Environmental manganese (Mn) toxicity causes an extrapyramidal, parkinsonian-type movement disorder with characteristic magnetic resonance images of Mn accumulation in the basal ganglia. We have recently reported a suspected autosomal recessively inherited syndrome of hepatic cirrhosis, dystonia, polycythemia, and hypermanganesemia in cases without environmental Mn exposure. Whole-genome mapping of two consanguineous families identified SLC30A10 as the affected gene in this inherited type of hypermanganesemia. This gene was subsequently sequenced in eight families, and homozygous sequence changes were identified in all affected individuals. The function of the wild-type protein and the effect of sequence changes were studied in the manganese-sensitive yeast strain Δpmr1. Expressing human wild-type SLC30A10 in the Δpmr1 yeast strain rescued growth in high Mn conditions, confirming its role in Mn transport. The presence of missense (c.266T>C [p.Leu89Pro]) and nonsense (c.585del [p.Thr196Profs(∗)17]) mutations in SLC30A10 failed to restore Mn resistance. Previously, SLC30A10 had been presumed to be a zinc transporter. However, this work has confirmed that SLC30A10 functions as a Mn transporter in humans that, when defective, causes Mn accumulation in liver and brain. This is an important step toward understanding Mn transport and its role in neurodegenerative processes.
Overall, 79·8% of the ustekinumab-treated patients remained in the study for 3 years. PASI 75 response rates (45 mg: 61·2%; 90 mg: 72·4%) at week 76 were maintained through year 3 (45 mg: 62·7%; 90 mg: 72·2%); PGA response was similarly durable. At year 3, 80·9% (45 mg) and 82·7% (90 mg) of week 40 responders continuing treatment every 12 weeks achieved a PASI 75 response, while 42·6% (45 mg) and 58·0% (90 mg) achieved a PASI 90 response. Among partial responders adjusted to dosing every 8 weeks, 50·9% (45 mg) and 52·0% (90 mg) had a PASI 75 response at year 3. DLQI responses paralleled the PASI responses. Through year 3, no dose response was observed in rates of adverse events (AEs), overall infections, serious AEs, or AEs leading to discontinuation; nor was there evidence of cumulative organ toxicity. CONCLUSIONS; Continuous, stable, maintenance dosing with ustekinumab was generally well tolerated and sustained durable efficacy for up to 3 years of treatment.
The efficacy of brodalumab 210 mg Q2W was similar regardless of prior biological therapy (P = 0·31, 0·32 and 0·64 for PASI 75, 90 and 100, respectively). Almost twice as many patients achieved PASI 100 or complete clearance with brodalumab at week 12 compared with ustekinumab; the differences were most noticeable where previous biologics had failed. Both treatments were well tolerated.
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