{"paper_id":"8a6841fa-c5be-4df4-ae2c-e58b516c5ef3","body_text":"Sulfasalazine is a DMARD frequently used in the management of inflammatory arthritis. It is one of the few DMARDs regarded as relatively safe in pregnancy and breastfeeding when appropriately supplemented with folic acid [ 1 ,  2 ]. It interferes with folate metabolism through inhibition of intestinal folate absorption and enzymatic pathways [ 3 ].\nNeural tube defects (NTDs) are congenital malformations arising from failure of neural tube closure between days 21 and 28 postconception [ 4 ]. The global prevalence of NTDs ranges from 1 to 10 per 1000 births, depending on geographical and ethnic factors [ 4 ,  5 ]. Folate status is a well‐established, modifiable risk factor for NTDs, although not the sole determinant, as NTDs arise from a multifactorial interplay of genetic, nutritional, and environmental influences. [ 4 ,  5 ].\nCurrent British Society for Rheumatology guidance recommends high‐dose folic acid (5 mg daily) for women taking sulfasalazine who are planning pregnancy or are pregnant [ 2 ]. Despite increasing awareness, inadvertent omission of supplementation continues to occur. We present a case of NTD in a pregnancy occurring shortly after sulfasalazine initiation without folate supplementation, highlighting clinical and preventative considerations such as the importance of preconception counselling and proactive folate replacement.\n\nA 34‐year‐old woman was referred to the Rheumatology Department with widespread arthralgia, fatigue and stiffness affecting her elbows, ankles and cervical spine. There was no swelling, rash or systemic features. Her medical history included psoriasis (managed topically) and endometriosis under gynaecological review.\nObstetric history comprised two prior pregnancies: a preterm vaginal delivery at 36 weeks in 2009 complicated by fetal gastroschisis and an emergency caesarean section in 2010 complicated by postpartum haemorrhage requiring transfusion.\nBaseline investigations demonstrated normal inflammatory markers (CRP < 1 mg/L, ESR 6 mm/h) and negative rheumatoid factor, anti‐CCP, ANA and HLA‐B27. Ultrasound of the elbows and ankles showed small olecranon bursal effusions without synovitis. MRI of the spine revealed minor degenerative changes at C5/C6 but no evidence of inflammatory spondyloarthropathy. Serum folate was borderline low at 3.7 μg/L (reference range > 4 μg/L).\nA provisional diagnosis of psoriatic arthritis was made, and she was initially treated with NSAIDs, which she could not tolerate. In February 2024, she received an intramuscular injection of methylprednisolone acetate (Depo‐Medrone 120 mg) and was commenced on sulfasalazine, titrated from 500 mg daily to 1 g twice daily. Folic acid supplementation was not discussed or prescribed at that stage.\nBy March 2024, she reported minimal improvement. A concurrent diagnosis of fibromyalgia was made, and sulfasalazine was continued pending review.\nIn June 2024, she was seen in the antenatal clinic at 13 weeks + 4 days, indicating that conception occurred after initiation of sulfasalazine therapy, although the precise timing relative to folate status during early embryogenesis is uncertain.\nAt her 20 week anomaly scan, fetal spina bifida and ventriculomegaly were identified. Multidisciplinary counselling was undertaken, and the pregnancy was terminated following fetocide. Placental histopathology was normal. No other potential teratogenic exposures were identified. She did not restart sulfasalazine subsequently.\nFor any future pregnancy, the patient was advised to take 5 mg of folic acid daily preconception and until 12 weeks’ gestation and will receive early specialist obstetric review and targeted fetal anomaly screening.\n\nThis case describes a pregnancy affected by a NTD in the context of recent maternal sulfasalazine exposure without folic acid supplementation and a borderline‐low preconception folate level.\nImpaired folate absorption associated with sulfasalazine may have been a contributing factor within a broader multifactorial aetiology. However, NTDs arise from multiple interacting influences, and folate deficiency is recognised as a risk factor rather than a direct cause [ 4 ,  5 ]. Genetic susceptibility and other environmental factors were not assessed in this case and may also have contributed.\nAlthough sulfasalazine is known to impair folate absorption and metabolism, the degree of folate depletion in this patient during early pregnancy is unknown, as folate levels were not re‐measured after treatment initiation or during gestation [ 3 ,  6 ]. Therefore, it cannot be determined whether clinically significant folate deficiency was present at the critical period of neural tube development.\nFolate‐dependent one‐carbon metabolism plays a central role in embryogenesis, supporting both nucleotide biosynthesis required for DNA replication and cellular proliferation and methylation reactions involving DNA, RNA, proteins and lipids. These processes collectively contribute to normal cellular growth and differentiation during early development, and disruption of folate‐dependent pathways has been implicated in impaired neural tube closure based on experimental and epidemiological evidence [ 4 ,  5 ].\nEpidemiological data do not demonstrate a consistent association between sulfasalazine use and NTDs. While some studies have examined folate‐antagonist medications more broadly, evidence specifically linking sulfasalazine to increased NTD risk is limited, and prior studies have not shown a clear association [ 7 ,  8 ]. Reported associations between sulfasalazine exposure and adverse pregnancy outcomes may be influenced by confounding by indication, including underlying maternal disease activity and concomitant medication use, which may not be fully accounted for in observational studies. Therefore, it remains possible that the NTD in this pregnancy was unrelated to sulfasalazine exposure.\nEvidence from animal models has suggested potential differences in the susceptibility of NTD subtypes to folate deficiency, with some studies indicating greater sensitivity of cranial defects such as anencephaly. However, in human populations, most epidemiological and interventional studies have evaluated NTDs as a combined outcome, and robust subtype‐specific associations between folate status and individual defect types (including spina bifida and anencephaly) remain incompletely defined. Current evidence therefore supports folic acid as a broad preventive intervention across the spectrum of NTDs rather than a mechanism that can be clearly stratified by anatomical subtype [ 4 ].\nGiven the background incidence of NTDs, this case may represent a coincidental occurrence. However, the absence of recommended folic acid supplementation represents a potentially modifiable risk factor, particularly in a patient with borderline baseline folate status.\nThis case therefore does not establish causation but underscores an important clinical principle: even medications considered safe in pregnancy may be associated with risk under certain circumstances, particularly when guideline‐recommended supplementation is omitted.\nPreconception counselling should therefore be an integral component of care. When prescribing sulfasalazine to women of childbearing potential, high‐dose folic acid (5 mg daily) should be initiated at least 3 months before conception and continued through the first trimester [ 2 ].\nIt also reinforces the importance of public health strategies such as mandatory folic acid fortification of staple foods to reduce population‐level risk of NTDs [ 9 ,  10 ].\n\nWritten informed consent was obtained from the patient for publication of this case report and any accompanying details.\n\nThe authors declare no conflicts of interest.\n\nAdditional supporting information can be found online in the Supporting Information section.\n\nSupporting Information  The CARE checklist for this case report is available as supporting information.","source_license":"CC-BY-4.0","license_restricted":false}