CClinicalTrials.gg
Status unknownNCT03169400Updated May 30, 2017

Theranova Dialyzer and Chronic Kidney Disease - Mineral Bone Disorder (CKD-MBD)

An observational study in End Stage Renal Failure on Dialysis, Vascular Calcification and Oxidative Stress, sponsored by University of Milan. Status unknown at 1 site in Italy. Open to participants aged 18 Years to 90 Years. Per ClinicalTrials.gov, last updated 2017-05-30.

Sponsored by University of Milan · Observational

The sponsor has not verified this record recently (last verified May 2017), so the status shown — last known as Not yet recruiting — may be out of date.
Study type
Observational
Model
Case-control
Time perspective
Cross-sectional
Enrollment
20
Ages
18 Years to 90 Years
Sex
All
01

Study summary

The project will be structured in 3 main parts:

  1. Effect of sera of ESRD patients on HD using Theranova dialyzer on high-Pi induced vascular calcification in an in vitro model of rat VSMCs.
  2. Effect of sera of ESRD patients on HD using Theranova dialyzer on oxidative stress pathways in an in vitro model of rat VSMCs vascular calcification.
  3. Study of RNA sequencing, transcriptome analysis gene expression of time course high-P challenged VSMCs studying the effect of sera of ESRD patients on HD using Theranova dialyzer
Read the detailed description

Ageing is a potent, independent risk factor for cardiovascular (CV) disease and the calcification of the vascular smooth muscle cell (VSMC) layer of the vessel media, typical of Monckenberg syndrome, is a hallmark of vascular ageing. Young patients with chronic kidney disease (CKD) exhibit an extremely high CV mortality, equivalent to that seen in octogenarians in the general population. Even children on dialysis develop accelerated medial vascular calcification (VC) and arterial stiffening, leading to the suggestion that patients with CKD exhibit a 'premature ageing' phenotype. It is now well documented that uraemic toxins, particularly those associated with dysregulated mineral metabolism, can drive VSMC damage and phenotypic changes that promote VC, and epidemiological data suggest that some of these same risk factors associate with CV mortality in the aged general population.

VC is common in CKD and associated with increased morbidity and mortality. Its mechanism is multifactorial and incompletely understood. CKD patients are at risk for VC because of multiple risk factors that induce VSMCs to change into a osteoblast-like cell such as high total body burden of calcium (Ca) and phosphorus (P) due to abnormal bone metabolism, low levels of circulating and locally produced inhibitors, impaired renal excretion, and current therapies. Together these factors increase risk and complicate the management of VC. Cells with unexpected osteoblastic potential may abnormally lay down some forms of VC, especially in the arterial wall of blood vessels. The pathogenesis of VC is likely a hybrid process of tightly regulated normal bone modeling and the purely physicochemical deposition of mineral.

The interest in VC in CKD patients has several reasons. First, it is now clear that in the general population the calcification of both intimal atherosclerotic lesions and the medial vessel layer are associated with CV morbidity and mortality. Similar, some data also exists for stage 5 CKD. Second, there is now better evidence that VSMCs can become osteoblast-like and lay down and mineralize collagen and noncollagenous proteins in arteries. Third, over 20 null mutations in mice have VC confirming that key proteins regulate or prevent VC. Fourth, there is increasing recognition of a link between CKD and bone and VC in the general population. Lastly, we now know some of our well-intended interventions to treat renal osteodystrophy accelerate arterial calcification.

CKD patients have an increased CV risk factor due to the impaired renal function induced by the pathology. More than 90% of CKD patients die for CV events with a main role of VC. One of the VC inducer is HD per se. Since the choice of dialyzer may play a role on prevalence of CV complication in CKD, the aim of this project will be to elucidate the effect of Theranova dialyzer on delay VC progression.

The project will be structured in 3 main parts:

  1. Effect of sera of ESRD patients on HD using Theranova dialyzer on high-Pi induced vascular calcification in an in vitro model of rat VSMCs.
  2. Effect of sera of ESRD patients on HD using Theranova dialyzer on oxidative stress pathways in an in vitro model of rat VSMCs vascular calcification.
  3. Study of RNA sequencing, transcriptome analysis gene expression of time course high-P challenged VSMCs studying the effect of sera of ESRD patients on HD using Theranova dialyzer Primary Endpoint: Effect of sera of ESRD patients on HD using Theranova dialyzer on high-Pi induced vascular calcification in an in vitro model of rat VSMCs.

Secondary Endpoints: Effect of sera of ESRD patients on HD using Theranova dialyzer on oxidative stress pathways in an in vitro model of rat VSMCs vascular calcification.

Study of RNA sequencing, transcriptome analysis gene expression of time course high-P challenged VSMCs studying the effect of sera of ESRD patients on HD using Theranova dialyzer

02

Conditions studied

  • End Stage Renal Failure on Dialysis
  • Vascular Calcification
  • Oxidative Stress

Keywords

  • vascular calcification
  • haemodialysis
  • dialysis membrane
03

In context

Kidney Diseases

3,840 studies on the registry are indexed under Kidney Diseases; 500 are open to participants now.

This study's planned enrollment of 20 is below the median of 192 across 1,033 observational studies indexed under Kidney Diseases.

Browse Kidney Diseases studies →

Lead sponsor

University of Milan is the lead sponsor of 177 studies on the registry; 27 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 90 Years
Sexes eligible
All
Accepts healthy volunteers
No
Sampling method
Probability sample

Study population

20 patients

Number of study or comparison groups: cross-over study; from HD patients treated with regular bicarbonate dialysis membrane (baseline). Then, patients will be treated for 3 months with Theranove dialyzer, and sera will be collected at 1, 2, and 3 months. We will create a serum pool.

Eligibility criteria

Key Inclusion Criteria: ESRD on HD

Key Exclusion Criteria: cachexia; cancer

05

Study design

Observational model
Case-control
Time perspective
Cross-sectional
Enrollment
20 participants (estimated)
Target follow-up
6 Months
Patient registry
Yes

Groups and cohorts

  • Theranova treated

    We will collect pool of human sera from HD patients treated with regular bicarbonate dialysis membrane (baseline). Then, patients will be treated for 3 months with Theranove dialyzer, and sera will be collected at 1, 2, and 3 months. We will create a serum pool.

    Device: Theranova dialyzer

  • Standard treated

    We will collect pool of human sera from HD patients treated with regular bicarbonate dialysis membrane (baseline). Then, patients will be treated for 3 months with Theranove dialyzer, and sera will be collected at 1, 2, and 3 months. We will create a serum pool.

Interventions

  • DeviceTheranova dialyzer

    Hemoadialysis

    Also known as: Theranova

06

What researchers measure

Primary outcomes

  1. Effect of sera of ESRD patients on HD using Theranova dialyzer on high-Pi induced vascular calcification in an in vitro model of rat VSMCs.

    Quantification of calcium into the cells

    Time frame: 12 months

Secondary outcomes

  1. Effect of sera of ESRD patients on HD using Theranova dialyzer on oxidative stress pathways in an in vitro model of rat VSMCs vascular calcification.

    Oxidative stress into the cells

    Time frame: 12 months

07

Study locations

1 site
08

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on May 30, 2017, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT03169400
Lead sponsor
University of Milan
Responsible party
Mario Cozzolino (Professor of Nephrology, MD, PhD, FERA, FASN, University of Milan) — Principal investigator
First posted
May 30, 2017
Start date
Oct 1, 2017 (estimated)
Primary completion
Aug 31, 2018 (estimated)
Completion
Dec 31, 2018 (estimated)
Last update
May 30, 2017

Study contacts

Soncini Chiara, PhD
Contact
chiara.soncini@unimi.it
02503 23231

Oversight

FDA-regulated drug
No
FDA-regulated device
Yes
View the source record on ClinicalTrials.gov ↗

Not currently enrolling

This study is status unknown, as verified in May 2017. You cannot join it, but the record below documents what was studied.

Follow this study

Get an email when the registry record changes — status, dates, results — or when someone posts here.

Sign in to follow

Discussion

Questions and observations about this study, from anyone following it. Not medical advice, and not a channel to the study team — their contact details are on the registry record.

Sign in to join the discussion. Reading takes no account; posting does. You choose a display name, and a pseudonym is the default.

Nothing here yet. If you are running this trial, taking part in it, or weighing whether to, this is the place to say so.

Start the discussion