Randomized controlled pilot trial with ion-exchange water softeners to prevent eczema (SOFTER trial)

Z K Jabbar-Lopez, B Ezzamouri, A Briley, D Greenblatt, N Gurung, J R Chalmers, K S Thomas, T Frost, S Kezic, J E A Common, S Danby, M J Cork, J L Peacock, C Flohr, Z K Jabbar-Lopez, B Ezzamouri, A Briley, D Greenblatt, N Gurung, J R Chalmers, K S Thomas, T Frost, S Kezic, J E A Common, S Danby, M J Cork, J L Peacock, C Flohr

Abstract

Background: Observational studies suggest an increased risk of eczema in children living in hard versus soft water areas, and there is, therefore, an interest in knowing whether softening water may prevent eczema. We evaluated the feasibility of a parallel-group assessor-blinded pilot randomized controlled trial to test whether installing a domestic ion-exchange water softener before birth in hard water areas reduces the risk of eczema in infants with a family history of atopy.

Methods: Pregnant women living in hard water areas (>250 mg/L calcium carbonate) in and around London UK, were randomized 1:1 antenatally to either have an ion-exchange water softener installed in their home or not (ie to continue to receive usual domestic hard water). Infants were assessed at birth and followed up for 6 months. The main end-points were around feasibility, the primary end-point being the proportion of eligible families screened who were willing and able to be randomized. Clinical end-points were evaluated including frequency of parent-reported doctor-diagnosed eczema and visible eczema on skin examination. Descriptive analyses were conducted, and no statistical testing was performed as this was a pilot study.

Results: One hundred and forty-nine families screened were eligible antenatally and 28% (41/149) could not have a water softener installed due to technical reasons or lack of landlord approval. Eighty of 149 (54%) were randomized, the primary end-point. Two participants withdrew immediately after randomization, leaving 39 participants in each arm (78 total). Attrition was 15% (12/78) by 6 months postpartum. All respondents (n = 69) to the study acceptability questionnaire reported that the study was acceptable. Fifty-six of 708 (7.9%) water samples in the water softener arm were above the hard water threshold of 20 mg/L CaCO3 . At 6 months of age 27/67 infants (40%) developed visible eczema, 12/36 (33%) vs. 15/31 (48%) in the water softener and control groups, respectively, difference -15% (95% CI -38, 8.3%), with most assessments (≥96%) remaining blinded. Similarly, a lower proportion of infants in the water softener arm had parent-reported, doctor-diagnosed eczema by 6 months compared to the control arm, 6/17 (35%) versus 9/19 (47%), difference -12% (95% CI -44, 20%).

Conclusion: A randomized controlled trial of water softeners for the prevention of atopic eczema in high-risk infants is feasible and acceptable.

Trial registration: NCT03270566 (clinicaltrials.gov).

Keywords: atopic eczema; hard water; prevention trial; water softener.

© 2021 John Wiley & Sons Ltd.

References

REFERENCES

    1. Williams H, Robertson C, Stewart A, et al. Worldwide variations in the prevalence of symptoms of atopic eczema in the International study of asthma and allergies in childhood. J Allergy Clin Immunol. 1999;103(1 Pt 1):125-138.
    1. Flohr C, Mann J. New insights into the epidemiology of childhood atopic dermatitis. Allergy. 2014;69(1):3-16. 10.1111/all.12270
    1. Weidinger S, Novak N. Atopic dermatitis. Lancet. 2016;387(10023):1109-1122. 10.1016/S0140-6736(15)00149-X
    1. Flohr C, Mann J. New approaches to the prevention of childhood atopic dermatitis. Allergy. 2014;69(1):56-61. 10.1111/all.12343
    1. McNally NJ, Williams HC, Phillips DR, et al. Atopic eczema and domestic water hardness. Lancet. 1998;352(9127):527-531.
    1. Arnedo-Pena A, Bellido-Blasco J, Puig-Barbera J, et al. Domestic water hardness and prevalence of atopic eczema in Castellon (Spain) school children. Salud Publica Mex. 2007;49(4):295-301.
    1. Miyake Y, Yokoyama T, Yura A, Iki M, Shimizu T. Ecological association of water hardness with prevalence of childhood atopic dermatitis in a Japanese urban area. Environ Res. 2004;94(1):33-37.
    1. Perkin MR, Craven J, Logan K, et al. Association between domestic water hardness, chlorine, and atopic dermatitis risk in early life: a population-based cross-sectional study. J Allergy Clin Immunol. 2016;138(2):509-516. 10.1016/j.jaci.2016.03.031. [published Online First: 2016/06/01]
    1. dGH: Wikipedia; [20/12/2018]. Available from:
    1. Engebretsen KA, Bager P, Wohlfahrt J, et al. Prevalence of atopic dermatitis in infants by domestic water hardness and season of birth: Cohort study. J Allergy Clin Immunol. 2017;139(5):1568-1574. 10.1016/j.jaci.2016.11.021
    1. Danby SG, Brown K, Wigley AM, et al. The effect of water hardness on surfactant deposition following washing and subsequent skin irritation in atopic dermatitis patients and healthy controls. J Invest Dermatol. 2017;138(1):68-77. 10.1016/j.jid.2017.08.037. [published Online First: 2017/09/21].
    1. Menon GK, Price LF, Bommannan B, Elias PM, Feingold KR. Selective obliteration of the epidermal calcium gradient leads to enhanced lamellar body secretion. J Invest Dermatol. 1994;102(5):789-795.
    1. Kong HH, Oh J, Deming C, et al. Temporal shifts in the skin microbiome associated with disease flares and treatment in children with atopic dermatitis. Genome Res. 2012;22(5):850-859. 10.1101/gr.131029.111
    1. Nakatsuji T, Chen TH, Narala S, et al. Antimicrobials from human skin commensal bacteria protect against Staphylococcus aureus and are deficient in atopic dermatitis. Sci Transl Med. 2017;9(378):eaah4680. 10.1126/scitranslmed.aah4680
    1. Turner J, Cho Y, Dinh NN, Waring AJ, Lehrer RI. Activities of LL-37, a cathelin-associated antimicrobial peptide of human neutrophils. Antimicrob Agents Chemother. 1998;42(9):2206-2214.
    1. Thomas KS, Koller K, Dean T, et al. A multicentre randomised controlled trial and economic evaluation of ion-exchange water softeners for the treatment of eczema in children: the Softened Water eczema trial (SWET). Health Technol Assess. 2011;15(08):1-156. 10.3310/hta15080
    1. Horimukai K, Morita K, Narita M, et al. Transepidermal water loss measurement during infancy can predict the subsequent development of atopic dermatitis regardless of filaggrin mutations. Allergol Int. 2016;65(1):103-108. 10.1016/j.alit.2015.09.004. [published Online First: 2015/12/17]
    1. Berents TL, Lodrup Carlsen KC, Mowinckel P, et al. Transepidermal water loss in infancy associated with atopic eczema at 2 years of age: a population-based cohort study. Br J Dermatol. 2017;177(3):e35-e37. 10.1111/bjd.15157. [published Online First: 2016/11/04].
    1. Togawa Y, Kambe N, Shimojo N, et al. Ultra-pure soft water improves skin barrier function in children with atopic dermatitis: a randomized, double-blind, placebo-controlled, crossover pilot study. J Dermatol Sci. 2014;76(3):269-271. 10.1016/j.jdermsci.2014.10.009
    1. Jabbar-Lopez ZK, Ung CY, Alexander H, et al. The effect of water hardness on atopic eczema, skin barrier function: a systematic review, meta-analysis. Clin Exp Allergy. 2021;51(3):430-451. 10.1111/cea.13797. [published Online First: 2020/12/02].
    1. Eldridge SM, Lancaster GA, Campbell MJ, et al. Defining feasibility and pilot studies in preparation for randomised controlled trials: development of a conceptual framework. PLoS One. 2016;11(3):e0150205. 10.1371/journal.pone.0150205
    1. Chalmers JR, Thomas KS, Montgomery A, et al. A protocol for a randomized controlled trial to determine whether application of emollient from birth can prevent eczema in high-risk children (BEEP Trial). Br J Dermatol. 2014;170(6):E32.
    1. NIHR. Feasibility and Pilot Studies. 2017. Available from: . Accessed 21/02/17, 2017.
    1. Weiland SK, Bjorksten B, Brunekreef B, et al. Phase II of the international study of asthma and allergies in childhood (ISAAC II): rationale and methods. Eur Respir J. 2004;24(3):406-412. 10.1183/09031936.04.00090303. [published Online First: 2004/09/11].
    1. Jabbar-Lopez ZK, Gurung N, Greenblatt D, et al. Protocol for an outcome assessor-blinded pilot randomised controlled trial of an ion-exchange water softener for the prevention of atopic eczema in neonates, with an embedded mechanistic study: the softened water for eczema prevention (SOFTER) trial. BMJ Open. 2019;9(8):e027168. 10.1136/bmjopen-2018-027168. [published Online First: 2019/08/23].
    1. Simpson EL, Chalmers JR, Hanifin JM, et al. Emollient enhancement of the skin barrier from birth offers effective atopic dermatitis prevention. J Allergy Clin Immunol. 2014;134(4):818-823. 10.1016/j.jaci.2014.08.005. [published Online First: 2014/10/06].
    1. Kelleher MM, Cro S, Van Vogt E, et al. Skincare interventions in infants for preventing eczema and food allergy: a cochrane systematic review and individual participant data meta-analysis. Clin Exp Allergy. 2021;51(3):402-418. 10.1111/cea.13847. [published Online First: 2021/02/08].

Source: PubMed

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