Skip to content

Treatment of Iron Deficiency Anaemia in Inflammatory Bowel Disease With Ferrous Sulphate

Treatment of Iron Deficiency Anaemia in Adults and Adolescents With Inflammatory Bowel Disease Using Ferrous Sulphate: Tolerance and Effects on Haemoglobin, Mood, Quality of Life and Fatigue

Status
Completed
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01991314
Enrollment
90
Registered
2013-11-25
Start date
2011-12-31
Completion date
2015-06-30
Last updated
2017-05-09

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Crohn's Disease, Ulcerative Colitis

Brief summary

Iron deficiency anaemia is common in inflammatory bowel disease (IBD), affecting at least 20% patients at any one time. Hepcidin, a recently described anti-microbial peptide synthesized by the liver, is a key regulator of iron homeostasis. It interferes with absorption of iron into enterocytes, macrophages and hepatocytes by binding to ferroportin. Hepcidin levels rise when total body iron levels rise and protect against iron overload; conversely, in iron deficiency, levels are low. Hepcidin levels also rise under the influence of interleukins (IL)-6 and -1, a factor likely to contribute to iron deficient erythropoesis in active IBD. Whether hepcidin levels predict resistance to oral iron therapy in IBD is unknown, though it may impair its immediate oral absorption. Adult IBD patients who are anaemic report quality of life and fatigue scores comparable to those seen in malignancy. IBD diagnosed in adolescence interferes with growth, education and employment as well as psychosocial and sexual development. Not surprisingly, adolescents with IBD have a high prevalence of psychological distress, particular depression. Limited historical, and our own data suggest that children and adolescents with IBD are more anaemic than adults, and less often treated with oral iron. What is not clear is whether the apparent under-utilisation of oral iron in paediatric care is because of a perceived lack of benefit or doctors' concerns about possible side effects including worsening disease activity. To address these questions, the investigators propose a comparative study of 6 weeks of oral iron supplementation in adolescents and adults with iron deficiency anaemia in IBD. Patients will be given oral iron supplementation. Before and after iron therapy, the investigators shall assess haemoglobin concentrations; IBD activity; quality of life (QOL), perceived stress, mood and fatigue; iron metabolism, including serum hepcidin.

Detailed description

Methods Before and after iron therapy, we assessed haemoglobin concentrations; iron status markers; serum hepcidin concentration; IBD activity; iron tolerance; and QOL, perceived stress, mood, coping and fatigue using psychometric questionnaires. Patients. Patients aged 13 - 18 years were defined as adolescents, and those aged ≥ 19 years as adults. Between January 2012 and April 2015, patients with IBD (ulcerative colitis (UC), Crohn's disease or IBDU (IBD unclassified) diagnosed by standard clinical, radiological and pathological criteria) who within the next month were due to attend the adult, young people's and paediatric IBD clinics at Barts and the Royal London Hospitals, Barts Health Trust or the paediatric IBD clinic at Chelsea and Westminster NHS Trust, London, UK, were screened for the result of their haemoglobin concentration at their previous clinic attendance. Those found to be anaemic were sent a letter of explanation about, and invitation to participate in, the trial. They were telephoned 1-2 weeks after this letter was sent to them and asked about current and previous iron therapy: those apparently eligible (see below) and verbally consenting to participate were then seen by a trial doctor or research nurse either at their next clinic appointment, or on another mutually convenient occasion. Informed written consent from the patients or their parents, as appropriate, was obtained at this meeting, and patients who remained eligible on the basis of their iron therapy history and clinical, and haematological criteria were enrolled in the trial. Definition of iron deficiency anaemia: Anaemia was defined by age and sex-adjusted World Health Organisation criteria (males \<13.0 g/dl; females and children aged 13 years \<12.0 g/dl) (WHO 2001). For inclusion in the trial, patients had to be both anaemic and have transferrin saturation \<18%. They also had to report either tolerance of previous course(s) of oral iron, or to be naïve to this treatment. Exclusion criteria: Patients were excluded if they did not meet the haematological inclusion criteria on the admission-to-study blood test ('screening failures'), if they had been given oral or intravenous iron within 3 months, or if they had previously been intolerant of oral iron. Other exclusion criteria were age \<13 years, vitamin B12 or folate deficiency, anaemia caused by drugs used to treat IBD, haemoglobinopathy, presence of stoma or ileoanal pouch, severely active IBD requiring hospital admission from clinic, severe cardiopulmonary, hepatic, renal or other disease, pregnancy, breast-feeding, use of cholestyramine, and inability to speak English well enough to complete the consent form or psychometric questionnaires. Regulatory and funding considerations: The trial was approved by the Southampton National Research Ethics Committee (number 10/H504/90 and EUDRACT number 2010-023797-39) and was necessarily registered as a Clinical Trial of an Investigational Medical Product (CTIMP) with the Medicines and Healthcare Products Regulatory Agency (number 14620/0035/001-0001) and ClinTrials.Gov. The trial was sponsored by Barts Health NHS Trust. The trial was kindly funded by a grant from Core and British Society for Paediatric Gastroenterology, Hepatology and Nutrition. Trial protocol and treatment. At enrolment, demographic data including age, sex, disease type, education, marital status, smoking habit, weight and height were recorded. Disease type, location, behaviour and extent, using Montreal classifications (Silverberg 2005) and previous surgeries were noted from medical records. Patients completed six psychometric questionnaires to assess mood, fatigue and quality of life (QOL): the Hospital Anxiety and Depression Scale (HADS-A and HADS-D)(Zigmond 1983, Bjelland 2002), the recent and general Perceived Stress Questionnaires (PSQ-R and PSQ-G) (Levenstein 1993), the Patient Health Questionnaire (PHQ-9) (Kroenke 2001), the Coping Inventory for Stressful Situations (CISS)(Endler 2000), the Big Five Inventory (BFI) (Ramstedt or one of the John refs - check which is right), the Multi-dimension Fatigue Inventory (MFI) (Smets 1995) and the Short Inflammatory Bowel Disease Questionnaire (SIBDQ)(Irvine 1996). Symptomatic disease activity was assessed using the Harvey-Bradshaw Index (HBI) for patients with Crohn's disease (Harvey 1998), and Simple Clinical Colitis Activity Index (SCCAI) for those with ulcerative colitis (Walmsley 2001). Blood was collected for blood count, including haemoglobin, iron studies and hepcidin, and C-reactive protein (CRP); and a stool sample was obtained for faecal calprotectin, as an objective measure of disease activity (Kopylov 2014). Patients were given 6 weeks treatment with 200mg oral ferrous sulphate (Wockhardt Ltd, Ranbaxy Ireland Ltd) twice daily. After one week, patients were telephoned to assess tolerance to treatment: those intolerant of or non-adherent to oral iron were withdrawn from the trial and asked to attend for repeat blood tests, questionnaires and faecal calprotectin as end of trial measures. After 6 weeks of iron treatment, the above measurements were repeated and adherence assessed by counting of returned iron tablets. Outcome measures. The primary outcome measure was mean increase in haemoglobin concentration in the adolescent and adult groups after 6 weeks of treatment. Secondary outcome measures in the two groups were tolerance of oral iron; changes in disease activity (HBI, SCCAI, CRP, faecal calprotectin), SIBDQ, HADS-A, HADS-D, PSQ-R, PSQ-G, PHQ-9, CISS, BFI and MFI scores, and relation of serum hepcidin at baseline to haemoglobin response to oral iron. The SCCAI was used for scoring clinical disease activity in the three adolescent patients with IBDU. Assays Haemoglobin, iron studies and routine biochemistry were measured in the haematology and biochemistry laboratories at the Royal London and Chelsea and Westminster Hospitals. Serum for hepcidin assays was stored at -800 C until assay in duplicate in the University Birmingham by mass spectrometry (Ward 2008). The mass spectrometer was calibrated at each assay but because it is not serviced annually, the Research & Development Department at Barts Health NHS Trust insists on the statement herein that the hepcidin assay did not meet strict GCP compliance regulations. Stool samples were stored at -800 C until the end of recruitment: they were then extracted and quantified for calprotectin in duplicate by ELISA (ACCUSAY Calprotectin, Launch Diagnostics, Ltd, Longfield, UK) in the Clinical Immunology laboratory at Royal London Hospital.

Interventions

DRUGFerrous sulphate

200mg tablets.

Sponsors

Queen Mary University of London
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Masking description

This was an open label trial

Eligibility

Sex/Gender
ALL
Age
13 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

Patients with proven iron deficiency anaemia on World Health Organisation (WHO)criteria Patients aged 13 - 18 will be considered adolescents, and aged \>18 as adults.

Exclusion criteria

Anaemia caused by B12 or folate deficiency, or secondary to drugs used to treat IBD; haemoglobinopathies or myelodysplasia; severe cardiopulmonary, hepatic or renal disease; severe cardiopulmonary, hepatic or renal disease; pregnancy and breast feeding females.

Design outcomes

Primary

MeasureTime frameDescription
Mean Change in Haemoglobin Concentration.Baseline (0 weeks) and end of trial (6 weeks)Change in serum Hb concentration in g/dl after 6 weeks of oral iron

Secondary

MeasureTime frameDescription
Change in Disease Activity (Stool Calprotectin)Baseline (0 weeks) and end of trial (6 weeks)Difference between faecal calprotectin measured at baseline and at end of study
Change in Quality of Life ScoreBaseline (0 weeks) to end (6 weeks)Short Inflammatory Bowel Disease Questionnaire (SIBDQ score), a health-related quality of life tool measuring physical, social, and emotional status (summated to produce a score of minimum 10 to maximum 70, representing poor to good quality of life, respectively). (Reporting of individual domain subscores is not valid).
Intolerance of Oral IronBaseline (0 weeks) to end of trial (6 weeks)Numbers of patients who reported intolerance of oral iron (abdominal pain, nausea, vomiting, constipation, diarrhoea or headache)
Changes in FatigueBaseline (0 weeks) and end of trial (6 weeks)Multidimensional Fatigue Inventory (MFI) is a 20 question-based scale with total scores ranging between 20 (very good) and 100 (very severe fatigue).
Changes in Stress LevelsBaseline (0 weeks) and end of trial (6 weeks)Perceived Stress Questionnaire (PSQ)-G is a 30-question measure of perceived stress giving total scores ranging between 30 (very unstressed) to 120 (very stressed).
Changes in AnxietyBaseline (0 weeks) and end of trial (6 weeks)Hospital Anxiety and Depression Score (HADS)-A, a scale of 7 questions score 0-3 each, so that total score 0 is good and 21 very severe anxiety.

Countries

United Kingdom

Participant flow

Recruitment details

Between January 2012 and April 2015; adult and paediatric IBD clinics at Barts and the Royal London Hospitals, or the paediatric IBD clinic at Chelsea and Westminster NHS Trust, London, UK, w

Pre-assignment details

After trial closure, 1 adult (transferrin saturation 22%) and 1 adolescent (Hb 12.0) were found to have been recruited in error and were excluded from further analysis, leaving 88 participants in total.

Participants by arm

ArmCount
Adolescent - Ferrous Sulphate
45 adolescents (age 13-18 years) given oral ferrous sulphate 200mg bd for 6 weeks
45
Adults - Ferrous Sulphate
43 adults (age \>18 years) given oral ferrous sulphate 200mg bd for 6 weeks
43
Total88

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyAdverse Event51
Overall StudyLost to Follow-up610

Baseline characteristics

CharacteristicAdolescent - Ferrous SulphateAdults - Ferrous SulphateTotal
Age, Categorical
<=18 years
45 Participants0 Participants45 Participants
Age, Categorical
>=65 years
0 Participants3 Participants3 Participants
Age, Categorical
Between 18 and 65 years
0 Participants40 Participants40 Participants
Region of Enrollment
United Kingdom
45 participants43 participants88 participants
Sex: Female, Male
Female
22 Participants23 Participants45 Participants
Sex: Female, Male
Male
23 Participants20 Participants43 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
8 / 457 / 43
serious
Total, serious adverse events
2 / 451 / 43

Outcome results

Primary

Mean Change in Haemoglobin Concentration.

Change in serum Hb concentration in g/dl after 6 weeks of oral iron

Time frame: Baseline (0 weeks) and end of trial (6 weeks)

Population: Intention to treat population

ArmMeasureValue (MEAN)Dispersion
AdolescentsMean Change in Haemoglobin Concentration.1.22 g/dlStandard Error 0.21
AdultsMean Change in Haemoglobin Concentration.1.30 g/dlStandard Error 0.27
p-value: 0.23ANCOVA
Secondary

Change in Disease Activity (Stool Calprotectin)

Difference between faecal calprotectin measured at baseline and at end of study

Time frame: Baseline (0 weeks) and end of trial (6 weeks)

Population: Per protocol analysis

ArmMeasureValue (MEAN)Dispersion
AdolescentsChange in Disease Activity (Stool Calprotectin)-35 ug/gStandard Error 38
AdultsChange in Disease Activity (Stool Calprotectin)-40 ug/gStandard Error 81
Comparison: Unpaired Students t testp-value: 0.96t-test, 2 sided
Secondary

Change in Quality of Life Score

Short Inflammatory Bowel Disease Questionnaire (SIBDQ score), a health-related quality of life tool measuring physical, social, and emotional status (summated to produce a score of minimum 10 to maximum 70, representing poor to good quality of life, respectively). (Reporting of individual domain subscores is not valid).

Time frame: Baseline (0 weeks) to end (6 weeks)

Population: Per protocol analysis

ArmMeasureValue (MEAN)Dispersion
AdolescentsChange in Quality of Life Score3.2 scores on a scaleStandard Error 2.6
AdultsChange in Quality of Life Score5.7 scores on a scaleStandard Error 2
Comparison: Mann-Whitney U testp-value: 0.49Wilcoxon (Mann-Whitney)
Secondary

Changes in Anxiety

Hospital Anxiety and Depression Score (HADS)-A, a scale of 7 questions score 0-3 each, so that total score 0 is good and 21 very severe anxiety.

Time frame: Baseline (0 weeks) and end of trial (6 weeks)

Population: Per protocol

ArmMeasureValue (MEAN)Dispersion
AdolescentsChanges in Anxiety-0.7 units on a scaleStandard Error 0.5
AdultsChanges in Anxiety-1.1 units on a scaleStandard Error 0.7
Comparison: Mann Whitney U testp-value: 0.85Wilcoxon (Mann-Whitney)
Secondary

Changes in Fatigue

Multidimensional Fatigue Inventory (MFI) is a 20 question-based scale with total scores ranging between 20 (very good) and 100 (very severe fatigue).

Time frame: Baseline (0 weeks) and end of trial (6 weeks)

Population: Per protocol

ArmMeasureValue (MEAN)Dispersion
AdolescentsChanges in Fatigue0.9 units on a scaleStandard Error 1.4
AdultsChanges in Fatigue1.9 units on a scaleStandard Error 0.7
Comparison: Mann Whitney U testp-value: 0.69Wilcoxon (Mann-Whitney)
Secondary

Changes in Stress Levels

Perceived Stress Questionnaire (PSQ)-G is a 30-question measure of perceived stress giving total scores ranging between 30 (very unstressed) to 120 (very stressed).

Time frame: Baseline (0 weeks) and end of trial (6 weeks)

Population: Per protocol analysis

ArmMeasureValue (MEAN)Dispersion
AdolescentsChanges in Stress Levels4.1 units on a scaleStandard Error 2.5
AdultsChanges in Stress Levels-11.8 units on a scaleStandard Error 2.5
Comparison: Mann-Whitney U testp-value: <0.0001Wilcoxon (Mann-Whitney)
Secondary

Intolerance of Oral Iron

Numbers of patients who reported intolerance of oral iron (abdominal pain, nausea, vomiting, constipation, diarrhoea or headache)

Time frame: Baseline (0 weeks) to end of trial (6 weeks)

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
AdolescentsIntolerance of Oral Iron10 Participants
AdultsIntolerance of Oral Iron8 Participants
Comparison: Chi squared test or Fisher's exact test, as appropriate.p-value: <0.05Fisher Exact

Source: ClinicalTrials.gov · Data processed: Feb 28, 2026