SynthesisThe Cochrane database of systematic reviews2021

Interventions for preventing type 2 diabetes in adults with mental disorders in low- and middle-income countries.

Masuma Pervin Mishu, Eleonora Uphoff, Faiza Aslam, Sharad Philip, Judy Wright, Nilesh Tirbhowan, Ramzi A Ajjan, Zunayed Al Azdi, Brendon Stubbs, Rachel Churchill and 1 more

Open access · bronzeAbstract readMeta-AnalysisSystematic Review
In one paragraph

Synthesis in The Cochrane database of systematic reviews, 2021. The graph read 3 numbers from its abstract, feeding 3 cells of the map: it supports the treatment in 1, finds no clear difference in 2. Cited by 8 papers.

3numbers the graph read from it
3cells of the map it votes in
8citing papers in PubMed
2.0field-weighted citation impact, top 15% of its field
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

Ratios

← favours the treatmentfavours the comparator →
21 · no effect
Glycemic controlno clear difference · against placebo · t2dfeeds one cell of the map
RR 1.310.63 to 2.69
Low- to moderate-certainty evidence suggests there may be no difference between the use of atypical and typical antipsychotics for the outcomes of drop-outs from care (RR 1.31, 95% CI 0.63 to 2.69; two studies with 144 participants), and fasting blood glucose levels (mean difference (MD) 0.05 lower, 95% CI 0.10 to 0.00; two studies with 211 participants).

Differences

← favours the treatmentfavours the comparator →
-0.390.220 · no effect
Glycemic controlno clear difference · against placebo · t2dfeeds one cell of the map
change 0.01-0.21 to 0.22
There was moderate-to-high certainty evidence of no difference between metformin and placebo for fasting blood glucose levels (endpoint data: MD -0.35, 95% CI -0.60 to -0.11; change from baseline data: MD 0.01, 95% CI -0.21 to 0.22; five studies with 264 participants).
Glycemic controlfavours the treatment · head-to-head · t2dfeeds one cell of the map
change -0.24-0.39 to -0.09
Fasting blood glucose is probably reduced more in participants treated with melatonin compared with placebo (endpoint data: MD -0.17, 95% CI -0.35 to 0.01; change from baseline data: MD -0.24, 95% CI -0.39 to -0.09; three studies with 202 participants, moderate-certainty evidence).

clause the extractor read what became the number

2 · Its place on the map

Where it lands on the map

Rows are treatments, columns are outcomes. The coloured squares are the cells this paper feeds, coloured by the vote it casts there. Click one to jump to what this paper adds to it.

supports the treatmentfavours the comparatorno clear differenceread, but no usable result
3 · What it changes

What it adds to each cell

For every cell the paper feeds: the belief in the claim with and without this paper, and this paper's estimate drawn against every other readable study in the cell. The ringed dot is this paper.

Diet, exercise & lifestyle×glycemic control

InconclusiveOpen on the map →What to test next →

5 readable studies in this cell: 4 favour the treatment, 1 find no difference, 0 favour the comparator.

Belief with this paper
0.99replicated · 2 families support, 0 contradict · against placebo
Without itNot a counted family in this claim, so removing it changes nothing.
← favours the treatmentfavours the comparator →
0 · no effect

This paper's own estimate is on a different scale from the rest of the cell, so it is not drawn here.

Metformin×glycemic control

InconclusiveOpen on the map →What to test next →

40 readable studies in this cell: 41 favour the treatment, 13 find no difference, 7 favour the comparator.

Belief with this paper
0.84replicated · 32 families support, 6 contradict · against placebo
Without itNot a counted family in this claim, so removing it changes nothing.
← favours the treatmentfavours the comparator →
0 · no effect
NCT017190031,413 enrolled · 2012
Adjusted mean -0.72-0.95 to -0.48
NCT018093271,186 enrolled · 2013
Δ -0.40-0.59 to -0.21
NCT022730501,136 enrolled · 2014
Δ -0.89-1.08 to -0.69
NCT008598981,093 enrolled · 2009
Δ -0.53-0.74 to -0.32
Δ -0.85-43.8 to 26.7
NCT00643851994 enrolled · 2008
Δ -0.86-1.11 to -0.62
NCT01708902876 enrolled · 2012
Δ -1.00-1.23 to -0.78
NCT00676338820 enrolled · 2008
Δ -0.05-0.26 to 0.17
NCT01126580807 enrolled · 2010
Δ -0.22-0.36 to -0.08
NCT01023581784 enrolled · 2009
Δ -0.67-0.96 to -0.37
NCT01076088744 enrolled · 2010
Δ -0.84-1.15 to -0.52
NCT00386100688 enrolled · 2006
Δ -0.49-0.67 to -0.30

This paper's own estimate is on a different scale from the rest of the cell, so it is not drawn here.

Supplements & botanicals×glycemic control

SupportsOpen on the map →What to test next →

No other readable study in this cell yet. This paper is the evidence.

Belief with this paperNo claim has been compiled for this cell yet.
4 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

Neither the registry nor the abstract names a trial number. If this is a trial report, that itself is worth knowing.

5 · Its place in the literature

Who cites it

8 citing papers in PubMed, 15 citations in OpenAlex.

  1. Trial
  2. Article
  3. Review
  4. Preterm Infant Brain Injury: Parental Knowledge, Attitude, and Practice.Medical science monitor : international medical journal of experimental and clinical research · 2026
    Article
  5. Article
  6. Article
  7. Article
  8. Article
6 · The record

Corrections and comments

PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

7 · Who and what money

Authors and funding

11 authors at 8 institutions in 4 countries.

Masuma Pervin MishuDepartment of Health Sciences, University of York, York, UK.
Eleonora UphoffCochrane Common Mental Disorders, University of York, York, UK.
Faiza AslamWHO Collaborating Centre for Mental Health & Research, Rawalpindi Medical University, Rawalpindi, Pakistan.
Sharad PhilipPsychiatric Rehabilitation Services Department of Psychiatry, National Institute of Mental Health and Neurosciences (NIMHANS), An Institute of National Importance, Bangalore, India.
Judy WrightLeeds Institute of Health Sciences, University of Leeds, Leeds, UK.
Nilesh TirbhowanDepartment of Health Sciences, Hull York Medical School, University of York, York, UK.
Ramzi A AjjanLeeds Institute of Cardiovascular and Metabolic Medicine, Faculty of Medicine and Health, University of Leeds, Leeds, UK.
Zunayed Al AzdiResearch and Research Uptake Division, ARK Foundation, Dhaka, Bangladesh.
Brendon StubbsInstitute of Psychiatry, Psychology and Neuroscience, Kings College London, London, UK.
Rachel ChurchillCochrane Common Mental Disorders, University of York, York, UK.
Najma SiddiqiDepartment of Health Sciences, University of York, York, UK.
Cochrane · GBUniversity of Leeds · GBUniversity of York · GBARK Foundation · BDHull York Medical School · GBKing's College London · GBNational Institute of Mental Health and Neurosciences · INRawalpindi Medical University · PK

Funding

Department of Health ICA-CL-2017-03-001
8 · The paper itself

Abstract

The marked sentences are the ones the graph read a number from.

backgroundThe prevalence of type 2 diabetes is increased in individuals with mental disorders. Much of the burden of disease falls on the populations of low- and middle-income countries (LMICs).

objectivesTo assess the effects of pharmacological, behaviour change, and organisational interventions versus active and non-active comparators in the prevention or delay of type 2 diabetes among people with mental illness in LMICs. SEARCH

methodsWe searched the Cochrane Common Mental Disorders Controlled Trials Register, CENTRAL, MEDLINE, Embase and six other databases, as well as three international trials registries. We also searched conference proceedings and checked the reference lists of relevant systematic reviews. Searches are current up to 20 February 2020. SELECTION CRITERIA: Randomized controlled trials (RCTs) of pharmacological, behavioural or organisational interventions targeting the prevention or delay of type 2 diabetes in adults with mental disorders in LMICs. DATA COLLECTION AND ANALYSIS: Pairs of review authors working independently performed data extraction and risk of bias assessments. We conducted meta-analyses using random-effects models. MAIN

resultsOne hospital-based RCT with 150 participants (99 participants with schizophrenia) addressed our review's primary outcome of prevention or delay of type 2 diabetes onset. Low-certainty evidence from this study did not show a difference between atypical and typical antipsychotics in the development of diabetes at six weeks (risk ratio (RR) 0.46, 95% confidence interval (CI) 0.03 to 7.05) (among a total 99 participants with schizophrenia, 68 were in atypical and 31 were in typical antipsychotic groups; 55 participants without mental illness were not considered in the analysis). An additional 29 RCTs with 2481 participants assessed one or more of the review's secondary outcomes. All studies were conducted in hospital settings and reported on pharmacological interventions. One study, which we could not include in our meta-analysis, included an intervention with pharmacological and behaviour change components. We identified no studies of organisational interventions. Low- to moderate-certainty evidence suggests there may be no difference between the use of atypical and typical antipsychotics for the outcomes of drop-outs from care (RR 1.31, 95% CI 0.63 to 2.69; two studies with 144 participants), and fasting blood glucose levels (mean difference (MD) 0.05 lower, 95% CI 0.10 to 0.00; two studies with 211 participants). Participants who receive typical antipsychotics may have a lower body mass index (BMI) at follow-up than participants who receive atypical antipsychotics (MD 0.57, 95% CI 0.33 to 0.81; two studies with 141 participants; moderate certainty of evidence), and may have lower total cholesterol levels eight weeks after starting treatment (MD 0.35, 95% CI 0.27 to 0.43; one study with 112 participants). There was moderate certainty evidence suggesting no difference between the use of metformin and placebo for the outcomes of drop-outs from care (RR 1.22, 95% CI 0.09 to 16.35; three studies with 158 participants). There was moderate-to-high certainty evidence of no difference between metformin and placebo for fasting blood glucose levels (endpoint data: MD -0.35, 95% CI -0.60 to -0.11; change from baseline data: MD 0.01, 95% CI -0.21 to 0.22; five studies with 264 participants). There was high certainty evidence that BMI was lower for participants receiving metformin compared with those receiving a placebo (MD -1.37, 95% CI -2.04 to -0.70; five studies with 264 participants; high certainty of evidence). There was no difference between metformin and placebo for the outcomes of waist circumference, blood pressure and cholesterol levels. Low-certainty evidence from one study (48 participants) suggests there may be no difference between the use of melatonin and placebo for the outcome of drop-outs from care (RR 1.00, 95% CI 0.38 to 2.66). Fasting blood glucose is probably reduced more in participants treated with melatonin compared with placebo (endpoint data: MD -0.17, 95% CI -0.35 to 0.01; change from baseline data: MD -0.24, 95% CI -0.39 to -0.09; three studies with 202 participants, moderate-certainty evidence). There was no difference between melatonin and placebo for the outcomes of waist circumference, blood pressure and cholesterol levels. Very low-certainty evidence from one study (25 participants) suggests that drop-outs may be higher in participants treated with a tricyclic antidepressant (TCA) compared with those receiving a selective serotonin reuptake inhibitor (SSRI) (RR 0.34, 95% CI 0.11 to 1.01). It is uncertain if there is no difference in fasting blood glucose levels between these groups (MD -0.39, 95% CI -0.88 to 0.10; three studies with 141 participants, moderate-certainty evidence). It is uncertain if there is no difference in BMI and depression between the TCA and SSRI antidepressant groups. AUTHORS'

conclusionsOnly one study reported data on our primary outcome of interest, providing low-certainty evidence that there may be no difference in risk between atypical and typical antipsychotics for the outcome of developing type 2 diabetes. We are therefore not able to draw conclusions on the prevention of type 2 diabetes in people with mental disorders in LMICs. For studies reporting on secondary outcomes, there was evidence of risk of bias in the results. There is a need for further studies with participants from LMICs with mental disorders, particularly on behaviour change and on organisational interventions targeting prevention of type 2 diabetes in these populations.

Indexed as

Developing CountriesAdultAgedAntidepressive Agents, TricyclicAntioxidantsAntipsychotic AgentsBlood GlucoseBody Mass IndexDiabetes Mellitus, Type 2FastingFemaleHumansHypoglycemic AgentsMaleMelatoninMental DisordersAntidepressive Agents, TricyclicAntioxidantsAntipsychotic AgentsBlood GlucoseHypoglycemic AgentsMelatoninMetforminPlacebosSelective Serotonin Reuptake Inhibitors

Identifiers

PMID33591592
PMCPMC8092639
OpenAlexW2921501087

What OpenQuestion holds

Texttitle and abstract
Read underepoch 390

Registered trials

None linked

Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.