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Review

The Efficacy and Safety of Abrocitinib as a Treatment Option for Atopic Dermatitis: A Short Report of the Clinical Data

ORCID Icon, , , , &
Pages 1135-1147 | Published online: 10 Mar 2021

Abstract

Atopic dermatitis (AD) is a chronic, pruritic, inflammatory skin disease that predominantly affects children. However, it can persist in adulthood and/or start at older ages. Both dysfunction of the epidermal barrier and immune dysregulation are known to play a role in the pathogenesis of AD. In the last years, numerous studies showed that Janus kinase (JAK) enzymes have a key role in AD pathogenesis. Therefore, oral and topical JAK inhibitors are new emerging treatments for AD. We report the data relating to abrocitinib, an oral JAK1 inhibitor. For this purpose, we examined articles already published concerning, in particular, concluded clinical trials. Furthermore, we also report the design of current ongoing clinical trials. The search was carried out considering the main search engines relating to medical literature and clinical trials. From all the data we collected, abrocitinib proved to be an effective drug in significantly reducing the severity of moderate-to-severe AD when compared to placebo. Furthermore, the efficacy was similar to other well-established treatment for AD, such as dupilumab. Adverse events were generally mild; indeed, the drug was definitively suspended only in few patients.

Introduction

Atopic dermatitis (AD) is a chronic skin condition that has recently been the subject of volumes of basic science, clinical, and epidemiologic research, being considered a global health issue due to the increased prevalence in last decades.Citation1,Citation2 Currently, AD impacts approximately 15% to 20% of children and 10% of adults in industrialized countries, although there is a considerable countrywide variation of AD prevalence and severity.Citation3

AD has a complex and multifactorial pathophysiology, consisting of multiple interactions between skin barrier defects and immunological disturbances.Citation4 The most important pathway involved in AD pathogenesis is based on the T-helper (Th)2 lymphocyte axis. However, Th17, Th22, and Th1 cytokines have been shown to play important different roles in AD.Citation4Citation8

The dysfunction of the skin barrier has been shown to be a fundamental alteration in the development of AD. Indeed, many alterations were related to skin barrier defects, such as immune dysregulation, filaggrin mutations, and skin dysbiosis.Citation6 These factors interact with each other and may represent a trigger for immune activation, leading to an increase of interleukin (IL)-25, IL-33 as well as an increased activation of Th-2 pathways.Citation9 These results in a downregulation of envelope proteins (filaggrin, loricrin, and claudins) and of defensive epithelial barrier proteins.Citation4,Citation9 The activation of Th2 pathways is also related to increased levels of IL-4, IL-13, and IL-31, key cytokines associated with type-2 inflammation. Indeed, their levels correlate with AD disease activity.Citation10 Recently, some studies emphasized the role of innate lymphoid cells in expanding Th2 immunity through the release of IL-5 and IL-13, which in turn increase and support Th2 response.Citation11 Th2 polarization facilitates Staphylococcus aureus binding and colonization, and IL-4 and IL-13 inhibit skin production of antimicrobial peptides, predisposing AD skin to bacterial infections.Citation12 Furthermore, S. Aureus may induce modifications in skin barrier, inducing inflammatory processes via super-antigens and toxic shock syndrome toxin-1, which trigger cytokine release.Citation4

The chronic stage of AD is characterized by intensified Th2 and Th22 axes, and activation of both Th1 and Th17 cells.Citation10 Th1 pathway activation induces an upregulation of interferon gamma and IL-12, leading to the promotion of chronic inflammation and keratinocytes apoptosis.Citation4 Th17 cytokines IL-17 and IL-22 contribute to immune dysregulation in AD, barrier abnormalities by down-regulating filaggrin, and down regulation of expression of keratinocyte genes associated with cellular adhesion.Citation12,Citation13

The Janus kinase (JAK)–signal transducer and activator of transcription (STAT) signalling has been shown to play a central role in AD pathogenesis.Citation14 The JAK kinase family is composed of JAK1, JAK2, JAK3 and tyrosine kinase 2 (TYK2).Citation15 While JAK1, JAK2, and TYK2 are expressed in all cells, JAK3 expression occurs primarily in hematopoietic cells.Citation15 They operate intracellularly as signal transducers after that different cytokine bind their receptor chains associated with a JAK enzyme ().Citation16 The activation and dimerization of receptor activates JAK phosphorylation, leading to the binding with STAT, and subsequently STAT phosphorylation.Citation17 The resulting STAT dimer translocates to the nucleus and modulates the upregulation of the proinflammatory cytokines and growth factors genes transcription.Citation17 Each JAK dimer can be triggered by various cytokines and, sequentially, activate different STAT proteins.Citation16 JAK1 can dimerize with JAK2, JAK3, and TYK2; JAK2 with itself or TYK2; JAK3 only with JAK1; and TYK2 with JAK1 and JAK2.Citation16 Numerous studies showed that in AD pathogenesis there is an upregulation of epidermal chemokines, pro-inflammatory cytokines, and pro-angiogenic factors, as well as downregulation antimicrobial peptides and factors responsible for skin barrier function, all induced by the JAK-STAT pathway activation.Citation18 In particular, Th2 cytokines are mostly responsible for JAK1 and JAK3 activation, and the next subsequent phosphorylation of STAT6.Citation4

Figure 1 Overview of JAK signalling in the different features of immune-cell development and function.

Figure 1 Overview of JAK signalling in the different features of immune-cell development and function.

Oral and topical JAK inhibitors are new emerging treatments for AD.Citation19 The inhibition of JAK prevents their phosphorylation, stopping the transduction of intracellular signaling.Citation20 First-generation JAK inhibitors block multiple JAKs.Citation21 Among these, baricitinib, an oral JAK1 and JAK2 inhibitor, was recently approved for the treatment of moderate-to-severe AD in adult patients who are candidates for systemic therapy.Citation22 Second-generation JAK inhibitors target only one JAK isoform.Citation20 Particularly, the selective JAK1-inhibition is important to modulate different cytokines involved in the AD, avoiding undesirable effects related to the inhibition of JAK2 (neutropenia and anaemia).Citation23 Abrocitinib (PF-04965842) is a recently introduced oral JAK1 selective inhibitor that influences different important cytokines signalling pathways involved in the AD, like IL-4, IL-13, and IL-31 ().Citation23

Figure 2 Schematic representation of the abrocitinib mechanism of action.

Figure 2 Schematic representation of the abrocitinib mechanism of action.

We herein present a review, which summarizes the data on efficacy and safety of abrocitinib in the treatment of moderate to severe AD.

Methods

A search in the PubMed, Embase, Cochrane Skin databases, and clinicaltrials.gov (until October 31, 2020) was performed using the search: “atopic dermatitis” or “atopic eczema” associated with “JAK1 inhibitors”, “abrocitinib”, or “PF-04965842”. Only the material in English language was selected. The resulting records were further redefined through full-text review. Each author independently reviewed all the articles and data. Subsequently, they compared their opinions on the content and shared the information to be reported in the review. Only the articles and data already published were included in the review. Moreover, the reference lists of those papers were examined to retrieve other studies that were considered relevant for our aim. Implementing these search criteria, we also evaluated the clinical trials ongoing, but with no results posted.

Results

A total of 15 records were identified for evaluation in this review. Among these, we selected 5 clinical trials of Phase I, II and III, reviewing data about effectiveness and safety of abrocitinib. We also describe 5 trials that are currently ongoing and whose results, therefore, are not yet available. The clinical trials considered in this review are summarized in . Furthermore, we selected 5 reviews, which could be useful for the consultation and interpretation of the data. Letters and comments, reviews of abrocitinib in other dermatological diseases, and papers in which, according to the opinion shared by all the authors, there was no relevant information were excluded.

Table 1 Clinical Trials Evaluating Efficacy and Safety of Abrocitinib in Atopic Dermatitis

Phase I

The Phase I study (NCT01835197) evaluated abrocitinib safety, tolerability, pharmacokinetics and pharmacodynamics in 79 healthy adults.Citation24 This was a single-center, double-blind (subject and investigator), and sponsor open study.Citation24 The patients received a single ascending dose phase (SAD) of placebo or 3, 10, 30, 100, 200, 400, or 800 mg of abrocitinib and placebo or 30 mg once daily, 100 mg once daily, 200 mg once daily, 400 mg once daily, 100 mg twice daily, or 200 mg twice daily of abrocitinib for 10 consecutive days [multiple ascending dose phase] (MAD).Citation24 After abrocitinib intake, the peak plasma concentration has been observed within 1 hour (in both SAD and MAD phases) with a mean half-life of 2.8–5.4 hours.Citation24 Urinary recuperation was less than 4.4% and kidney excretion about 0.6 L h−1.Citation24 No serious adverse events (AEs) or death have been reported. Common AEs were headache (16.14%), nausea (13.9%), and diarrhoea (13.9%).Citation24 Only 4 treated patients discontinued due to AEs. For 3 of them, the drug discontinuation was considered treatment-related by the investigators (2 patients referred vomiting and one patient developed a respiratory syncytial virus infection), while for one patient the appearance of a second‐degree atrioventricular block was not considered treatment‐related.Citation24 The most common abnormal laboratory tests were a decrease in mean platelet volume and a positive urine blood test in the SAD phase, and a reduction in reticulocyte counts and in mean platelet volume, and an increased lymphocyte counts in the MAD phase.Citation24

Phase II

Abrocitinib safety and efficacy were evaluated in a randomized, double-blinded, placebo controlled phase IIb trial (NCT02780167), including 267 adult patients aged 18–75 years with inadequate responses or contraindications to topical treatment.Citation23 Patients were randomly treated with abrocitinib (200, 100, 30, or 10 mg) or placebo for 12 weeks.Citation23 Patients achieving an Investigator’s Global Assessment (IGA) of clear (0) or almost clear (1) with an improvement from baseline of 2 grades or more at week 12 was the primary outcome, while secondary outcomes were the variation rate from baseline to week 12 in the Eczema Area and Severity Index (EASI), Body Surface Area (BSA), Scoring Atopic Dermatitis (SCORAD) and Pruritus Numerical Rating Scale (P-NRS).Citation23

After 12 weeks, IGA0/1 was achieved by 43.8%, 29.6%, 8.9% and 10.9% of patients treated with abrocitinib 200 mg,100 mg, 30 mg, and placebo, respectively.Citation23 Concerning the variation of EASI, in the group treated with abrocitinib 200 mg, there was a reduction of EASI of 82.6%, while the reduction was of 59.0% and 40.7% in the groups treated with abrocitinib 100 mg and 30 mg, respectively.Citation23 A significant reduction of EASI was observed in both 200-mg and 100-mg groups compared with placebo, while these were not significant in the 30 mg and 10 mg groups.Citation23 At week 12, a significant reduction in P-NRS was observed in the 200 mg and 100 mg groups as well. P-NRS decreased and plateau by week 2 and week 4 in the 200 mg and 100 mg group, respectively. Finally, from baseline to week 12 a reduction of BSA and SCORAD in all treatment groups was observed.Citation23 AEs were reported by 184 (68.9%) patients. Of these 24.0% were considered related to treatments.Citation23 The most frequent reported AEs were upper respiratory tract infection, headache, nausea, diarrhoea, and AD worsening.Citation23 Among patients treated with abrocitinib 200 mg and abrocitinib 100 mg, a dose-dependent decrease in the platelet-count was found, which trended toward normalization.Citation23 Two serious AEs were reported in the treatment groups: a case of pneumonia in the abrocitinib 200 mg group and one case of eczema herpeticum in the abrocitinib 100 mg group.Citation23 Treatment discontinuation for AEs was reported in the 16.5% (n=44).Citation23

Phase III

JADE MONO-1

In a multicentre, randomised Phase III trial (JADE MONO-1; NCT03349060), patients suffering from moderate-to-severe AD, were enrolled at 69 sites.Citation25 Patients were randomly assigned (2:2:1) in one of the three study arms: abrocitinib 100 mg, abrocitinib 200 mg, and placebo QD for 12 weeks.Citation25 Enrolled patients have been suffering from AD for at least 1 year, showing IGA score ≥3, EASI score ≥16, BSA ≥10% and P-NRS ≥4.Citation25 The coprimary endpoints were the proportion of patients who had achieved an IGA score of 1 or 0 with a ≥2-grade improvement from baseline, and the proportion of patients achieving EASI75.Citation25 The main secondary endpoints were the proportion of patients who from baseline to week 12 achieved a P-NRS response ≥4 point improvement and an improvement of ≥75% or more in the SCORAD score.

Three hundred and eighty-seven patients were enrolled, but 333 patients concluded the study: 135 patients in the abrocitinib 100 mg group, 137 in the abrocitinib 200 mg group, and 61 in the placebo group. After 12 weeks, IGA response was reached by 43.8% of patients of abrocitinib 200 mg group, 23.7%, of patients of 100 mg group, and 7.9% placebo group.Citation25 As regards the different variations in IGA responses between placebo and treatment groups, it was 15.8% (p=0.0037) abrocitinib 100 mg group and 36.0% (p<0.0001) in the abrocitinib 200 mg group.Citation25 Furthermore, EASI75 was achieved by 62.7% of patients receiving abrocitinib 200 mg, 39.7% of subjects receiving abrocitinib 100 mg, and 11.8% of placebo group.Citation25 A statistically significant improvement in the P-NRS score was observed in all treatment groups (57.2% of patients receiving abrocitinib 200 mg and 37.7% of those receiving abrocitinib 100 mg), vs 15.3% of placebo groups.Citation25 An effective response in P-NRS has been already observed at week 2.Citation25 P-NRS response was noted after a median of 14 days in patients treated with abrocitinib 200 mg, after a median of 84 days in patients treated with abrocitinib 100 mg and a median of 92 days in patients treated with placebo.Citation25 As regards SCORAD variations rates, these resulted considerably higher in abrocitinib treatment groups than placebo groups, reaching a SCORAD response of ≥75% in 30.8% and 12.4% of patients in the 200mg and 100mg arms, respectively, vs 4.1% of those in placebo group.Citation25

In the JADE MONO-1 trial, AEs were described in 69% (n=108) of the abrocitinib 100 mg group, 78% (n=120) of the abrocitinib 200 mg group, and 57% (n=44) of the placebo group. The most frequent reported AEs were nasopharyngitis, headache, upper respiratory tract infection, nausea, and AD.Citation25 Serious AEs were observed in 5/156 (3.2%) of patients treated with abrocitinib 200 mg (including: asthma, inflammatory bowel disease, dehydration, and peri-tonsillitis), in 5/154 (3.2%) of abrocitinib 100 mg group (appendicitis, seizures, dizziness and acute pancreatitis) and in 3/77 (3.9%) of placebo group (worsening of AD, appendicitis, and meniscal degeneration).Citation25 Two serious AEs were considered treatment-related: one patient in the abrocitinib 200 mg group developed chronic inflammatory bowel disease and another patient in the abrocitinib 100 mg acute pancreatitis.Citation25 Abrocitinib was permanently discontinued for both patients.Citation25

The discontinuation rate in the 200 mg and 100 mg abrocitinib groups were respectively of 6% (n=9) and 6% (n=9), with AD, gastrointestinal disorders, inflammatory bowel disease, and vomiting as most frequent causes of treatment discontinuation.Citation25 However, the discontinuation rate resulted higher in the placebo group (9.1%) than in the abrocitinib groups (5.8%). A dose-related reduction of median platelet count was observed in both treatment groups (100 and 200 mg), with a nadir at week 4. However, in all cases, there was a return to baseline values without requiring treatment discontinuation.Citation25 No major cardiovascular events or venous thromboembolism or death have been reported.Citation25

JADE MONO-2

In the JADE MONO-2 trial (NCT03575871), a multicentre, double-blind, randomised phase III trial, 391 patients suffering from moderate-to-severe AD were randomly assigned in the following treatment groups: i) monotherapy with QD abrocitinib 200 mg; ii) abrocitinib 100 mg; iii) placebo.Citation26 The proportion of subjects at 12 weeks reaching IGA 0/1 or with an improvement of ≥2 grades from baseline and the proportion of subjects reaching EASI-75 response have been identified as primary end points. Secondary end points were the proportion of subjects with an improvement of ≥4 points from baseline in P-NRS score, and the change from baseline to week 12 in the total score of an 11-item survey created to evaluate daily symptoms of AD [Pruritus and Symptoms Assessment (PSA)].Citation26

Three hundred and thirty patients completed the trial. After 12 weeks, abrocitinib treatment groups (both 200 mg and 100 mg groups) achieved significantly higher responses if compared to placebo group in terms of IGA 0/1 (38.1%, 28.4% vs 9.1%), EASI 75 (61.0%, 44.5%, vs 10.4%), and P-NRS ≥4-point improvement (55.3%, 23.9% vs 11.5%).Citation26 P-NRS response was reached after a median time of 29 days in patients treated with abrocitinib 200 mg, 58 days in patients treated with 100 mg and 112 days in patients treated with placebo.Citation26 A significant reduction in P-NRS scores in both abrocitinib groups was firstly reported at day 1.Citation26 The reduction from baseline at week 12 in PSA total score was superior for both treatment groups compared to placebo group: −3.0, −2.4 and −0.8 for the patients treated with abrocitinib 200 mg, 100 mg group and placebo, respectively.Citation26

In the JADE MONO-2 trial, 65.8% (n=102) of the 200 mg group, 62.7% (n=99) of the 100 mg group, and 53.8% (n=42) of the placebo group reported treatment-emergent AEs.Citation17 The following were the most reported AEs: nausea in the 200 mg group (14.2%), nasopharyngitis in the 100mg group (12.7%), and AD in the placebo group (15.4%). In the 100 mg abrocitinib group one death was reported, which was not related to the treatment. A total of 7 serious AEs were reported in the treatment groups. Of these, 2 AEs reported in the 100mg group were considered related to treatment and were a case of herpangina and a case of pneumonia.Citation26 Both cases required abrocitinib discontinuation. Discontinuation rates were 3.2%, 3.8%, and 12.8% of 200 mg, 100 mg, and placebo group, respectively. Headache was the most frequent reported AE in both treatment groups (100 mg, 200 mg, and placebo). A reduction in platelet counts was described in the JADE MONO-2 as well, which returned to baseline levels despite the continuation of treatment.

JADE COMPARE

The JADE COMPARE study (NCT03720470) is a comparative study in which two dosages of abrocitinib, 100 mg and 200 mg taken orally QD were compared to placebo at 12 weeks and to dupilumab at 2 weeks in relation to decrease of itch.Citation27 Co-primary endpoints are the proportion of patients achieved IGA 0/1 or with a reduction from baseline of ≥2 points at week 12, and the proportion of patients achieving EASI-75. The study comprised 838 patients randomized into 5 arms of treatment: 1) patients randomized to take one of the two abrocitinib dosage plus a placebo injectable every 2 weeks until week 16, and then kept on receiving only the abrocitinib for 4 weeks;Citation27 2) patients randomized in the arm dupilumab every 2 weeks and oral placebo QD until week 16 and after only oral placebo for 4 weeks;Citation27 3) patients randomized to the placebo arm (in both injectable and oral form) every 2 weeks until week 16, and after in the arm abrocitinib 100 mg or 200 mg QD for 4 weeks.Citation27 At week 12 IGA 0/1 EASI75 response resulted significantly higher in abrocitinib treated groups than placebo group.Citation27 These results were still maintained after 16 weeks. Similarly, patients treated with dupilumab reached similar outcomes when compared to placebo at both weeks 12 and 16.Citation7 Moreover, the percentage of patients who had a clinically significant reduction in P-NRS by week 2 was higher in abrocitinib 200 mg group than dupilumab, and not statistically significantly higher, for the abrocitinib 100 mg group than dupilumab.Citation27 From the data currently available, the JADE COMPARE study showed a safety profile of abrocitinib consistent with prior trials.Citation27

Ongoing Clinical Trials

Phase IIA

In the JADE MOA study (NCT03915496), a multicentre, double-blind, randomised phase IIA study, the mechanism of action of abrocitinib is evaluated and correlated to efficacy outcomes, with changes from baseline in key skin and blood biomarkers in adult (≥18-year-old) participants.Citation32 The study provides for the enrolment of 51 patients and is currently in the recruiting phase. The participants will be randomized in a 1:1:1 ratio to receive abrocitinib 200 mg once daily (QD), abrocitinib 100 mg QD, or matching placebo QD for 12 weeks. The primary endpoint is the evaluation of expression in lesional and non-lesional skin of biomarkers for general inflammation (MMP12), hyperplasia (K16), Th2 immune response (CCL17, CCL18, CCL26), and Th22 immune response (S100A8, S100A9, S100A12), from baseline to week 12.Citation32

Phase III

In the phase III study (JADE REGIMEN; NCT03627767) the efficacy and safety of abrocitinib has been evaluated in patients suffering from moderate to severe AD, aged ≥12 years, and with a body weight ≥40 kg.Citation28 The study included 1234 subjects. After an initial 12-week, open-label treatment with abrocitinib 200 mg QD, the patients have been randomized to receive abrocitinib 200 mg QD, 100 mg QD, or placebo QD.Citation28 The primary endpoint is the percentage of patients that 12 weeks after the randomization showed a loss of response to abrocitinib (defined as a loss of at least 50% of the EASI) requiring rescue treatment during the blinded treatment period. The main secondary endpoints are the change of IGA, EASI, P-NRS, SCORAD, BSA, and DLQI, from baseline to all timepoints. The study enrolment has been completed, but no results are available.Citation28

In the JADE EXTEND study (NCT03422822), multi-center, long-term extension trial, the efficacy and safety of abrocitinib has been evaluated in about 3000 atopic patients aged 12 years and older.Citation29 Abrocitinib was administered in 2 dosages, 100 mg and 200 mg taken orally QD.Citation29 After a 92-week initial treatment period, the patients received the same dosage treatment in open-label until drug availability in commerce. The co-primary endpoints were the evaluation of incidence of AEs during the blinded phase of the study and until availability of commercial product, the changes from baseline in clinical laboratory values, the electrocardiogram measurements, and the vital signs. The main secondary endpoints were percentage of reduction of IGA, EASI, P-NRS, and BSA from baseline to week 92. The study is currently in the enrolment phase and is expected to end in December 2023. No results are available.Citation29

In a phase IIIb randomized clinical trial (NCT04345367), the effectiveness and safety of abrocitinib 200 mg QD is compared to dupilumab 300 mg administered by subcutaneous injection every other week.Citation30 To date, the study is in the enrolment phase, and the randomization of about 600 subjects is planned. The primary endpoints are the change percentage in P-NRS and EASI values, from baseline to week 4. The main secondary endpoints were: 1) the percentage of patients achieving EASI90 (≥90% improvement from baseline) at week 16; 2) the percentage of participants achieving EASI75 at week 16; 3) the percentage of patients achieving IGA 0/1 or with a reduction from baseline of ≥2 points at all scheduled time points; 4) percentage of subjects with at least a 4-point improvement in the severity of P-NRS; 5) percentage reduction of BSA.Citation30 The estimated study completion date is July 2021.

To date, a multicentre clinical trial (NCT04564755) provides access to abrocitinib treatment, to adolescent (from 12 years of age) and adult patients with moderate to severe AD who have inadequate treatment options with available and approved medicated topical and systemic therapies.Citation31 The participants will receive abrocitinib 100 mg or 200 mg orally QD.Citation31 No further information is currently available.Citation31

Conclusion

Selective JAK1 inhibitors seem to be effective and safe for AD treatment, with good oral bioavailability as well as a lack of immunogenicity, addressing some of the limitations of biologic drugs. Abrocitinib, among others, could change how to treat our moderate to severe AD patients. Indeed, the efficacy is significantly higher than placebo and seems to be comparable or higher than that of dupilumab, a monoclonal antibody largely used in patients with moderate-to-severe AD. Furthermore, abrocitinib improved pruritus firstly starting after 2 days of treatment. This rapid effect may increase adherence to treatment in patients before gaining clinical control of the disease. The safety and tolerability profile was acceptable; in fact, only few patients dropped-out during clinical trials. However, to evaluate its most appropriate role in AD treatment, it will be essential to have long-term real-life data and head-to-head studies for different JAK inhibitors and biologic drugs.

Disclosure

MN has acted as speaker, consultant and advisory board member for Sanofi, Abbvie, Leo Pharma and Novartis.

GF has been principal investigator in clinical trials sponsored by and/or and has received personal fees from AbbVie, Abiogen, Almirall, Celgene, Eli-Lilly, Leo Pharma, Novartis, Sanofi, and UCB.

CP has acted as investigator, speaker, consultant, and advisory board member for AbbVie, Eli Lilly, Novartis, Pfizer and Sanofi.

The authors report no other potential conflicts of interest for this work.

Additional information

Funding

There is no funding to report.

References