Journal of Traditional Chinese Medicine ›› 2026, Vol. 46 ›› Issue (1): 1-13.DOI: 10.19852/j.cnki.jtcm.2026.01.001
• Systematic Reviews • Next Articles
LIN Lixia1, LI Xin2, LI Ling1, YANG Pu2, LU Liming3, LIU Buping4,5(
), SU Shengyong6(
)
Received:2024-11-29
Accepted:2025-05-20
Online:2026-02-15
Published:2026-01-28
Contact:
SU Shengyong, Department of acupuncture and moxibustion, the First Affiliated Hospital of Guangxi University of Chinese Medicine, Nanning 530022, China. Supported by:LIN Lixia, LI Xin, LI Ling, YANG Pu, LU Liming, LIU Buping, SU Shengyong. Multiple acupuncture and moxibustion therapies for allergic rhinitis in adults: a network Meta-analysis of randomized controlled trials[J]. Journal of Traditional Chinese Medicine, 2026, 46(1): 1-13.
Figure 1 Flowchart of studies selection WoS: Web of Science; CNKI: China National Knowledge Infrastructure Database; VIP: China Science and Technology Journal Database; AR: allergic rhinitis.
| Study | Intervention | Control | Treatment (weeks) | Outcome | ||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| E | Sample (M#/F) | Age | Duration | C | Sample (M#/F) | Age | Duration | |||||||||||
| Xu SN et al 2005 | AA | 30 | 20-45 | 1-22Y | WM | 30 | 21-46 | 1-22Y | 4 | 1 | ||||||||
| Qiao FY et al 2005 | EA | 210 (102/108) | 18-60 | 1-10Y | WM | 210 (117/93) | 19-60 | 1-8Y | 3 | 1 | ||||||||
| Zhang B et al 2011 | HSM | 30 (18/12) | 48.6± 13.2 | 6.8±3.3 (Y) | HA | 30 (16/14) | 49.2±15.5 | 5.9±3.1 (Y) | 3 | 1 | ||||||||
| Yang XM et al 2021 | EA+ AE | 36 (25/11) | 38.14± 5.78 | 4.51± 2.06 (Y) | WM | 36 (26/10) | 37.94±4.69 | 4.02±1.79 (Y) | 4 | 1 | ||||||||
| Chen T et al 2017 | AA | 34 (20/14) | 26-63 | 1-25 (Y) | WM | 32 (17/15) | 28-61 | 1-22 (Y) | 3 | 1 | ||||||||
| Li L et al 2009 | HA | 33 (13/20) | 18-60 | 3 (D)-20 (Y) | APPS | 33 (11/22) | 19-59 | 1 (D)-18 (Y) | 5 | 1 | ||||||||
| Lin C et al 2013 | HA+ IM | 12 (4/8) | 34-55 | 2-17 (Y) | C1: HA C2: WM | C1: 11 (4/7) C2: 12 (5/7) | C1: 35-60 C2: 27-54 | C1: 2-18 (Y) C2: 3-15 (Y) | 4 | 2 | ||||||||
| Ye J et al 2019 | AE | 51 (27/24) | 35±5 | 5.4± 3.2 (Y) | HA | 51 (29/22) | 33±6 | 5.3±2.3 (Y) | 8 | 1 | ||||||||
| Yong RL et al 2016 | HA | 30 (13/17) | 42.27± 9.28 | 6.48± 4.07 (Y) | WM | 30 (14/16) | 42.97±9.14 | 6.13±3.85 (Y) | 4 | 2, 3 | ||||||||
| Meng S et al 2013 | AE | 40 (20/20) | 35.00± 2.3 | 1.8 ± 0.6 (Y) | WM | 50 (22/28) | 37.0±2.2 | 1.9±0.8 (Y) | 8 | 1 | ||||||||
| Liu TS et al 2014 | EA | 30 (16/14) | 38±10 | 9.1± 3.4 (Y) | WM | 30 (15/15) | 41±12 | 8.5±2.6 (Y) | 4 | 1 | ||||||||
| Liu WY 2015 | HA+ AE | 39 (22/17) | 35.4±9.1 | 5.4± 2.2 (Y) | HA | 39 (20/19) | 36.2±11.2 | 5.5±2.4 (Y) | 24 | 1, 2 | ||||||||
| Wang P 2013 | EA | 27 (11/16) | 40.19± 12.19 | 6.81± 4.55 (Y) | WM | 28 (11/17) | 38.68±8.79 | 4.96±4.31 (Y) | 4 | 2, 3, 4 | ||||||||
| Liu X et al 2021 | HA | 30 (16/14) | 36.20± 12.11 | 8.15± 6.09 (Y) | WM | 30 (17/13) | 39.23±11.67 | 10.06±7.19 (Y) | 3 | 1, 2 | ||||||||
| Li S et al 2022 | MB | 32 (19/13) | 40.1± 13.4 | NA | WM | 32 (22/10) | 38.9±11.6 | NA | 4 | 1, 2, 3 | ||||||||
| Li Y et al 2019 | HA | 37 (20/17) | 36.65± 2.19 | 10.43± 1.08 (M) | WM | 38 (19/19) | 38.35± 2.31 | 10.84±1.05 (M) | 2 | 1, 2, 3, 4 | ||||||||
| Sun DP et al 2019 | WA | 50 (29/21) | 38.70± 9.15 | 4.93 ± 3.49 (Y) | WM | 50 (28/22) | 36.52±9.86 | 4.55±2.90 (Y) | 4 | 1 | ||||||||
| Chen S et al 2015 | HA | 34 (17/17) | 44±9 | 6.8± 4.4 (Y) | WM | 32 (14/18) | 40±11 | 7.1±4.3 (Y) | 8 | 1, 2, 3 | ||||||||
| Chen YD et al 2015 | HA | 30 (13/17) | 42±3 | 8.0± 1.1 (Y) | WM | 30 (18/12) | 40±2 | 7.1±1.1 (Y) | 8 | 1 | ||||||||
| Wu WB et al 2019 | HA+ IM | 36 (15/21) | 47.22± 4.64 | 62.37± 25.13 (M) | WM | 36 (16/20) | 45.45±4.92 | 61.0±27.00 (M) | 3 | 1, 3 | ||||||||
| Liu P et al 2018 | HA | 78 (37/41) | 46.1±9.1 | 10.0± 5.1 (W) | PG | 76 (43/33) | 47.2±7.2 | 11.2±6.3 (W) | 4 | 1, 2, 3, 4 | ||||||||
| Lin YF et al 2017 | HSM | 36 (17/19) | 26.64± 5.70 | 2.96± 0.24 (Y) | WM | 36 (16/20) | 27.78 ±5.78 | 2.88±0.25 (Y) | 3 | 1, 2 | ||||||||
| Zhao QY et al 2018 | AN | 25 (11/14) | 38.18± 10.29 | 8.64± 2.06 (Y) | WM | 24 (14/10) | 36.64±9.52 | 9.00±2.49 (Y) | 4 | 2 | ||||||||
| Xia QG et al 2012 | HA | 57 (20/37) | 21-59 | 20 (D)- 10 (Y) | WM | 55 (28/27) | 22-56 | 15 (D)-9 (Y) | 4 | 1 | ||||||||
| Lin C et al 2013 | HA+ IM | 19 (5/14) | 44.67± 10.43 | 8.99± 8.63 (Y) | C1: HA C2: WM | C1: 19 (6/13) C2: 20 (8/12) | C1: 48.04±13.34 C2: 40.03±14.07 | C1: 9.81±8.05 (Y) C2: 6.72±5.41 (Y) | 4 | 2 | ||||||||
| Cui X et al 2017 | EA+ AE | 33 | 35.39± 4.63 | 4.89± 0.87 (Y) | WM | 33 | 38.05±4.62 | 5.39±0.85 (Y) | 4 | 1, 2, 3, 4 | ||||||||
| Li Y et al 2021 | HA | 32 (16/16) | 37±4 | 11.43± 3.13 (M) | WM | 33 (18/15) | 38±4 | 11.61±3.33 (M) | 2 | 1, 2, 3, 4 | ||||||||
| Luo W et al 2021 | HA | 30 (12/18) | 34±8 | 6.01± 2.31 (Y) | WM | 30 (14/16) | 35±7 | 6.23±2.56 (Y) | 4 | 1, 2, 3, 4 | ||||||||
| Niu JM et al 2022 | HA+ AE | 43 (22/21) | 44±11 | 5.59±1.28 (Y) | HA | 43 (23/20) | 43±11 | 5.59±1.87 (Y) | 4 | 1, 2 | ||||||||
| Cui X et al 2018 | EA+ AE | 40 (16/24) | 34.85± 12.38 | 3.76± 1.01 (Y) | WM | 40 (15/25) | 35.12±10.32 | 3.65±1.02 (Y) | 4 | 1, 2 | ||||||||
| Zhang PP et al 2023 | HA+ IM | 26 (11/15) | 39.62± 12.77 | 7.00± 4.22 (Y) | PG | 26 (9/17) | 38.23±14.29 | 8.48±6.29 (Y) | 4 | 2, 3, 4 | ||||||||
| Wang P 2022 | HA | 27 (13/14) | 41.57± 9.22 | 6.35± 4.29 (Y) | WM | 30 (13/17) | 40.55±8.02 | 4.27±4.55 (Y) | 4 | 1, 2, 3 | ||||||||
| Huo ZY et al 2020 | HA | 50 (28/22) | 42.6±1.8 | 11±1.24 (Y) | WM | 50 (30/20) | 41.3±1.9 | 12±1.13 (Y) | 8 | 1, 2, 3 | ||||||||
| Yang JX et al 2018 | HA | 58 (25/33) | 40.91± 14.35 | NA | WM | 57 (26/31) | 39.21±12.11 | NA | 3 | 1 | ||||||||
| Wei Y 2019 | AE | 30 (16/14) | 42±8.31 | 14.28± 31.46 (M) | WM | 30 (18/12) | 40±10.82 | 13.57±29.45 (M) | 4 | 1 | ||||||||
| Zhang LL et al 2016 | HA+ AE | 50 (29/21) | 45.36± 2.52 | 3.34± 1.15 (Y) | HA | 50 (22/28) | 46.27±1.27 | 3.25±1.31 (Y) | 24 | 1 | ||||||||
| Yao WJ et al 2021 | AE | 30 (16/14) | 35.56± 7.33 | 1.95± 0.36 (Y) | WM | 30 (17/13) | 34.76±7.06 | 1.89±0.55 (Y) | 4 | 2 | ||||||||
| Zhu QY et al 2020 | HA+ HSM | 40 (25/15) | 37.63± 8.52 | 8.59± 2.57 (Y) | HA | 40 (26/14) | 37.91±8.74 | 8.31±2.12 (Y) | 12 | 1 | ||||||||
| Song WJ et al 2020 | HA | 32 (17/15) | 43.7±13.9 | 8.00± 3.94 (Y) | WM | 32 (19/13) | 44.6±13.4 | 7.91±3.71 (Y) | 4 | 1 | ||||||||
| Sun X et al 2021 | MB | 47 (31/16) | 43.21± 7.29 | 10.64±3.85 (Y) | WM | 47 (29/18) | 42.36±6.85 | 11.17±3.21 (Y) | 4 | 3 | ||||||||
| Xiong CY et al 2019 | HA+ HSM | 30 (14/16) | 41.7±11.2 | NA | C1: HSM C2: WM | C1: 30 (16/14) C2: 30 (15/15) | C1: 41.6±10.5 C2: 41.2±12.2 | NA | 3 | 1 | ||||||||
| Zhao QY et al 2020 | AN | 31 | 18-65 | NA | WM | 30 | 18-65 | NA | 4 | 2, 3, 4 | ||||||||
| Zhang YH 2017 | WA | 43 (20/23) | 43.25± 0.04 | NA | EA | 43 (21/22) | 43.13±0.14 | NA | NA | 1 | ||||||||
| Li RY et al 2013 | WA | 62 | 42.57± 9.85 | NA | WM | 62 | 40.32±10.45 | NA | 4 | 1 | ||||||||
| Fu YQ et al 2018 | HA+ AE | 36 (21/15) | 41.8±5.8 | NA | HA | 35 (18/17) | 42.1±5.5 | NA | 4 | 1 | ||||||||
| Wang DS et al 2021 | HA+ IM | 37 (17/20) | 34.48± 0.36 | NA | WM | 37 (19/18) | 33.98±0.43 | NA | 12 | 1 | ||||||||
| Wang F et al 2016 | WA | 50 (24/26) | 36.25± 10.23 | NA | EA | 50 (24/26) | 32.48±9.63 | NA | NA | 1 | ||||||||
| Jia XJ et al 2019 | HA+ IM | 36 (20/16) | 35±4 | 5.55±1.23 (Y) | WM | 36 (21/15) | 35±4 | 5.64±1.29 (Y) | 12 | 1 | ||||||||
| Xu XW et al 2017 | WA | 46 | 41.3±2.2 | 1.2±1.1 (Y) | EA | 46 | 44.2±2.6 | 1.6±1.2 (Y) | NA | 1 | ||||||||
| Wang H et al 2013 | EA | 41 (19/22) | 44±10 | 7.9±5.3 (Y) | WM | 40 (17/23) | 40±10 | 6.6±5.0 (Y) | 4 | 1 | ||||||||
| Choi SM et al 2013 | HA | 95 (39/56) | 38.97±11.33 | 11.43±9.20 (M) | PG | 93 (30/63) | 37.04±12.23 | 12.02±7.40 (M) | 4 | 3, 4 | ||||||||
| Chen YD et al 2016 | HA | 36 (15/21) | 43.08± 2.58 | 7.08±0.88 (Y) | WM | 34 (16/18) | 43.47±2.21 | 6.62±1.06 (Y) | 8 | 1 | ||||||||
| Li XR et al 2016 | AE | 64 (29/35) | 36.11±11.50 | NA | PG | 64 (36/28) | 38.08±12.11 | NA | 2 | 2 | ||||||||
| Yung TY et al 2019 | HA+ IM | 32 (16/16) | 43.59± 13.67 | 19.75± 12.62 (Y) | HA | 32 (6/26) | 44.41±13.63 | 16.22±10.43 (Y) | 4 | 3 | ||||||||
| Dai L et al 2019 | AA | 46 (23/23) | 45.6±15.1 | 17.1±11.8 (Y) | PG | 46 (25/21) | 40.4±15.6) | 15.0±8.1 (Y) | 4 | 3 | ||||||||
| Gong Z et al 2020 | HA | 81 (36/45) | 37.99± 9.62 | 6.16±3.86 (Y) | WM | 80 (33/47) | 38.28±11.29 | 6.21±3.99 (Y) | 2 | 1, 2 | ||||||||
Table 1 Characteristics of included studies
| Study | Intervention | Control | Treatment (weeks) | Outcome | ||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| E | Sample (M#/F) | Age | Duration | C | Sample (M#/F) | Age | Duration | |||||||||||
| Xu SN et al 2005 | AA | 30 | 20-45 | 1-22Y | WM | 30 | 21-46 | 1-22Y | 4 | 1 | ||||||||
| Qiao FY et al 2005 | EA | 210 (102/108) | 18-60 | 1-10Y | WM | 210 (117/93) | 19-60 | 1-8Y | 3 | 1 | ||||||||
| Zhang B et al 2011 | HSM | 30 (18/12) | 48.6± 13.2 | 6.8±3.3 (Y) | HA | 30 (16/14) | 49.2±15.5 | 5.9±3.1 (Y) | 3 | 1 | ||||||||
| Yang XM et al 2021 | EA+ AE | 36 (25/11) | 38.14± 5.78 | 4.51± 2.06 (Y) | WM | 36 (26/10) | 37.94±4.69 | 4.02±1.79 (Y) | 4 | 1 | ||||||||
| Chen T et al 2017 | AA | 34 (20/14) | 26-63 | 1-25 (Y) | WM | 32 (17/15) | 28-61 | 1-22 (Y) | 3 | 1 | ||||||||
| Li L et al 2009 | HA | 33 (13/20) | 18-60 | 3 (D)-20 (Y) | APPS | 33 (11/22) | 19-59 | 1 (D)-18 (Y) | 5 | 1 | ||||||||
| Lin C et al 2013 | HA+ IM | 12 (4/8) | 34-55 | 2-17 (Y) | C1: HA C2: WM | C1: 11 (4/7) C2: 12 (5/7) | C1: 35-60 C2: 27-54 | C1: 2-18 (Y) C2: 3-15 (Y) | 4 | 2 | ||||||||
| Ye J et al 2019 | AE | 51 (27/24) | 35±5 | 5.4± 3.2 (Y) | HA | 51 (29/22) | 33±6 | 5.3±2.3 (Y) | 8 | 1 | ||||||||
| Yong RL et al 2016 | HA | 30 (13/17) | 42.27± 9.28 | 6.48± 4.07 (Y) | WM | 30 (14/16) | 42.97±9.14 | 6.13±3.85 (Y) | 4 | 2, 3 | ||||||||
| Meng S et al 2013 | AE | 40 (20/20) | 35.00± 2.3 | 1.8 ± 0.6 (Y) | WM | 50 (22/28) | 37.0±2.2 | 1.9±0.8 (Y) | 8 | 1 | ||||||||
| Liu TS et al 2014 | EA | 30 (16/14) | 38±10 | 9.1± 3.4 (Y) | WM | 30 (15/15) | 41±12 | 8.5±2.6 (Y) | 4 | 1 | ||||||||
| Liu WY 2015 | HA+ AE | 39 (22/17) | 35.4±9.1 | 5.4± 2.2 (Y) | HA | 39 (20/19) | 36.2±11.2 | 5.5±2.4 (Y) | 24 | 1, 2 | ||||||||
| Wang P 2013 | EA | 27 (11/16) | 40.19± 12.19 | 6.81± 4.55 (Y) | WM | 28 (11/17) | 38.68±8.79 | 4.96±4.31 (Y) | 4 | 2, 3, 4 | ||||||||
| Liu X et al 2021 | HA | 30 (16/14) | 36.20± 12.11 | 8.15± 6.09 (Y) | WM | 30 (17/13) | 39.23±11.67 | 10.06±7.19 (Y) | 3 | 1, 2 | ||||||||
| Li S et al 2022 | MB | 32 (19/13) | 40.1± 13.4 | NA | WM | 32 (22/10) | 38.9±11.6 | NA | 4 | 1, 2, 3 | ||||||||
| Li Y et al 2019 | HA | 37 (20/17) | 36.65± 2.19 | 10.43± 1.08 (M) | WM | 38 (19/19) | 38.35± 2.31 | 10.84±1.05 (M) | 2 | 1, 2, 3, 4 | ||||||||
| Sun DP et al 2019 | WA | 50 (29/21) | 38.70± 9.15 | 4.93 ± 3.49 (Y) | WM | 50 (28/22) | 36.52±9.86 | 4.55±2.90 (Y) | 4 | 1 | ||||||||
| Chen S et al 2015 | HA | 34 (17/17) | 44±9 | 6.8± 4.4 (Y) | WM | 32 (14/18) | 40±11 | 7.1±4.3 (Y) | 8 | 1, 2, 3 | ||||||||
| Chen YD et al 2015 | HA | 30 (13/17) | 42±3 | 8.0± 1.1 (Y) | WM | 30 (18/12) | 40±2 | 7.1±1.1 (Y) | 8 | 1 | ||||||||
| Wu WB et al 2019 | HA+ IM | 36 (15/21) | 47.22± 4.64 | 62.37± 25.13 (M) | WM | 36 (16/20) | 45.45±4.92 | 61.0±27.00 (M) | 3 | 1, 3 | ||||||||
| Liu P et al 2018 | HA | 78 (37/41) | 46.1±9.1 | 10.0± 5.1 (W) | PG | 76 (43/33) | 47.2±7.2 | 11.2±6.3 (W) | 4 | 1, 2, 3, 4 | ||||||||
| Lin YF et al 2017 | HSM | 36 (17/19) | 26.64± 5.70 | 2.96± 0.24 (Y) | WM | 36 (16/20) | 27.78 ±5.78 | 2.88±0.25 (Y) | 3 | 1, 2 | ||||||||
| Zhao QY et al 2018 | AN | 25 (11/14) | 38.18± 10.29 | 8.64± 2.06 (Y) | WM | 24 (14/10) | 36.64±9.52 | 9.00±2.49 (Y) | 4 | 2 | ||||||||
| Xia QG et al 2012 | HA | 57 (20/37) | 21-59 | 20 (D)- 10 (Y) | WM | 55 (28/27) | 22-56 | 15 (D)-9 (Y) | 4 | 1 | ||||||||
| Lin C et al 2013 | HA+ IM | 19 (5/14) | 44.67± 10.43 | 8.99± 8.63 (Y) | C1: HA C2: WM | C1: 19 (6/13) C2: 20 (8/12) | C1: 48.04±13.34 C2: 40.03±14.07 | C1: 9.81±8.05 (Y) C2: 6.72±5.41 (Y) | 4 | 2 | ||||||||
| Cui X et al 2017 | EA+ AE | 33 | 35.39± 4.63 | 4.89± 0.87 (Y) | WM | 33 | 38.05±4.62 | 5.39±0.85 (Y) | 4 | 1, 2, 3, 4 | ||||||||
| Li Y et al 2021 | HA | 32 (16/16) | 37±4 | 11.43± 3.13 (M) | WM | 33 (18/15) | 38±4 | 11.61±3.33 (M) | 2 | 1, 2, 3, 4 | ||||||||
| Luo W et al 2021 | HA | 30 (12/18) | 34±8 | 6.01± 2.31 (Y) | WM | 30 (14/16) | 35±7 | 6.23±2.56 (Y) | 4 | 1, 2, 3, 4 | ||||||||
| Niu JM et al 2022 | HA+ AE | 43 (22/21) | 44±11 | 5.59±1.28 (Y) | HA | 43 (23/20) | 43±11 | 5.59±1.87 (Y) | 4 | 1, 2 | ||||||||
| Cui X et al 2018 | EA+ AE | 40 (16/24) | 34.85± 12.38 | 3.76± 1.01 (Y) | WM | 40 (15/25) | 35.12±10.32 | 3.65±1.02 (Y) | 4 | 1, 2 | ||||||||
| Zhang PP et al 2023 | HA+ IM | 26 (11/15) | 39.62± 12.77 | 7.00± 4.22 (Y) | PG | 26 (9/17) | 38.23±14.29 | 8.48±6.29 (Y) | 4 | 2, 3, 4 | ||||||||
| Wang P 2022 | HA | 27 (13/14) | 41.57± 9.22 | 6.35± 4.29 (Y) | WM | 30 (13/17) | 40.55±8.02 | 4.27±4.55 (Y) | 4 | 1, 2, 3 | ||||||||
| Huo ZY et al 2020 | HA | 50 (28/22) | 42.6±1.8 | 11±1.24 (Y) | WM | 50 (30/20) | 41.3±1.9 | 12±1.13 (Y) | 8 | 1, 2, 3 | ||||||||
| Yang JX et al 2018 | HA | 58 (25/33) | 40.91± 14.35 | NA | WM | 57 (26/31) | 39.21±12.11 | NA | 3 | 1 | ||||||||
| Wei Y 2019 | AE | 30 (16/14) | 42±8.31 | 14.28± 31.46 (M) | WM | 30 (18/12) | 40±10.82 | 13.57±29.45 (M) | 4 | 1 | ||||||||
| Zhang LL et al 2016 | HA+ AE | 50 (29/21) | 45.36± 2.52 | 3.34± 1.15 (Y) | HA | 50 (22/28) | 46.27±1.27 | 3.25±1.31 (Y) | 24 | 1 | ||||||||
| Yao WJ et al 2021 | AE | 30 (16/14) | 35.56± 7.33 | 1.95± 0.36 (Y) | WM | 30 (17/13) | 34.76±7.06 | 1.89±0.55 (Y) | 4 | 2 | ||||||||
| Zhu QY et al 2020 | HA+ HSM | 40 (25/15) | 37.63± 8.52 | 8.59± 2.57 (Y) | HA | 40 (26/14) | 37.91±8.74 | 8.31±2.12 (Y) | 12 | 1 | ||||||||
| Song WJ et al 2020 | HA | 32 (17/15) | 43.7±13.9 | 8.00± 3.94 (Y) | WM | 32 (19/13) | 44.6±13.4 | 7.91±3.71 (Y) | 4 | 1 | ||||||||
| Sun X et al 2021 | MB | 47 (31/16) | 43.21± 7.29 | 10.64±3.85 (Y) | WM | 47 (29/18) | 42.36±6.85 | 11.17±3.21 (Y) | 4 | 3 | ||||||||
| Xiong CY et al 2019 | HA+ HSM | 30 (14/16) | 41.7±11.2 | NA | C1: HSM C2: WM | C1: 30 (16/14) C2: 30 (15/15) | C1: 41.6±10.5 C2: 41.2±12.2 | NA | 3 | 1 | ||||||||
| Zhao QY et al 2020 | AN | 31 | 18-65 | NA | WM | 30 | 18-65 | NA | 4 | 2, 3, 4 | ||||||||
| Zhang YH 2017 | WA | 43 (20/23) | 43.25± 0.04 | NA | EA | 43 (21/22) | 43.13±0.14 | NA | NA | 1 | ||||||||
| Li RY et al 2013 | WA | 62 | 42.57± 9.85 | NA | WM | 62 | 40.32±10.45 | NA | 4 | 1 | ||||||||
| Fu YQ et al 2018 | HA+ AE | 36 (21/15) | 41.8±5.8 | NA | HA | 35 (18/17) | 42.1±5.5 | NA | 4 | 1 | ||||||||
| Wang DS et al 2021 | HA+ IM | 37 (17/20) | 34.48± 0.36 | NA | WM | 37 (19/18) | 33.98±0.43 | NA | 12 | 1 | ||||||||
| Wang F et al 2016 | WA | 50 (24/26) | 36.25± 10.23 | NA | EA | 50 (24/26) | 32.48±9.63 | NA | NA | 1 | ||||||||
| Jia XJ et al 2019 | HA+ IM | 36 (20/16) | 35±4 | 5.55±1.23 (Y) | WM | 36 (21/15) | 35±4 | 5.64±1.29 (Y) | 12 | 1 | ||||||||
| Xu XW et al 2017 | WA | 46 | 41.3±2.2 | 1.2±1.1 (Y) | EA | 46 | 44.2±2.6 | 1.6±1.2 (Y) | NA | 1 | ||||||||
| Wang H et al 2013 | EA | 41 (19/22) | 44±10 | 7.9±5.3 (Y) | WM | 40 (17/23) | 40±10 | 6.6±5.0 (Y) | 4 | 1 | ||||||||
| Choi SM et al 2013 | HA | 95 (39/56) | 38.97±11.33 | 11.43±9.20 (M) | PG | 93 (30/63) | 37.04±12.23 | 12.02±7.40 (M) | 4 | 3, 4 | ||||||||
| Chen YD et al 2016 | HA | 36 (15/21) | 43.08± 2.58 | 7.08±0.88 (Y) | WM | 34 (16/18) | 43.47±2.21 | 6.62±1.06 (Y) | 8 | 1 | ||||||||
| Li XR et al 2016 | AE | 64 (29/35) | 36.11±11.50 | NA | PG | 64 (36/28) | 38.08±12.11 | NA | 2 | 2 | ||||||||
| Yung TY et al 2019 | HA+ IM | 32 (16/16) | 43.59± 13.67 | 19.75± 12.62 (Y) | HA | 32 (6/26) | 44.41±13.63 | 16.22±10.43 (Y) | 4 | 3 | ||||||||
| Dai L et al 2019 | AA | 46 (23/23) | 45.6±15.1 | 17.1±11.8 (Y) | PG | 46 (25/21) | 40.4±15.6) | 15.0±8.1 (Y) | 4 | 3 | ||||||||
| Gong Z et al 2020 | HA | 81 (36/45) | 37.99± 9.62 | 6.16±3.86 (Y) | WM | 80 (33/47) | 38.28±11.29 | 6.21±3.99 (Y) | 2 | 1, 2 | ||||||||
Figure 2 Network evidence graph of different interventions A: CER; B: RQLQ; C: TNSS; D: TNNSS. CER: clinical effective rate; RQLQ: rhinoconjunctivitis quality of life questionnaire; TNSS: total nasal symptom score; TNNSS: total non-nasal symptom score; HA: hand acupuncture; EA: electroacupuncture; AE: acupoint embedding; MB: moxibustion; AN: abdominal needle; WA: warm acupuncture; IM: indirect moxibustion; HSM: heat-sensitive moxibustion; AA: acupoint application; APPS: auricular point pressure stick; PG: placebo group; WM: Western Medicine.
Figure 3 Plots of the surface under the cumulative ranking curves for all interventions A: CER; B: RQLQ; C: TNSS; D: TNNSS; E: clinical effective rate (1 < X ≤ 4 Weeks); F: clinical effective rate (4 < X ≤ 24 Weeks). CER: clinical effective rate; RQLQ: rhinoconjunctivitis quality of life questionnaire; TNSS: total nasal symptom score; TNNSS: total non-nasal symptom score; HA: hand acupuncture; EA: electroacupuncture; AE: acupoint embedding; MB: moxibustion; AN: abdominal needle; WA: warm acupuncture; IM: indirect moxibustion; HSM: heat-sensitive moxibustion; AA: acupoint application; APPS: auricular point pressure stick; PG: placebo group; WM: Western Medicine.
Figure 4 Funnel plots of different interventions A: CER; B: RQLQ; C: TNSS; D: TNNSS. CER: clinical effective rate; RQLQ: rhinoconjunctivitis quality of life questionnaire; TNSS: total nasal symptom score; TNNSS: total non-nasal symptom score; HA: hand acupuncture; EA: electroacupuncture; AE: acupoint embedding; MB: moxibustion; AN: abdominal needle; WA: warm acupuncture; IM: indirect moxibustion; HSM: heat-sensitive moxibustion; AA: acupoint application; APPS: auricular point pressure stick; PG: placebo group; WM: Western Medicine.
| 1. | Wang M, Wang C, Akdis CA, Zhang L. The highly prevalent allergic rhinitis: does new treatments move toward a cure? Sci Bull (Beijing) 2023; 68: 3094-7. |
| 2. |
Brożek JL, Bousquet J, Agache I, et al. Allergic Rhinitis and its Impact on Asthma (ARIA) guidelines-2016 revision. J Allergy Clin Immunol 2017; 140: 950-8.
DOI PMID |
| 3. |
Katsimpris P, Tripsianis G, Printza A, et al. The rhinoconjunctivitis quality of life questionnaire and its modified short version validation in adults and children with allergic rhinitis. J Laryngol Otol 2022; 136: 341-8.
DOI URL |
| 4. |
Cheng L, Chen J, Fu Q, et al. Chinese society of allergy guidelines for diagnosis and treatment of allergic rhinitis. Allergy Asthma Immunol Res 2018; 10: 300-53.
DOI URL |
| 5. | Incorvaia C, Cavaliere C, Frati F, Masieri S. Allergic rhinitis. J Biol Regul Homeost Agents 2018; 32: 61-6. |
| 6. |
Cardell LO, Olsson P, Andersson M, et al. TOTALL: high cost of allergic rhinitis-a national Swedish population-based questionnaire study. NPJ Prim Care Respir Med 2016; 26: 15082.
DOI |
| 7. |
Siddiqui ZA, Walker A, Pirwani MM, Tahiri M, Syed I. Allergic rhinitis: diagnosis and management. Br J Hosp Med (Lond) 2022; 83: 1-9.
DOI PMID |
| 8. | Seidman MD, Gurgel RK, Lin SY, et al. Clinical practice guideline: allergic rhinitis. Otolaryngol Head Neck Surg 2015; 152: S1-43. |
| 9. |
Uzzaman A, Story R. Chapter 5: Allergic rhinitis. Allergy Asthma Proc 2012; 33: 15-8.
DOI URL |
| 10. |
Ifrim Chen F, Antochi AD, Barbilian AG. Acupuncture and the retrospect of its modern research. Rom J Morphol Embryol 2019; 60: 411-8.
PMID |
| 11. |
Chon TY, Lee MC. Acupuncture. Mayo Clin Proc 2013; 88: 1141-6.
DOI PMID |
| 12. | Mi JP, He P, Shen F, Yang X, Zhao MF, Chen XY. Efficacy of acupuncture at the sphenopalatine ganglion in the treatment of persistent allergic rhinitis. Med Acupunct 2020; 32: 90-8. |
| 13. | Meng X. Acupuncture included in US guidelines for allergic rhinitis for the first time. Zhong Guo Zhen Jiu 2015; 35: 482. |
| 14. |
Seidman MD, Gurgel RK, Lin SY, et al. Clinical practice guideline: allergic rhinitis executive summary. Otolaryngol Head Neck Surg 2015; 152: 197-206.
DOI PMID |
| 15. |
McDonald JL, Smith PK, Smith CA, Changli Xue C, Golianu B, Cripps AW. Effect of acupuncture on house dust mite specific IgE, substance P, and symptoms in persistent allergic rhinitis. Ann Allergy Asthma Immunol 2016; 116: 497-505.
DOI URL |
| 16. | Xu J, Chai F, Peng YY, Huang YS, Zhang YF. Discussion on the efficacy and mechanism of triple acupuncture with Xiaguan point in treating patients with allergic rhinitis. Hubei Zhong Yi Xue Bao 2023; 45: 43-5. |
| 17. |
He M, Qin WS, Qin ZS, Zhao CQ. Acupuncture for allergic rhinitis: a systematic review and Meta-analysis. Eur J Med Res 2022; 27: 58.
DOI PMID |
| 18. | Sun ZR, Wang CB, Yin HN, et al. Network Meta-analysis of acupuncture and moxibustion for allergic rhinitis. Zhong Guo Zhen Jiu 2021; 41: 1295-302. |
| 19. |
Moher D, Liberati A, Tetzlaff J, Altman DG; PRISMA Group. Preferred reporting items for systematic reviews and Meta-analyses: the PRISMA statement. PLoS Med 2009; 6: e1000097.
DOI URL |
| 20. | Page MJ, McKenzie JE, Bossuyt PM, et al. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ 2021; 372: n71. |
| 21. | Sterne JAC, Savović J, Page MJ, et al. RoB 2: a revised tool for assessing risk of bias in randomised trials. BMJ 2019; 366: l4898. |
| 22. |
Dias S, Welton NJ, Sutton AJ, Caldwell DM, Lu G, Ades AE. Evidence synthesis for decision making 4: inconsistency in networks of evidence based on randomized controlled trials. Med Decis Making 2013; 33: 641-56.
DOI PMID |
| 23. |
Mills EJ, Thorlund K, Ioannidis JP. Demystifying trial networks and network Meta-analysis. BMJ 2013; 346: f2914.
DOI URL |
| 24. |
Hamra G, MacLehose R, Richardson D. Markov chain Monte Carlo: an introduction for epidemiologists. Int J Epidemiol 2013; 42: 627-34.
DOI PMID |
| 25. | Salanti G, Ades AE, Ioannidis JP. Graphical methods and numerical summaries for presenting results from multiple-treatment Meta-analysis: an overview and tutorial. Lin Chuang Liu Xing Bing Xue Za Zhi 2011; 64: 163-71. |
| 26. |
Trinquart L, Attiche N, Bafeta A, Porcher R, Ravaud P. Uncertainty in treatment rankings: reanalysis of network Meta-analyses of randomized trials. Ann Intern Med 2016; 164: 666-73.
DOI PMID |
| 27. |
Chaimani A, Higgins JP, Mavridis D, Spyridonos P, Salanti G. Graphical tools for network Meta-analysis in STATA. PLoS One 2013; 8: e76654.
DOI URL |
| 28. | Xu SN, Shen S, Xu Y. 30 Cases of allergic rhinitis treated by acupoint application. Fujian Zhong Yi Xue Za Zhi 2005; 36: 47. |
| 29. | Qiao FY, Zhao MH, Shen JC, et al. Clinical observation on acupuncture treating allergic rhinitis. Tianjin Zhong Yi Yao 2005; 22: 482-2. |
| 30. | Zhang B, Chi ZH, Fu Y, Chen R. Observation on clinical curative effect of heat-sensitive moxibustion on allergic rhinitis. Jiangxi Zhong Yi Xue Za Zhi 2011; 42: 59-60. |
| 31. | Yang XM, Cui X, Wu YT, Hu CN, Liu C, Gao Y. Analysis of the clinical effect of Tongyuan therapy on patients with allergic rhinitis and sleep disorders. Shi Jie Shui Mian Yi Xue Za Zhi 2021; 8: 590-1. |
| 32. | Chen T, Wang ZL, Zhang P, Zuo HF. Observation on therapeutic effect of 34 cases of allergic rhinitis treated by acupoint sticking. Hunan Zhong Yi Xue Bao 2017; 33: 87-8. |
| 33. | Li L, Bai Y, Chen X. Studies on therapeutic effects of acupuncture in the patient of allergic rhinitis. Liaoning Zhong Yi Za Zhi 2009; 36: 1565-6. |
| 34. | Lin C, Ye YM, Tian N. Clinical study on combining ginger-partitioned moxibustion and acupuncture for perennial allergic rhinitis. Shanghai Zhen Jiu Za Zhi 2013; 32: 379-81. |
| 35. | Ye J, Zhao YX. Observation on clinical curative effect of acupoint catgut embedding in treating 51 cases of allergic rhinitis. Yunnan Zhong Yi Zhong Yao Za Zhi 2019; 40: 100-1. |
| 36. | Yong RL, Wu L, Jin Z. Therapeutic observation of immediate effect and long-term efficacy of nasal cavity penetration needling on allergic rhinitis. Zhen Jiu Lin Chuang Za Zhi 2016; 32: 9-12. |
| 37. | Meng S, Xu Y, Lü JB, et al. Observation on curative effect of acupoint catgut embedding in treating allergic rhinitis. Sichuan Zhong Yi 2013; 31: 136-8. |
| 38. | Liu TS, Qiu R, Lai XS. Efficacy on perennial allergic rhinitis treated with acupuncture at three nasal points and the acupoints selected by syndrome differentiation. Zhong Guo Zhen Jiu 2014; 34: 1083-6. |
| 39. | Liu WY. 39 Cases of allergic rhinitis treated by acupuncture and moxibustion combined with acupoint catgut embedding. Zhong Yi Yan Jiu 2015; 28: 41-3, 44. |
| 40. | Wang P, Luo H, Sun JQ, Shi ZH, Zhao JP. Curative effect observation on 27 cases of patients with moderate and severe allergic rhinitis treated by "Tiao Shen Acupuncture". Zhong Yi Za Zhi 2013; 54: 2117-20. |
| 41. | Liu X, Du YH. Clinical observation on treating allergic rhinitis with Wenyang Tongqiao acupuncture. Hebei Zhong Yi 2021; 43: 140-3. |
| 42. | Li S, Wang H, Zhang LH, Li W. Clinical study on treating perennial allergic rhinitis with quepei moxibustion. Xian Dai Zhong Yi Lin Chuang 2022; 42: 110-3. |
| 43. | Li Y, Wang DY, Han KC, Li WT, Liu YL, Jing TY. Clinical study of intranasal acupuncture treating allergic rhinitis. Zhen Jiu Lin Chuang Za Zhi 2019; 35: 25-9. |
| 44. | Sun DP, Yao WP, Ma XM, Xu JS, Jiang MX. Clinical study of needling-warming moxibustion with Big Moxa stick in the treatment of AR of deficiency-cold of lung-Qi. Zhen Jiu Lin Chuang Za Zhi 2019; 35: 41-5. |
| 45. | Chen S, Wang J, Bai P, et al. Moderate and severe persistent allergic rhinitis treated with acupuncture: a randomized controlled trial. Zhong Guo Zhen Jiu 2015; 35: 1209-13. |
| 46. | Chen YD, Jin XQ, Yu MH, et al. Efficacy of acupuncture on moderate and severe allergic rhinitis. Zhong Guo Zhen Jiu 2015; 35: 339-43. |
| 47. | Wu WB, Zhao R, Li J, Fan Q. Clinical effect of acupuncture combined with ginger moxibustion on Yìntáng to treat allergic rhinitis with syndrome of deficient cold of lung Qi. Zhong Yi Yao Dao Bao 2019; 16: 141-3,158. |
| 48. | Liu P, Zhang BM, Zong L, et al. Observation on clinical curative effect of acupuncture in treating perennial allergic rhinitis. Zhen Jiu Tui Na Yi Xue 2018; 16: 271-5. |
| 49. | Lin YF, Zhong ZB, Su YN. Clinical observation on 36 cases of allergic rhinitis treated by heat-sensitie moxibustion. Zhong Y i Za Zhi 2017; 58: 233-6. |
| 50. | Zhao QY, Liu YX, Lu YL, Zhao PF. Effect of abdominal acupuncture on the contents of histamine, leukotriene D4, and life quality in patients with moderate-severe allergic rhinitis. Zhen Jiu Lin Chuang Za Zhi 2018; 34: 28-32. |
| 51. | Xia QG, Feng XX, Chen L, Zhang Y. Curative effect observation on 57 cases of intermittent allergic rhinitis treated by acupuncture and moxibustion. Zhejiang Zhong Yi Za Zhi 2012; 47: 817-8. |
| 52. | Lin C, Tian N, Ye YG. A randomized controlled trial of ginger-partitioned warming acupuncture for persistent allergic rhinitis. Beijing Zhong Yi Yao 2013; 32: 339-42. |
| 53. | Cui X, Wu YT, Hu CG, Yang XM, Xie YF. Clinical study on acupuncture combined with back shu acupoint catgut embedding therapy in treating allergic rhinitis. Zhong Guo Zhong Yi Yao Xin Xi Za Zhi 2017; 24: 18-21. |
| 54. | Li Y, Li WT, Zhou L. Clinical study on acupuncture for allergic rhinitis. Shanghai Zhen Jiu Za Zhi 2021; 40: 1253-7. |
| 55. | Luo W, Zhao CJ, Wang LL, Mao JN. Clinical study of acupuncture with Ling Gui Ba Fa and acupoints selection based on syndrome differentiation for allergic rhinitis. Shanghai Zhen Jiu Za Zhi 2021; 40: 1258-61. |
| 56. | Niu JM, Wu MM, Cheng LY. Observations on the efficacy of acupuncture plus acupoint suture embedding for allergic rhinitis and its effect on serum inflammatory factors. Shanghai Zhen Jiu Za Zhi 2022; 41: 1117-22. |
| 57. | Cui X, Hu CN, Yang XM, et al. Clinical study of tongyuan therapy on allergic rhinitis. Zhong Guo Yi Xue Chuang Xin 2018; 15: 73-6. |
| 58. | Xiong CY, Tao B. Observation on therapeutic effect of nasal acupuncture combined with heat sensitive moxibustion in treating allergic rhinitis. Shi Jie Zui Xin Yi Xue Xin Xi Wen Zhai 2019; 19: 171, 178. |
| 59. | Zhang YH. Observation on clinical curative effect of warming acupuncture and moxibustion on allergic rhinitis. Yi Yao QianYan 2017; 7: 328-9. |
| 60. | Zhang PP, Peng WN, Li H, Yan WX, Liu LP, Sun SX. Efficacy and safety evaluation of Tongyang method acupuncture and moxibustion in treatment of persistent allergic rhinitis. Zhong Guo Lin Chuang Yi Sheng Za Zhi 2023; 51: 240-3. |
| 61. | Wang P. Clinical observation of WANG Le-ting's Old Ten Needles in treating allergic rhinitis of spleen Qi weakness type. Bei Jing Zhong Yi Yao 2022; 41: 599-601. |
| 62. | Yang JX, Chen YL, Guo X, Wang X. Short-term effect observation of propagated sensation and acupuncture treating on allergic rhinitis. Zhong Hua Zhong Yi Yao Za Zhi 2018; 33: 1178-80. |
| 63. | Zhang LL. Acupuncture therapy combined with catgut embedding treatment allergic rhinitis randomized controlled study. Shi Yong Zhong Yi Nei Ke Za Zhi 2016; 30: 82-4. |
| 64. | Fu YQ, Long XY, Wang G. Curative effect analysis of acupoint catgut embedding combined with acupuncture and moxibustion in treating allergic rhinitis. Neimenggu Zhong Yi Yao 2018; 37: 68-9. |
| 65. | Huo ZY, Li TF, Li RY, Hu DM. Observation on therapeutic effect of acupuncture in auxiliary treatment of allergic rhinitis. Xian Dai Zhen Duan Yu Zhi Liao 2020; 31: 2207-8, 2308. |
| 66. | Wei Y. Clinical observation on the regulation of allergic rhinitis and related immune function by catgut embedding based on "nasal sensitive point". Zhong Lin Chuang Yan Jiu 2019; 11: 15-7. |
| 67. | Yao WJ, Liu PZ, Guo XD, Zhang ZC. 30 cases of persistent allergic rhinitis of lung and spleen deficiency type treated with acupoint catgut embedding. Zhong Yi Yan Jiu 2021; 34: 10-3. |
| 68. | Zhu QY, Xiong J. Analysis of the influence of acupoint heat-sensitive moxibustion combined with nasal three-point therapy on patients with allergic rhinitis. Yi Xue Shi Liao Yu Jian Kang 2020; 18: 40, 42. |
| 69. | Song WJ, Feng X, Lai RM, et al. Observation on curative effect of acupuncture sphenopalatine ganglion point on perennial allergic rhinitis. Zhong Guo Yi Yao Ke Xue 2020; 10: 36-9. |
| 70. | Sun X. To observe the clinical curative effect of moxibustion in the preventive treatment of seasonal allergic rhinitis (SAR). Zhong Guo Bao Jian Ying Yang 2021; 31: 163. |
| 71. | Zhao QY, Liu YX, Chen ZG. Clinical efficacy of abdominal acupuncture on nasal symptoms and quality of life in patients with moderate to severe allergic rhinitis. Zhong Yi Yao Dao Bao 2020; 17: 145-8. |
| 72. | Li RY, Fan C, Cheng HP. Clinical observation on treating allergic rhinitis with deficiency and cold syndrome by strengthening the spleen, warming the kidney and warming needle. Xin Zhong Yi 2013; 45: 108-9. |
| 73. | Wang DS. Obesrvation on treating allergic rhinitis by acupuncture. Zhong Yi Lin Chuang Yan Jiu 2021; 13: 35-7. |
| 74. | Wang F. Observation on clinical curative effect of warming acupuncture and moxibustion on allergic rhinitis and discussion on immunoregulatory effect. Xin Zhong Yi 2016; 48: 144-6. |
| 75. | Jia XJ, Xiong YQ, Wang J. Therapeutic effect of acupuncture and moxibustion on allergic rhinitis and its influence on the patients' quality of life. Shanghai Zhen Jiu Za Zhi 2019; 38: 202-5. |
| 76. | Xu XW. Warming acupuncture and moxibustion for allergic rhinitis. Yunnan Zhong Yi Zhong Yao Za Zhi 2017; 38: 63-5. |
| 77. | Wang H, Li W, Ju XF, Yu XG. Effect of scalp acupuncture on perennial allergic rhinitis. Zhong Guo Zhen Jiu 2013; 33: 789-92. |
| 78. |
Choi SM, Park JE, Li SS, et al. A multicenter, randomized, controlled trial testing the effects of acupuncture on allergic rhinitis. Allergy 2013; 68: 365-74.
DOI PMID |
| 79. | Chen YD, Jin XQ, Yu MH, Fang Y, Huang LQ. Acupuncture for moderate to severe allergic rhinitis: a non-randomized controlled trial. Zhong Guo Zhong Xi Yi Jie He Za Zhi 2016; 22: 518-24. |
| 80. |
Li XR, Liu Y, Zhang QX, et al. Effect of catgut implantation at acupoints for the treatment of allergic rhinitis: a randomized, sham-controlled trial. BMC Complement Altern Med 2016; 16: 454.
DOI URL |
| 81. |
Yung TY, Zhang H, Tang LC, et al. Acupuncture and herbal moxibustion for the treatment of 'BiQiu' (allergic rhinitis symptoms) in a Hong Kong Chinese medicine clinic: a randomized controlled trial. Chinese medicine 2019; 14: 50.
DOI PMID |
| 82. | Dai L, Zhong LLD, Kun W, et al. An external CAM therapy (Tian Jiu) versus placebo in treatment of allergic rhinitis: a pilot single-blinded, three-arm, randomized controlled study. Evid Based Complement Alternat Med 2019: 6369754. |
| 83. | Gong Z, Yan ZF, Liu QP, et al. Clinical study on patients with persistent moderate and severe allergic rhinitis treated by intranasal acupuncture. Zhong Guo Zhong Xi Yi Jie He Za Zhi 2020; 40: 1458-63. |
| 84. |
Chen K, Hou CF, Liu CJ, Meng Y. Efficacy comparison of different moxibustion treatments for allergic rhinitis: a systematic review and Bayesian network Meta-analysis. Medicine (Baltimore) 2023; 102: e32997.
DOI URL |
| 85. |
Shen MX, Shang WF, Wu JX, Yu ZL, Xuan LH. Efficacy and safety of acupoint application for allergic rhinitis: a systematic review and Meta-analysis of randomized controlled trials. J Tradit Chin Med 2022; 42: 858-68.
DOI |
| 86. |
Yuan T, Xiong J, Wang X, et al. Indirect moxibustion for the treatment of allergic rhinitis: a systematic review and Meta-analysis of randomized controlled trials. Complement Ther Med 2022; 64: 102804.
DOI URL |
| 87. | Cai SR, Lou HF. Neuroimmunomodulation in allergic rhinitis. Lin Chuang Er Bi Yan Hou Tou Jing Wai Ke Za Zhi 2021; 35: 859-64. |
| 88. |
Bernstein DI, Schwartz G, Bernstein JA. Allergic rhinitis: mechanisms and treatment. Immunol Allergy Clin North Am 2016; 36: 261-78.
DOI URL |
| 89. |
Wang MJ, Ye T, Liang N, et al. Differing roles for TGF-β/Smad signaling in osteitis in chronic rhinosinusitis with and without nasal polyps. Am J Rhinol Allergy 2015; 29: e152-9.
DOI URL |
| 90. |
Pawankar RB. Inflammatory mechanisms in allergic rhinitis. Curr Opin Allergy Clin Immunol 2007; 7: 1-4.
DOI URL |
| 91. | Gao HS, Shi L. Neuroimmune mechanism of allergic rhinitis and effects of acupuncture and moxibustion. Zhong Guo Zhong Xi Yi Jie He Za Zhi 2023; 43: 351-6. |
| 92. | Schäper C, Gustavus B, Koch B, et al. Effect of fluticasone on neuropeptides in nasal lavage in persistent allergic rhinitis. J Investig Allergol Clin Immunol 2010; 20: 214-21. |
| 93. | Huang F, Lü XL, Jiao XF, et al. Progress of researches on acupuncture treatment of allergic rhinitis. Zhen Ci Yan Jiu 2023; 48: 153-7. |
| 94. | Zheng XJ, Zhang YM, Wang XY. Regulation effect of acupoint catgut embedding on inflammatory mediators, cytokines and JNK pathway in rats with allergic rhinitis. Zhong Guo Zhong Yi Ji Chu Yi Xue Za Zhi 2021; 27: 965-9. |
| 95. |
Restimulia L, Pawarti DR, Ekorini HM. The Relationship between serum vitamin D levels with allergic rhinitis incidence and total nasal symptom score in allergic rhinitis patients. Open Access Maced J Med Sci 2018; 6: 1405-9.
DOI PMID |
| 96. | Deng HY, Shen XY. The mechanism of moxibustion: ancient theory and modern research. Evid Based Complement Alternat Med 2013; 2013: 379291. |
| 97. | Jia YF, Zhao JP, Wen ZX, Xie Q, Chen S. Clinical observation of herb-separated moxibustion combining western medication on allergic rhinitis of kidney-Yang deficiency type and correlation with infrared thermal imagining. Zhong Guo Zhen Jiu 2020; 40: 721-5. |
| 98. | Jia YP, Chen S, Wen Z, Xie Q, Zhao J. Herbal cake-partitioned moxibustion combined with Rhinocort spray is superior to Rhinocort spray alone in improving symptoms of moderate-severe allergic rhinitis patients. Zhen Ci Yan Jiu 2020; 45: 46-50. |
| 99. | Wang SX. Clinical efficacy and effects of spaced ginger moxibustion on IgE, IL-4 and IFN-γ in the treatment of lung Qi deficiency and cold type allergic rhinitis. Zhengzhou: Henan University of Chinese Medicine, 2022: 27-30. |
| 100. | Wen JD, Wu LP, Xue XY. Analysis of the efficacy and mechanism of action of Ginseng Lingbaijutsu granules combined with moxibustion in the treatment of rats with allergic rhinitis model. Lin Chuang He Li Yong Yao Za Zhi 2023; 16: 141-4. |
| 101. | Hu R, Liu X, Wang J, Ding L, Li YB. Immunoregulatory mechanism of moxibustion at acupoints of Yangming meridians on minimal persistent inflammation in rats with allergic rhinitis. Hunan Zhong Yi Za Zhi 2023; 39: 154-60. |
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