| Literature DB >> 26847293 |
Kyoung Yong Jeong1, Mina Son1, Soo Young Choi1, Kyung Hee Park1, Hye Jung Park1, Chein Soo Hong1, Jae Hyun Lee1, Jung Won Park2.
Abstract
PURPOSE: Japanese hop (Humulus spp.) and mugwort (Artemisia spp.) are notable causes of autumn pollinosis in East Asia. However, Japanese hop and mugwort pollen extracts, which are widely used for the diagnosis, have not been standardized. This study was performed to standardize Japanese hop and mugwort pollen extracts.Entities:
Keywords: Allergen standardization; Japanese hop; mugwort
Mesh:
Substances:
Year: 2016 PMID: 26847293 PMCID: PMC4740533 DOI: 10.3349/ymj.2016.57.2.399
Source DB: PubMed Journal: Yonsei Med J ISSN: 0513-5796 Impact factor: 2.759
Fig. 1Pollen allergen extraction procedure. Key steps and key points are summarized.
Clinical Features of the Enrolled Japanese Hop-Allergic Subjects
| Subject | Gender/age | D50 | BAU | Symptom/diagnosis | Sensitization profile | sIgE to w22 | Total IgE |
|---|---|---|---|---|---|---|---|
| HJ-001 | F/57 | 13.60 | 64439.4 | AR, AS | d2, w22 | >100 (6) | ND |
| HJ-002 | F/54 | ND | ND | AR, AS, CC, UT | d2, e5, w22 | >100 (6) | ND |
| HJ-003 | F/44 | ND | ND | AR, AS | d2, e1, w7, w22 | 95.5 (5) | 474 |
| HJ-004 | F/57 | 15.00 | 300000 | AR | d2, e5, w22, t3, t7 | 35.8 (5) | ND |
| HJ-005 | F/51 | 15.00 | 300000 | AC, AR, AS, OAS | d2, i6, e82, m5, t2, t3, t5, t7, w1, w7, w12, w22 | ND | 330 |
| HJ-006 | M/27 | 15.00 | 300000 | AE, OAS, UT | d2, w22, t2, t3, t5, t7, e1, w22 | 66.4 (5) | 335 |
| HJ-007 | F/25 | 13.20 | 41524.36 | AC, AR | w1, w6, w7, w22 | 42.6 (4) | 99.6 |
| HJ-008 | M/29 | 13.90 | 89595.85 | AC, AD, AR | d2, i6, w22 | 20.9 (4) | 192 |
| HJ-009 | M/50 | 12.30 | 15448.77 | AC, AR | w1, w22 | 31.4 (4) | ND |
| HJ-010 | M/59 | 14.35 | 146890.1 | AR | w6, w7, w22, t2, t3, t7 | 16.9 (3) | ND |
| HJ-011 | M/26 | 14.6 | 193318.2 | AR | d2, w6, w22 | 2.06 (2) | ND |
| HJ-012 | F/54 | ND | ND | AR | w9, w22, e6, e82 | ND | ND |
| HJ-013 | F/29 | 17.2 | 3363474 | AC, AD, CD, AR | d2, e1, e5, m3, m81, w1, w22, t3, t7 | 56.3 (5) | 2131 |
| HJ-014 | F/31 | 14.6 | 373719.3 | AC, AR | w1, w6, w8, w9, w10, w22, g2, g3, g4, g5, g6, t2, t3, t7, t8, t10, t11, t12, t13, t15, t19, t213 | ND | ND |
| HJ-015 | M/50 | 16.3 | 1251350 | AS, AR | d2, w22, t3, t7 | 13.9 (3) | ND |
| HJ-016 | M/19 | 14.8 | 240822.5 | AR, AC, OAS | d1, d2, w6, w22, g6, t3, t7 | 4.58 (3) | 968 |
| HJ-017 | M/19 | ND | ND | AR, AC | d1, d2, m1, w1, d5, w9, w10, w19, w22, g2, g3, g5, g6, t2, t3, t7, t8, t10, t11, t12, t15, t17, t19, t70, t213 | ND | ND |
| HJ-018 | M/23 | ND | ND | AR | w5, w8, w19, w22 | ND | ND |
| HJ-019 | M/37 | ND | ND | AR, AC, UT | d1, d2, e2, w22 | 19.2 (4) | ND |
| HJ-020 | F/31 | 14.6 | 193318.2 | AR, AS | d1, d2, w22 | 5.80 (3) | 99.3 |
| HJ-021 | F/66 | ND | ND | AR, AS | d1, d2, w1, w6, w22 | 8.74 (3) | 38.4 |
| HJ-022 | F/29 | 12.4 | 17242.73 | AR, AS, CC, UT | d1, d2, d72, e2, e5, w9, w22, t8, t10, t12, tx | ND | ND |
| Mean | 14.4 | 459409.5 |
AC, allergic conjunctivitis; AD, atopic dermatitis; AE, angioedema; AR, allergic rhinitis; AS, asthma; CC, chronic cough; CD, contact dermatitis; OAS, oral allergy syndrome; UT, urticaria; BAU, bioequivalent allergen unit; IgE, immunoglobulin E.
d1, Dermatophagoides pteronyssinus; d2, D. farinae; d72, Tyrophagus putrescentiae; i6, German cockroach; e2, dog hair; e5, dog dander; e6, Guinea pig epithelium; e82, rabbit epithelium; m3, Aspergilus fumigates; m5, Candida albicans; w1, ragweed; w6, mugwort; w7, Chrysanthemum leucanthemum; w8, dandelion; w9, plantain; w10, goosefoot; w12, goldenrod; w22, Japanese hop; wx, weed mix; g2, Bermuda grass; g3, cocksfoot; g4, meadow fescue; g5, rye-grass; g6, timothy grass; t2, alder; t3, common silver birch; t5, beech; t7, white oak; t8, elm; t10, walnut; t11, platanus; t12, willow; t13, mulberry; t15, white ash; t17, Japanese cedar; t19, acacia; t213, pine; tx, tree mix.
Clinical Features of Enrolled Mugwort-Allergic Subjects
| Subjects | Gender/age | D50 | BAU | Symptom/diagnosis | Sensitization profile | sIgE to w6 | Total IgE |
|---|---|---|---|---|---|---|---|
| AV-001 | F/28 | 11.7 | 30077.65 | AR | t2, t3, t7, t8, t10, t11, t12, t70, t14, t16, g8, w1, w8, w10, w22, w21, d72, d1, d2, e1, e5 | ND | ND |
| AV-002 | M/45 | 10.3 | 7417.058 | AR | t7, t11, t12, t70, w1, w6, w7, w8, w10, w12, m1, d1, i6 | 8.45 (3) | ND |
| AV-003 | F/43 | 15 | 815484.5 | AR, AC | w1, w6, w8 | ND | ND |
| AV-004 | M/45 | 13.6 | 201096 | AR, AS, drug allergy | t5, t7, t8, t10, t11, t19, t16, g8, g5, g12, g6, w1, w6, w7, w8, w10, w12, w9, w22, m1, m2, m5, d72, d1, d2, e1, e5, e3, e84, e73, i206 | 5.65 (3) | ND |
| AV-005 | M/20 | 12 | 40600.58 | AR | t2, t3, t5, t7, w1, w6, w7, w8, w12, m3, d72, d1, d2 | 0.61 (1) | 284 |
| AV-006 | M/52 | ND | ND | AR, OAS | t1, t2, t3, t7, t8, t10, t11, t12, t70, t11, t16, t6, g6, w1, w6, w8, w10, w22, m1, e1, e5, e3 | ND | ND |
| AV-007 | M/46 | 14.9 | 737880.9 | AR | t2, t3, t7, t8, t10, t12, t70, t11, t15, t16, w6, w8, w9, w22, m1 | ND | ND |
| AV-008 | F/58 | ND | ND | AR, AC | t3, w1, w6, w22, d2, e5 | 25.5 (4) | 784 |
| AV-009 | F/46 | 12 | 40600.58 | AR, AS, drug allergy | w1, w6, w8 | ND | ND |
| AV-010 | M/19 | 14 | 300000 | AR, AC, OAS | t1, t2, t3, t7, t8, t10, t70, t15, t19, t16, g8, g2, g3, g6, w6, w8, w22, d72, d1, d2, e1, e5, i6, i206 | 4.81 (3) | 968 |
| AV-011 | M/34 | 14.9 | 737880.9 | AR, AC | t1, t2, t3, t7, t8, t10, t11, t12, t70, t11, t15, t19, t16, t16, t6, g8, g2, g3, g5, g6, w1, w6, w10, w9, w22, e1, e5, f11, d2 | ND | ND |
| AV-012 | M/19 | ND | ND | AR, AC | t1, t2, t3, t7, t8, t10, t11, t12, t70, t11, t15, t19, t14, t16, t6, g8, g2, g3, g5, g6, w1, w6, w10, w9, w22, w21, m1, m2, d1, d2, e3, i206, f11, f4 | ND | ND |
| AV-013 | F/53 | 13.3 | 148975.6 | AR, AS, drug allergy | t10, t16, g6, w6, w8, w22, w21, m1, m2, m3, m5, m6, d72, d1, d2, e1, e5, e3, e4, e6, i6, i206 | 3.66 (3) | ND |
| AV-014 | M/41 | 14.4 | 447547.4 | AR | t1, g6, w6, w8, d1 | ND | ND |
| AV-015 | F/37 | 14.6 | 546635.6 | AR | t10, w1, w6, w8, w10, m2, d1, d2, e5 | ND | ND |
| AV-016 | M/23 | ND | ND | AR | w6, w8, w22, w21, m1 | ND | ND |
| AV-017 | F/20 | ND | ND | AR, chronic urticaria, drug allergy | w6, w8 | ND | ND |
| AV-018 | M/42 | 15.6 | 1485910 | AR | t1, g2, w1, w6, w8, w10, w22, d72, d1, d2, i6 | ND | ND |
| AV-019 | F/37 | 12.6 | 73979.09 | AR | w1, w6, w8, w10, w9, d1, d2, e1, e5, i6 | ND | ND |
| AV-020 | M/38 | 13 | 110363.8 | AR, AS, AD | t6, w6, w8, d1, d2, e1, e5 | ND | ND |
| Mean | 13.55 | 60691.3 |
AR, allergic rhinitis; AS, asthma; AC, allergic conjunctivitis; OAS, oral allergy syndrome; BAU, bioequivalent allergen unit; IgE, immunoglobulin E.
t1, acer; t2, alder; t3, birch; t5, beech; t7, oak; t8, elm; t10, walnut tree; t11, elder; t12, willow; t14, poplar; t16, pine; t19, acacia; t70, mulberry; g2, Bermuda grass; g3, cocksfoot; g5, rye-grass; g6, timothy grass; g8, meadow grass; g12, cultivated rye; w1, ragweed; w6, mugwort; w8, dandelion; w9, plantain; w10, goosefoot; w21, wall pellitory; w22, Japanese hop; m1, Penicillium; m2, Cladosporium; m3, Aspergilus; m5, Candia; m6, Alternaria; d1, Dermatophagodes pteronyssinus; d2, D. farinae; d72, Tyrophagus putrescentiae; e1, cat dander; e3, horse dander; e4, cow dander; e5, dog dander; e6, Guinea pig epithelium; e73, rat epithelium; e84, hamster epithelium; i6, German cockroach; i206, American cockroach; f4, wheat; f11, buckwheat.
Fig. 2In vivo standardization. Serially diluted allergen extracts were intradermally injected in subjects (A), and erythema size was measured after 15 to 20 minutes (B). The allergen potency was determined by calculating the dilution that induced an erythema diameter sum of 50 mm (C).
Fig. 3SDS-PAGE (A) and IgE immunoblot (B) analyses of Japanese hop pollen extracts. Twenty microlligrams of proteins were separated on 15% polyacrylamide gel under reducing conditions. IgE reactive proteins were probed with a pooled serum of Japanese hop-sensitized patients. M, molecular weight standards; A, commercial (allergopharma) Japanese hop extract; Y, our (Yonsei) collected Japanese hop extract. SDS-PAGE, sodium dodecyl sulfate polyacrylamide gel electrophoresis; IgE, immunoglobulin E.
Fig. 4SDS-PAGE (A) and IgE immunoblot (B) analyses of mugwort extracts. M, molecular mass marker; YS, Yonsei extract; HS, Hollister-Stier extract; A, mugwort-sensitized sera; B, non-atopic sera; C, buffer control.
Fig. 5ELISA inhibition analysis of Japanese hop extracts. IgE reactivity to our (Yonsei) collected (A) and commercial (Allergopharma) (B) extracts was inhibited at a various concentrations. ELISA, enzyme-linked immunosorbent assay.
Fig. 6In vitro standardization of mugwort extract. Competitive inhibition CAP was performed to estimate the potency of the extract using a pooled serum of eight subjects.