Refine
Has Fulltext
- yes (8)
Is part of the Bibliography
- yes (8)
Document Type
- Journal article (7)
- Doctoral Thesis (1)
Keywords
- CXCR4 (8) (remove)
Institute
- Pathologisches Institut (8) (remove)
EU-Project number / Contract (GA) number
- 701983 (1)
We aimed to elucidate the diagnostic potential of the C-X-C motif chemokine receptor 4 (CXCR4)-directed positron emission tomography (PET) tracer \(^{68}\)Ga-Pentixafor in patients with poorly differentiated neuroendocrine carcinomas (NEC), relative to the established reference standard \(^{18}\)F-FDG PET/computed tomography (CT). In our database, we retrospectively identified 11 treatment-naïve patients with histologically proven NEC, who underwent \(^{18}\)F-FDG and CXCR4-directed PET/CT for staging and therapy planning. The images were analyzed on a per-patient and per-lesion basis and compared to immunohistochemical staining (IHC) of CXCR4 from PET-guided biopsies. \(^{68}\)Ga-Pentixafor visualized tumor lesions in 10/11 subjects, while \(^{18}\)F-FDG revealed sites of disease in all 11 patients. Although weak to moderate CXCR4 expression could be corroborated by IHC in 10/11 cases, \(^{18}\)F-FDG PET/CT detected significantly more tumor lesions (102 vs. 42; total lesions, n = 107; p < 0.001). Semi-quantitative analysis revealed markedly higher 18F-FDG uptake as compared to \(^{68}\)Ga-Pentixafor (maximum and mean standardized uptake values (SUV) and tumor-to-background ratios (TBR) of cancerous lesions, SUVmax: 12.8 ± 9.8 vs. 5.2 ± 3.7; SUVmean: 7.4 ± 5.4 vs. 3.1 ± 3.2, p < 0.001; and, TBR 7.2 ± 7.9 vs. 3.4 ± 3.0, p < 0.001). Non-invasive imaging of CXCR4 expression in NEC is inferior to the reference standard \(^{18}\)F-FDG PET/CT.
Impact of the Chemokine Receptors CXCR4 and CXCR7 on Clinical Outcome in Adrenocortical Carcinoma
(2020)
Chemokine receptors have a negative impact on tumor progression in several human cancers and have therefore been of interest for molecular imaging and targeted therapy. However, their clinical and prognostic significance in adrenocortical carcinoma (ACC) is unknown. The aim of this study was to evaluate the chemokine receptor profile in ACC and to analyse its association with clinicopathological characteristics and clinical outcome. A chemokine receptor profile was initially evaluated by quantitative PCR in 4 normal adrenals, 18 ACC samples and human ACC cell line NCI-H295. High expression of CXCR4 and CXCR7 in both healthy and malignant adrenal tissue and ACC cells was confirmed. In the next step, we analyzed the expression and cellular localization of CXCR4 and CXCR7 in ACC by immunohistochemistry in 187 and 84 samples, respectively. These results were correlated with clinicopathological parameters and survival outcome. We detected strong membrane expression of CXCR4 and CXCR7 in 50% of ACC samples. Strong cytoplasmic CXCR4 staining was more frequent among samples derived from metastases compared to primaries (p=0.01) and local recurrences (p=0.04). CXCR4 membrane staining positively correlated with proliferation index Ki67 (r=0.17, p=0.028). CXCR7 membrane staining negatively correlated with Ki67 (r=−0.254, p=0.03) but positively with tumor size (r=0.3, p=0.02). No differences in progression-free or overall survival were observed between patients with strong and weak staining intensities for CXCR4 or CXCR7. Taken together, high expression of CXCR4 and CXCR7 in both local tumors and metastases suggests that some ACC patients might benefit from CXCR4/CXCR7-targeted therapy.
We have recently demonstrated CXCR4 overexpression in vestibular schwannomas (VS). This study investigated the feasibility of CXCR4-directed positron emission tomography/computed tomography (PET/CT) imaging of VS using the radiolabeled chemokine ligand [\(^{68}\)Ga]Pentixafor.
Methods: 4 patients with 6 primarily diagnosed or pre-treated/observed VS were enrolled. All subjects underwent [\(^{68}\)Ga]Pentixafor PET/CT prior to surgical resection. Images were analyzed visually and semi-quantitatively for CXCR4 expression including calculation of tumor-to-background ratios (TBR). Immunohistochemistry served as standard of reference in three patients.
Results: [\(^{68}\)Ga]Pentixafor PET/CT was visually positive in all cases. SUV\(_{mean}\) and SUV\(_{max}\) were 3.0 ± 0.3 and 3.8 ± 0.4 and TBR\(_{mean}\) and TBR\(_{max}\) were 4.0 ± 1.4 and 5.0 ± 1.7, respectively. Histological analysis confirmed CXCR4 expression in tumors.
Conclusion: Non-invasive imaging of CXCR4 expression using [\(^{68}\)Ga]Pentixafor PET/CT of VS is feasible and could prove useful for in vivo assessment of CXCR4 expression.
C-X-C motif chemokine receptor 4 (CXCR4) is a key factor for tumor growth and metastasis in several types of human cancer. This study investigated the feasibility of CXCR4-directed imaging with positron emission tomography/computed tomography (PET/CT) using [\(^{68}\)Ga]Pentixafor in malignant pleural mesothelioma.
Six patients with pleural mesothelioma underwent [\(^{68}\)Ga]Pentixafor-PET/CT. 2′-[\(^{18}\)F]fluoro-2′-deoxy-D-glucose ([\(^{18}\)F]FDG)-PET/CT (4/6 patients) and immunohistochemistry obtained from biopsy or surgery (all) served as standards of reference. Additionally, 9 surgical mesothelioma samples were available for histological work-up.
Whereas [\(^{18}\)F]FDG-PET depicted active lesions in all patients, [\(^{68}\)Ga]Pentixafor-PET/CT recorded physiologic tracer distribution and none of the 6 patients presented [\(^{68}\)Ga]Pentixafor-positive lesions. This finding paralleled results of immunohistochemistry which also could not identify relevant CXCR4 surface expression in the samples analyzed.
In contrast to past reports, our data suggest widely absence of CXCR4 expression in pleural mesothelioma. Hence, robust cell surface expression should be confirmed prior to targeting this chemokine receptor for diagnosis and/or therapy.
CXCR4 is a G-protein-coupled receptor that mediates recruitment of blood cells toward its ligand SDF-1. In cancer, high CXCR4 expression is frequently associated with tumor dissemination andpoor prognosis. We evaluated the novel CXCR4 probe [\(^{68}\)Ga]Pentixafor for invivo mapping of CXCR4 expression density in mice xenografted with human CXCR4-positive MM cell lines and patients with advanced MM by means of positron emission tomography (PET). [\(^{68}\)Ga]Pentixafor PET provided images with excellent specificity and contrast. In 10 of 14 patients with advanced MM [\(^{68}\)Ga]Pentixafor PET/CT scans revealed MM manifestations, whereas only nine of 14 standard [\(^{18}\)F]fluorodeoxyglucose PET/CT scans were rated visually positive. Assessment of blood counts and standard CD34\(^{+}\) flow cytometry did not reveal significant blood count changes associated with tracer application. Based on these highly encouraging data on clinical PET imaging of CXCR4 expression in a cohort of MM patients, we conclude that [\(^{68}\)Ga]Pentixafor PET opens a broad field for clinical investigations on CXCR4 expression and for CXCR4-directed therapeutic approaches in MM and other diseases.
Disclosing the CXCR4 expression in lymphoproliferative diseases by targeted molecular imaging
(2015)
Chemokine ligand-receptor interactions play a pivotal role in cell attraction and cellular trafficking, both in normal tissue homeostasis and in disease. In cancer, chemokine receptor-4 (CXCR4) expression is an adverse prognostic factor. Early clinical studies suggest that targeting CXCR4 with suitable high-affinity antagonists might be a novel means for therapy. In addition to the preclinical evaluation of [\(^{68}\)Ga]Pentixafor in mice bearing human lymphoma xenografts as an exemplary CXCR4-expressing tumor entity, we report on the first clinical applications of [\(^{68}\)Ga]Pentixafor-Positron Emission Tomography as a powerful method for CXCR4 imaging in cancer patients. [\(^{68}\)Ga]Pentixafor binds with high affinity and selectivity to human CXCR4 and exhibits a favorable dosimetry. [\(^{68}\)Ga]Pentixafor-PET provides images with excellent specificity and contrast. This non-invasive imaging technology for quantitative assessment of CXCR4 expression allows to further elucidate the role of CXCR4/CXCL12 ligand interaction in the pathogenesis and treatment of cancer, cardiovascular diseases and autoimmune and inflammatory disorders.
C-X-C motif chemokine receptor 4 (CXCR4) and somatostatin receptors (SSTR) are overexpressed in gastro-entero-pancreatic neuroendocrine tumors (GEP-NET). In this study, we aimed to elucidate the feasibility of non-invasive CXCR4 positron emission tomography/computed tomography (PET/CT) imaging in GEP-NET patients using [\(^{68}\)Ga]Pentixafor in comparison to \(^{68}\)Ga-DOTA-D-Phe-Tyr3-octreotide ([\(^{68}\)Ga]DOTATOC) and \(^{18}\)F-fluorodeoxyglucose ([\(^{18}\)F]FDG). Twelve patients with histologically proven GEP-NET (3xG1, 4xG2, 5xG3) underwent [\(^{68}\)Ga]DOTATOC, [\(^{18}\)F]FDG, and [\(^{68}\)Ga]Pentixafor PET/CT for staging and planning of the therapeutic management. Scans were analyzed on a patient as well as on a lesion basis and compared to immunohistochemical staining patterns of CXCR4 and somatostatin receptors SSTR2a and SSTR5. [\(^{68}\)Ga]Pentixafor visualized tumor lesions in 6/12 subjects, whereas [\(^{18}\)F]FDG revealed sites of disease in 10/12 and [\(^{68}\)Ga]DOTATOC in 11/12 patients, respectively. Regarding sensitivity, SSTR-directed PET was the superior imaging modality in all G1 and G2 NET. CXCR4-directed PET was negative in all G1 NET. In contrast, 50% of G2 and 80% of G3 patients exhibited [\(^{68}\)Ga]Pentixafor-positive tumor lesions. Whereas CXCR4 seems to play only a limited role in detecting well-differentiated NET, increasing receptor expression could be non-invasively observed with increasing tumor grade. Thus, [\(^{68}\)Ga]Pentixafor PET/CT might serve as non-invasive read-out for evaluating the possibility of CXCR4-directed endoradiotherapy in advanced dedifferentiated SSTR-negative tumors.
Bekanntermaßen führt die H.pylori Infektion des Magens über eine komplexe Modulation des Chemokinsystems zur Ausbildung der H.pylori Gastritis. Die Chemokinrezeptorexpression in der H.pylori Gastritis ist jedoch bisher noch fast nicht untersucht. Das Ziel der Arbeit war die Charakterisierung der Chemokinrezeptorexpression im Magen und die Testung eines Einfluss von H.pylori auf die Expression von Chemokinrezeptoren. In vitro führt die Inkubation von neutrophilen Granulozyten mit H. pylori zu einer schnellen Herunterregulation von CXCR1 und CXCR2 auf Proteinebene durch Rezeptorinternalisation und intrazellulären Abbau. Der Effekt ist unabhängig vom cag Status von H. pylori, sowie von TNF-α- oder IL-8. Als möglicher Signaltransduktionsmechanismus für diesen Effekt wäre die direkte Interaktion von H. pylori mit „toll-like receptors“ (TLRs) denkbar. Auf mRNA Ebene kommt es in vitro bei der Inkubation von neutrophilen Granulozyten mit H. pylori zu einer Herunterregulation von CXCR1 und CXCR2 mRNA nach 3 Stunden. Dieser Effekt tritt bei Inkubation mit einem cag positiven H. pylori Stamm verstärkt auf und könnte bedingt sein durch autokrine Herunterregulation der Expression von CXCR1 und CXCR2 durch IL-8. In vivo exprimieren neutrophile Granulozyten in der H. pylori Gastritis in den Krypten ebenfalls vermindert CXCR1 und CXCR2. Sowohl die Expression der Chemokine als auch der korrespondierenden Chemokinrezeptoren wird somit durch H.pylori beeinflusst. Es lässt sich somit der folgende Pathomechanismus postulieren: Nach dem Eintritt der neutrophilen Granulozyten in die Schleimhaut, kommt es über den direkten Kontakt mit H.pylori zum Verlust der Chemokinrezeptoren. Die neutrophilen Granulozyten können somit nicht mehr auf Chemokinsignale reagieren und werden in der Magenschleimhaut immobilisiert. Dort setzen sie reaktive Sauerstoffradikale, proinflammatorische Zytokine und Chemokine frei, die zur Schleimhautschädigung führen. Magenkarzinome exprimieren die Chemokinrezeptoren CXCR4 und CCR7. Die Expression wird mit der Neigung zur Metastasierung und einer schlechten klinischen Prognose assoziiert. In unseren Untersuchungen wird CXCR4 in vivo während des Prozess der Karzinogenese im Magen ab dem Stadium der intestinalen Metaplasie exprimiert. Bei Inkubation der Zelllinien mit cagA positiven und cagA negativen H. pylori – Stämmen, kommt es zu keiner Änderung der Expression von CXCR4. Die Infektion mit H. pylori ist zwar die Voraussetzung für die Genese der intestinalen Metaplasie, scheint jedoch nicht ursächlich an der Expression von CXCR4 beteiligt zu sein. CCR7 tritt in vivo auf den Magenepithelien der H. pylori Gastritis, der intestinalen Metaplasie, Dysplasie und Magenkarzinomen auf. In vitro führt die Koinkubation von CCR7 tragenden Magenzelllinien mit H. pylori zur Hochregulation von CCR7 kommt. Die Expression von CCR7 auf Karzinomzellen wird ebenfalls möglicherweise durch eine begleitende Infektion mit H. pylori begünstigt. Der Effekt der CCR7 Induktion durch H. pylori in vitro ist unabhängig vom cag Status des für die Infektion verwendeten H. pylori Stammes. Die Hochregulation von CCR7 ist möglicherweise bedingt durch die intrazelluläre Aktivierung von NFκB infolge der H. pylori Infektion. Denkbar wäre auch eine Induktion der Expression von CCR7 in den Magenepithelzellen in TLR abhängiger Weise, äquivalent zu Mechanismen, die in dendritischen Zellen beschrieben wurden. Es lässt sich abschließend feststellen, dass die H.pylori Infektion nicht nur die Freisetzung von Chemokinen, sondern auch die Expression von Chemokinrezeptoren wesentlich beeinflusst. Neutrophile Granulozyten verlieren in direktem Kontakt zu H.pylori die Chemokinrezeptoren CXCR1 und CXCR2. Auf Epithelzellen führt der direkte Kontakt zu H.pylori zur vermehrten Expression von CCR7. Die direkte Regulation von Chemokinrezeptoren durch H.pylori scheint also sowohl bei der H.pylori Gastritis, als auch bei der Entstehung und Progression von Magenkarzinomen eine Rolle zu spielen.