-2407
77.
Peinado
H
,
Alečković
M
,
Lavotshkin
S
,
Matei
I
,
Costa-Silva
B
,
Moreno-Bueno
G
, et al.
Melanoma exosomes educate bone marrow progenitor cells toward a pro-metastatic phenotype through MET
.
Nat Med
.
2012
Jun
;
18
(
6
):
883
91
.
[PubMed]
1078-8956
78.
Abdouh
M
,
Gao
ZH
,
Arena
V
,
Arena
M
,
Burnier
MN
,
Arena
GO
.
Oncosuppressor-Mutated Cells as a Liquid Biopsy Test for Cancer-Screening
.
Sci Rep
.
2019
Feb
;
9
(
1
):
2384
.
[PubMed]
2045-2322
79.
Barak
V
,
Kaiserman
I
,
Frenkel
S
,
Hendler
K
,
Kalickman
I
,
Pe’er
J
.
The dynamics of serum tumor markers in predicting metastatic uveal melanoma (part 1)
.
Anticancer Res
.
2011
Jan
;
31
(
1
):
345
9
.
[PubMed]
1791-7530
80.
Haritoglou
I
,
Wolf
A
,
Maier
T
,
Haritoglou
C
,
Hein
R
,
Schaller
UC
.
Osteopontin and ‘melanoma inhibitory activity’: comparison of two serological tumor markers in metastatic uveal melanoma patients
.
Ophthalmologica
.
2009
;
223
(
4
):
239
43
.
[PubMed]
0030-3755
81.
Hendler
K
,
Pe’er
J
,
Kaiserman
I
,
Baruch
R
,
Kalickman
I
,
Barak
V
, et al.
Trends in liver function tests: a comparison with serum tumor markers in metastatic uveal melanoma (part 2)
.
Anticancer Res
.
2011
Jan
;
31
(
1
):
351
7
.
[PubMed]
1791-7530
82.
Song
J
,
Merbs
SL
,
Sokoll
LJ
,
Chan
DW
,
Zhang
Z
.
A multiplex immunoassay of serum biomarkers for the detection of uveal melanoma
.
Clin Proteomics
.
2019
Mar
;
16
(
1
):
10
.
[PubMed]
1542-6416
83.
Chen
LL
,
Tian
JJ
,
Su
L
,
Jing
Y
,
Zhang
SC
,
Zhang
HX
, et al.
DJ-1: a promising marker in metastatic uveal melanoma
.
J Cancer Res Clin Oncol
.
2015
Feb
;
141
(
2
):
315
21
.
[PubMed]
0171-5216
84.
Best
MG
,
Sol
N
,
Kooi
I
,
Tannous
J
,
Westerman
BA
,
Rustenburg
F
, et al.
RNA-Seq of Tumor-Educated Platelets Enables Blood-Based Pan-Cancer, Multiclass, and Molecular Pathway Cancer Diagnostics
.
Cancer Cell
.
2015
Nov
;
28
(
5
):
666
76
.
[PubMed]
1535-6108
85.
Berry
JL
,
Xu
L
,
Kooi
I
,
Murphree
AL
,
Prabakar
RK
,
Reid
M
, et al.
Genomic cfDNA Analysis of Aqueous Humor in Retinoblastoma Predicts Eye Salvage: The Surrogate Tumor Biopsy for Retinoblastoma
.
Mol Cancer Res
.
2018
Nov
;
16
(
11
):
1701
12
.
[PubMed]
1541-7786
86.
Sakuma
T
,
Iseki
R
,
Mimura
A
,
Tanigawa
N
,
Takamizu
R
.
Rapid cytologic diagnosis of choroidal malignant melanoma by vitreous smear
.
J Fr Ophtalmol
.
2012
Sep
;
35
(
7
):
535.e1
4
.
[PubMed]
0181-5512
87.
Cochran
AJ
,
Holland
GN
,
Saxton
RE
,
Damato
BE
,
Foulds
WR
,
Herschman
HR
, et al.
Detection and quantification of S-100 protein in ocular tissues and fluids from patients with intraocular melanoma
.
Br J Ophthalmol
.
1988
Nov
;
72
(
11
):
874
9
.
[PubMed]
0007-1161
88.
Missotten
GS
,
Notting
IC
,
Schlingemann
RO
,
Zijlmans
HJ
,
Lau
C
,
Eilers
PH
, et al.
Vascular endothelial growth factor a in eyes with uveal melanoma
.
Arch Ophthalmol
.
2006
Oct
;
124
(
10
):
1428
34
.
[PubMed]
0003-9950
89.
Boyd
SR
,
Tan
D
,
Bunce
C
,
Gittos
A
,
Neale
MH
,
Hungerford
JL
, et al.
Vascular endothelial growth factor is elevated in ocular fluids of eyes harbouring uveal melanoma: identification of a potential therapeutic window
.
Br J Ophthalmol
.
2002
Apr
;
86
(
4
):
448
52
.
[PubMed]
0007-1161
90.
Wierenga
AP
,
Gezgin
G
,
van Beelen
E
,
Eikmans
M
,
Spruyt-Gerritse
M
,
Brouwer
NJ
, et al.
Soluble HLA in the Aqueous Humour of Uveal Melanoma Is Associated with Unfavourable Tumour Characteristics
.
Cancers (Basel)
.
2019
Aug
;
11
(
8
):
1202
.
[PubMed]
2072-6694
91.
Eskelin
S
,
Pyrhönen
S
,
Summanen
P
,
Hahka-Kemppinen
M
,
Kivelä
T
.
Tumor doubling times in metastatic malignant melanoma of the uvea: tumor progression before and after treatment
.
Ophthalmology
.
2000
Aug
;
107
(
8
):
1443
9
.
[PubMed]
0161-6420
92.
Carvajal
RD
,
Sosman
JA
,
Quevedo
JF
,
Milhem
MM
,
Joshua
AM
,
Kudchadkar
RR
, et al.
Effect of selumetinib vs chemotherapy on progression-free survival in uveal melanoma: a randomized clinical trial
.
JAMA
.
2014
Jun
;
311
(
23
):
2397
405
.
[PubMed]
0098-7484
93.
Luke
JJ
,
Callahan
MK
,
Postow
MA
,
Romano
E
,
Ramaiya
N
,
Bluth
M
, et al.
Clinical activity of ipilimumab for metastatic uveal melanoma: a retrospective review of the Dana-Farber Cancer Institute, Massachusetts General Hospital, Memorial Sloan-Kettering Cancer Center, and University Hospital of Lausanne experience
.
Cancer
.
2013
Oct
;
119
(
20
):
3687
95
.
[PubMed]
0008-543X
94.
Cristofanilli
M
,
Budd
GT
,
Ellis
MJ
,
Stopeck
A
,
Matera
J
,
Miller
MC
, et al.
Circulating tumor cells, disease progression, and survival in metastatic breast cancer
.
N Engl J Med
.
2004
Aug
;
351
(
8
):
781
91
.
[PubMed]
0028-4793
95.
Cohen
SJ
,
Punt
CJ
,
Iannotti
N
,
Saidman
BH
,
Sabbath
KD
,
Gabrail
NY
, et al.
Relationship of circulating tumor cells to tumor response, progression-free survival, and overall survival in patients with metastatic colorectal cancer
.
J Clin Oncol
.
2008
Jul
;
26
(
19
):
3213
21
.
[PubMed]
0732-183X
96.
de Bono
JS
,
Scher
HI
,
Montgomery
RB
,
Parker
C
,
Miller
MC
,
Tissing
H
, et al.
Circulating tumor cells predict survival benefit from treatment in metastatic castration-resistant prostate cancer
.
Clin Cancer Res
.
2008
Oct
;
14
(
19
):
6302
9
.
[PubMed]
1078-0432
97.
Rodrigues
M
,
Mobuchon
L
,
Houy
A
,
Fiévet
A
,
Gardrat
S
,
Barnhill
RL
, et al.
Outlier response to anti-PD1 in uveal melanoma reveals germline MBD4 mutations in hypermutated tumors
.
Nat Commun
.
2018
May
;
9
(
1
):
1866
.
[PubMed]
2041-1723
98.
Brown
P
.
The Cobas® EGFR Mutation Test v2 assay
.
Future Oncol
.
2016
Feb
;
12
(
4
):
451
2
.
[PubMed]
1479-6694
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