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1.
BBA Adv ; 1: 100013, 2021.
Article in English | MEDLINE | ID: mdl-37082007

ABSTRACT

ADPKD is the most common genetic disease of the kidney leading to end-stage renal disease necessitating renal replacement therapy at any time between the 1st and 8th decades of life due to widely variable rates of disease progression. This presents significant patient anxiety and a significant prognostic and therapeutic challenge. Tolvaptan is the only approved drug licensed to slow ADPKD progression by reducing renal cystic expansion but side-effects can limit its efficacy. To address the need to identify new biomarkers to monitor progression of ADPKD and to evaluate the therapeutic effects of Tolvaptan, proteomic analysis was conducted on defined (40-100nm) urinary exosomes isolated from ADPKD patients phenotyped and clinically monitored over a 10-year period. Comparative Gene Ontology analysis of Tandem Mass Tag labelled mass spectrometry-derived protein profiles from urinary exosomes from ADPKD patients with rapid (>10ml/min/5 years decline in estimated glomerular filtration rate) versus slow progression showed distinctive patterns of pathway up-regulation. Clear discrimination between rapid and slowly-progressive profiles were seen in all stages functional decline in ADPKD patients whether with mild (>70ml/min), moderate (50-69ml/min) or severe (<49ml/min) disease at onset. Discriminatory pathways and proteins included Notch-, integrin- and growth factor-signalling; microtubular kinase, vesicular proteins and epidermal growth factor substrates. Confocal microscopy of fluorescently-labelled normal versus ADPKD epithelial cell-derived exosomes in vitro also identified ADPKD-dependent abnormalities in intracellular vesicular trafficking and implicated changes in ADPKD-dependent exosome secretion and target cell uptake as factors underlying urinary exosome excretion biomarker properties. Comparative proteomic analysis of urinary exosomal proteins in individual patients before and after treatment with Tolvaptan for 4 years also identified distinct patterns of pathway modification dependent on the degree of effectiveness of the therapeutic response. Up-regulation of Wnt-pathway and vesicular proteins were characteristic of urinary exosomes from ADPKD patients with good responses to Tolvaptan while upregulation of angiogenesis pathways and additional molecular forms of vasopressin receptor AVPR2 were characteristic in urinary exosomes of ADPKD patients with poor responses. Taken together, these studies conclude that proteomic profiling of urinary exosome biomarkers provides a specific, sensitive and practical non-invasive method to identify and monitor the rate of disease progression and the effects of Tolvaptan therapy in individual ADPKD patients. This provides a means to identify those patients most likely to benefit maximally from therapy and to progress towards a personalization of ADPKD prognosis and management.

2.
Br J Cancer ; 114(2): 151-62, 2016 Jan 19.
Article in English | MEDLINE | ID: mdl-26671749

ABSTRACT

BACKGROUND: The current biomarkers alpha-fetoprotein and human chorionic gonadotropin have limited sensitivity and specificity for diagnosing malignant germ-cell tumours (GCTs). MicroRNAs (miRNAs) from the miR-371-373 and miR-302/367 clusters are overexpressed in all malignant GCTs, and some of these miRNAs show elevated serum levels at diagnosis. Here, we developed a robust technical pipeline to quantify these miRNAs in the serum and cerebrospinal fluid (CSF). The pipeline was used in samples from a cohort of exclusively paediatric patients with gonadal and extragonadal malignant GCTs, compared with appropriate tumour and non-tumour control groups. METHODS: We developed a method for miRNA quantification that enabled sample adequacy assessment and reliable data normalisation. We performed qRT-PCR profiling for miR-371-373 and miR-302/367 cluster miRNAs in a total of 45 serum and CSF samples, obtained from 25 paediatric patients. RESULTS: The exogenous non-human spike-in cel-miR-39-3p and the endogenous housekeeper miR-30b-5p were optimal for obtaining robust serum and CSF qRT-PCR quantification. A four-serum miRNA panel (miR-371a-3p, miR-372-3p, miR-373-3p and miR-367-3p): (i) showed high sensitivity/specificity for diagnosing paediatric extracranial malignant GCT; (ii) allowed early detection of relapse of a testicular mixed malignant GCT; and (iii) distinguished intracranial malignant GCT from intracranial non-GCT tumours at diagnosis, using CSF and serum samples. CONCLUSIONS: The pipeline we have developed is robust, scalable and transferable. It potentially promises to improve clinical management of paediatric (and adult) malignant GCTs.


Subject(s)
Biomarkers, Tumor/blood , Central Nervous System Neoplasms/diagnosis , MicroRNAs/blood , Neoplasm Recurrence, Local/diagnosis , Neoplasms, Germ Cell and Embryonal/diagnosis , Ovarian Neoplasms/diagnosis , Testicular Neoplasms/diagnosis , Adolescent , Biomarkers, Tumor/cerebrospinal fluid , Carcinoma, Embryonal/blood , Carcinoma, Embryonal/cerebrospinal fluid , Carcinoma, Embryonal/diagnosis , Central Nervous System Neoplasms/blood , Central Nervous System Neoplasms/cerebrospinal fluid , Child , Child, Preschool , Choriocarcinoma, Non-gestational/blood , Choriocarcinoma, Non-gestational/cerebrospinal fluid , Choriocarcinoma, Non-gestational/diagnosis , Chorionic Gonadotropin/blood , Chorionic Gonadotropin/cerebrospinal fluid , Endodermal Sinus Tumor/blood , Endodermal Sinus Tumor/cerebrospinal fluid , Endodermal Sinus Tumor/diagnosis , Female , Germinoma/blood , Germinoma/cerebrospinal fluid , Germinoma/diagnosis , Humans , Infant , Infant, Newborn , Male , MicroRNAs/cerebrospinal fluid , Neoplasm Recurrence, Local/blood , Neoplasm Recurrence, Local/cerebrospinal fluid , Neoplasms, Germ Cell and Embryonal/blood , Neoplasms, Germ Cell and Embryonal/cerebrospinal fluid , Ovarian Neoplasms/blood , Ovarian Neoplasms/cerebrospinal fluid , Polymerase Chain Reaction , Sacrococcygeal Region , Sensitivity and Specificity , Testicular Neoplasms/blood , Testicular Neoplasms/cerebrospinal fluid , alpha-Fetoproteins/cerebrospinal fluid , alpha-Fetoproteins/metabolism
3.
Cancer Epidemiol Biomarkers Prev ; 24(2): 350-60, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25416717

ABSTRACT

BACKGROUND: Serum biomarkers for diagnosis and risk stratification of childhood solid tumors would improve the accuracy/timeliness of diagnosis and reduce the need for invasive biopsies. We hypothesized that differential expression and/or release of microRNAs (miRNAs) by such tumors may be detected as altered serum miRNA profiles. METHODS: We undertook global quantitative reverse transcription PCR (qRT-PCR) miRNA profiling (n = 741) on RNA from 53 serum samples, representing 33 diagnostic cases of common childhood cancers plus 20 controls. Technical confirmation was performed in a subset of 21 cases, plus four independent samples. RESULTS: We incorporated robust quality control steps for RNA extraction, qRT-PCR efficiency and hemolysis quantification. We evaluated multiple methods to normalize global profiling data and identified the 'global mean' approach as optimal. We generated a panel of six miRNAs that were most stable in pediatric serum samples and therefore most suitable for normalization of targeted miRNA qRT-PCR data. Tumor-specific serum miRNA profiles were identified for each tumor type and selected miRNAs underwent confirmatory testing. We identified a panel of miRNAs (miR-124-3p/miR-9-3p/miR-218-5p/miR-490-5p/miR-1538) of potential importance in the clinical management of neuroblastoma, as they were consistently highly overexpressed in MYCN-amplified high-risk cases (MYCN-NB). We also derived candidate miRNA panels for noninvasive differential diagnosis of a liver mass (hepatoblastoma vs. combined MYCN-NB/NB), an abdominal mass (Wilms tumor vs. combined MYCN-NB/NB), and sarcoma subtypes. CONCLUSIONS: This study describes a pipeline for robust diagnostic serum miRNA profiling in childhood solid tumors, and has identified candidate miRNA profiles for prospective testing. IMPACT: We propose a new noninvasive method with the potential to diagnose childhood solid tumors.


Subject(s)
Biomarkers, Tumor/blood , MicroRNAs/blood , Neoplasms/blood , RNA, Neoplasm/blood , Adolescent , Child , Child, Preschool , Female , Humans , Infant , Infant, Newborn , Male , Real-Time Polymerase Chain Reaction/methods
5.
Cancer Res ; 73(15): 4872-84, 2013 Aug 01.
Article in English | MEDLINE | ID: mdl-23774216

ABSTRACT

Despite their clinicopathologic heterogeneity, malignant germ cell tumors (GCT) share molecular abnormalities that are likely to be functionally important. In this study, we investigated the potential significance of downregulation of the let-7 family of tumor suppressor microRNAs in malignant GCTs. Microarray results from pediatric and adult samples (n = 45) showed that LIN28, the negative regulator of let-7 biogenesis, was abundant in malignant GCTs, regardless of patient age, tumor site, or histologic subtype. Indeed, a strong negative correlation existed between LIN28 and let-7 levels in specimens with matched datasets. Low let-7 levels were biologically significant, as the sequence complementary to the 2 to 7 nt common let-7 seed "GAGGUA" was enriched in the 3' untranslated regions of mRNAs upregulated in pediatric and adult malignant GCTs, compared with normal gonads (a mixture of germ cells and somatic cells). We identified 27 mRNA targets of let-7 that were upregulated in malignant GCT cells, confirming significant negative correlations with let-7 levels. Among 16 mRNAs examined in a largely independent set of specimens by quantitative reverse transcription PCR, we defined negative-associations with let-7e levels for six oncogenes, including MYCN, AURKB, CCNF, RRM2, MKI67, and C12orf5 (when including normal control tissues). Importantly, LIN28 depletion in malignant GCT cells restored let-7 levels and repressed all of these oncogenic let-7 mRNA targets, with LIN28 levels correlating with cell proliferation and MYCN levels. Conversely, ectopic expression of let-7e was sufficient to reduce proliferation and downregulate MYCN, AURKB, and LIN28, the latter via a double-negative feedback loop. We conclude that the LIN28/let-7 pathway has a critical pathobiologic role in malignant GCTs and therefore offers a promising target for therapeutic intervention.


Subject(s)
Gene Expression Regulation, Neoplastic/genetics , MicroRNAs/biosynthesis , Neoplasms, Germ Cell and Embryonal/genetics , RNA-Binding Proteins/biosynthesis , Adult , Blotting, Western , Child , Female , Humans , Male , MicroRNAs/genetics , Neoplasms, Germ Cell and Embryonal/metabolism , Oligonucleotide Array Sequence Analysis , Oncogenes , RNA-Binding Proteins/genetics , Reverse Transcriptase Polymerase Chain Reaction , Transfection
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