J Inflamm Res:富氢盐水灌洗治疗慢性鼻炎的疗效如何?

2022-08-25 AlexYang MedSci原创

调查了富氢盐水灌洗作为CR抗炎灌洗疗法的效果,并与盐水灌洗的有效性进行了比较。

慢性鼻炎(CR)是一种常见的鼻粘膜慢性炎症。鼻腔盐水冲洗已证明是治疗CR的有效方法。富氢盐水(HRS)具有抗氧化和抗炎特性,其效果是否比盐水灌洗更好,目前还没有结论。

近期,来自同济大学的研究人员在《J Inflamm Res》上发表文章,调查了富氢盐水灌洗作为CR抗炎灌洗疗法的效果,并与盐水灌洗的有效性进行了比较

研究共纳入了120名CR患者,并随机分为两组,用HR灌溉的患者(HRS组)和用盐水灌溉的对照组(NS组)。研究为随机、双盲对照设计。研究的主要观察指标是鼻部症状的总分(TNSS)。此外,还比较了两组之间鼻腔分泌物的嗜酸性蛋白(ECP)、鼻腔一氧化氮(nNO)水平以及调节性T细胞(Treg)和调节性B细胞(Breg)的水平。此外,还根据血清特异性IgE阳性情况对过敏性鼻炎(AR)和非过敏性鼻炎(NAR)患者进行了评估。

治疗后,两组患者的TNSS和鼻腔ECP明显下降(P<0.05),与NS组相比,HRS组患者的水平明显更低(P<0.05)。两组之间的Treg和Breg水平没有明显差异。亚组分析显示,与AR-NS组相比,AR-HRS组的TNSS明显更低(P<0.05);然而,其他炎症生物标志物没有明显差异(P>0.05)。与NS灌洗组相比,NAR亚组的ECP水平明显更低(P<0.05)。在整个治疗期间,没有观察到患者的明显不良事件。

HRS和NS组中,CR患者各种指标的比较

综上所述,与生理盐水冲洗相比,HRS鼻腔冲洗可以改善CR的临床症状,尤其是AR患者。因此,HRS可有效用于CR患者的临床治疗

原始出处:

Ling Jin, Kai Fan, Shiwang Tan et al. The Beneficial Effects of Hydrogen-Rich Saline Irrigation on Chronic Rhinitis: A Randomized, Double-Blind Clinical Trial. J Inflamm Res. Jul 2022

版权声明:
本网站所有内容来源注明为“梅斯医学”或“MedSci原创”的文字、图片和音视频资料,版权均属于梅斯医学所有。非经授权,任何媒体、网站或个人不得转载,授权转载时须注明来源为“梅斯医学”。其它来源的文章系转载文章,或“梅斯号”自媒体发布的文章,仅系出于传递更多信息之目的,本站仅负责审核内容合规,其内容不代表本站立场,本站不负责内容的准确性和版权。如果存在侵权、或不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。
在此留言
评论区 (4)
#插入话题
  1. [GetPortalCommentsPageByObjectIdResponse(id=2057715, encodeId=1ddd205e7151d, content=<a href='/topic/show?id=c02b106e29a' target=_blank style='color:#2F92EE;'>#LAM#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=51, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=10672, encryptionId=c02b106e29a, topicName=LAM)], attachment=null, authenticateStatus=null, createdAvatar=, createdBy=04ce158, createdName=lxg951, createdTime=Sun Jul 16 15:55:12 CST 2023, time=2023-07-16, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1454899, encodeId=b43d145489972, content=<a href='/topic/show?id=ca5f12e51d4' target=_blank style='color:#2F92EE;'>#NFL#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=39, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=12751, encryptionId=ca5f12e51d4, topicName=NFL)], attachment=null, authenticateStatus=null, createdAvatar=null, createdBy=90805606164, createdName=xiaoyeshuang, createdTime=Sat Aug 27 02:55:12 CST 2022, time=2022-08-27, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1509856, encodeId=b31015098561e, content=<a href='/topic/show?id=8fc053e3768' target=_blank style='color:#2F92EE;'>#慢性鼻炎#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=34, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=53737, encryptionId=8fc053e3768, topicName=慢性鼻炎)], attachment=null, authenticateStatus=null, createdAvatar=null, createdBy=6d2a10156443, createdName=fyxzlh, createdTime=Sat Aug 27 02:55:12 CST 2022, time=2022-08-27, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1240922, encodeId=6b6a12409222e, content=<a href='/topic/show?id=bf921045935d' target=_blank style='color:#2F92EE;'>#富氢水#</a>,是所谓的<a href='/topic/show?id=928d63954c8' target=_blank style='color:#2F92EE;'>#氢医学#</a>,<a href='/topic/show?id=6cce9642674' target=_blank style='color:#2F92EE;'>#钟南山#</a>院士似乎也肯定过,但是本人实在想不通!H2并不是活泼的分子,进入人体,能起到什么化学反应??有些人把H2,与CO和H2S并列,作为第三个<a href='/topic/show?id=47f263e6149' target=_blank style='color:#2F92EE;'>#气体信号分子#</a>,但是并没有过多的依据,现在只能再看看吧。 而且这个研究设计还有很大的问题。, beContent=null, objectType=article, channel=null, level=null, likeNumber=83, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=104593, encryptionId=bf921045935d, topicName=富氢水), TopicDto(id=63954, encryptionId=928d63954c8, topicName=氢医学), TopicDto(id=96426, encryptionId=6cce9642674, topicName=钟南山), TopicDto(id=63761, encryptionId=47f263e6149, topicName=气体信号分子)], attachment=null, authenticateStatus=null, createdAvatar=https://img.medsci.cn/Random/55971dc507c93968175ce7cc1e177b372a83869f.jpg, createdBy=f63e4754896, createdName=小小医者, createdTime=Thu Aug 25 13:59:12 CST 2022, time=2022-08-25, status=1, ipAttribution=)]
    2023-07-16 lxg951
  2. [GetPortalCommentsPageByObjectIdResponse(id=2057715, encodeId=1ddd205e7151d, content=<a href='/topic/show?id=c02b106e29a' target=_blank style='color:#2F92EE;'>#LAM#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=51, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=10672, encryptionId=c02b106e29a, topicName=LAM)], attachment=null, authenticateStatus=null, createdAvatar=, createdBy=04ce158, createdName=lxg951, createdTime=Sun Jul 16 15:55:12 CST 2023, time=2023-07-16, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1454899, encodeId=b43d145489972, content=<a href='/topic/show?id=ca5f12e51d4' target=_blank style='color:#2F92EE;'>#NFL#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=39, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=12751, encryptionId=ca5f12e51d4, topicName=NFL)], attachment=null, authenticateStatus=null, createdAvatar=null, createdBy=90805606164, createdName=xiaoyeshuang, createdTime=Sat Aug 27 02:55:12 CST 2022, time=2022-08-27, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1509856, encodeId=b31015098561e, content=<a href='/topic/show?id=8fc053e3768' target=_blank style='color:#2F92EE;'>#慢性鼻炎#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=34, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=53737, encryptionId=8fc053e3768, topicName=慢性鼻炎)], attachment=null, authenticateStatus=null, createdAvatar=null, createdBy=6d2a10156443, createdName=fyxzlh, createdTime=Sat Aug 27 02:55:12 CST 2022, time=2022-08-27, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1240922, encodeId=6b6a12409222e, content=<a href='/topic/show?id=bf921045935d' target=_blank style='color:#2F92EE;'>#富氢水#</a>,是所谓的<a href='/topic/show?id=928d63954c8' target=_blank style='color:#2F92EE;'>#氢医学#</a>,<a href='/topic/show?id=6cce9642674' target=_blank style='color:#2F92EE;'>#钟南山#</a>院士似乎也肯定过,但是本人实在想不通!H2并不是活泼的分子,进入人体,能起到什么化学反应??有些人把H2,与CO和H2S并列,作为第三个<a href='/topic/show?id=47f263e6149' target=_blank style='color:#2F92EE;'>#气体信号分子#</a>,但是并没有过多的依据,现在只能再看看吧。 而且这个研究设计还有很大的问题。, beContent=null, objectType=article, channel=null, level=null, likeNumber=83, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=104593, encryptionId=bf921045935d, topicName=富氢水), TopicDto(id=63954, encryptionId=928d63954c8, topicName=氢医学), TopicDto(id=96426, encryptionId=6cce9642674, topicName=钟南山), TopicDto(id=63761, encryptionId=47f263e6149, topicName=气体信号分子)], attachment=null, authenticateStatus=null, createdAvatar=https://img.medsci.cn/Random/55971dc507c93968175ce7cc1e177b372a83869f.jpg, createdBy=f63e4754896, createdName=小小医者, createdTime=Thu Aug 25 13:59:12 CST 2022, time=2022-08-25, status=1, ipAttribution=)]
    2022-08-27 xiaoyeshuang
  3. [GetPortalCommentsPageByObjectIdResponse(id=2057715, encodeId=1ddd205e7151d, content=<a href='/topic/show?id=c02b106e29a' target=_blank style='color:#2F92EE;'>#LAM#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=51, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=10672, encryptionId=c02b106e29a, topicName=LAM)], attachment=null, authenticateStatus=null, createdAvatar=, createdBy=04ce158, createdName=lxg951, createdTime=Sun Jul 16 15:55:12 CST 2023, time=2023-07-16, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1454899, encodeId=b43d145489972, content=<a href='/topic/show?id=ca5f12e51d4' target=_blank style='color:#2F92EE;'>#NFL#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=39, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=12751, encryptionId=ca5f12e51d4, topicName=NFL)], attachment=null, authenticateStatus=null, createdAvatar=null, createdBy=90805606164, createdName=xiaoyeshuang, createdTime=Sat Aug 27 02:55:12 CST 2022, time=2022-08-27, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1509856, encodeId=b31015098561e, content=<a href='/topic/show?id=8fc053e3768' target=_blank style='color:#2F92EE;'>#慢性鼻炎#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=34, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=53737, encryptionId=8fc053e3768, topicName=慢性鼻炎)], attachment=null, authenticateStatus=null, createdAvatar=null, createdBy=6d2a10156443, createdName=fyxzlh, createdTime=Sat Aug 27 02:55:12 CST 2022, time=2022-08-27, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1240922, encodeId=6b6a12409222e, content=<a href='/topic/show?id=bf921045935d' target=_blank style='color:#2F92EE;'>#富氢水#</a>,是所谓的<a href='/topic/show?id=928d63954c8' target=_blank style='color:#2F92EE;'>#氢医学#</a>,<a href='/topic/show?id=6cce9642674' target=_blank style='color:#2F92EE;'>#钟南山#</a>院士似乎也肯定过,但是本人实在想不通!H2并不是活泼的分子,进入人体,能起到什么化学反应??有些人把H2,与CO和H2S并列,作为第三个<a href='/topic/show?id=47f263e6149' target=_blank style='color:#2F92EE;'>#气体信号分子#</a>,但是并没有过多的依据,现在只能再看看吧。 而且这个研究设计还有很大的问题。, beContent=null, objectType=article, channel=null, level=null, likeNumber=83, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=104593, encryptionId=bf921045935d, topicName=富氢水), TopicDto(id=63954, encryptionId=928d63954c8, topicName=氢医学), TopicDto(id=96426, encryptionId=6cce9642674, topicName=钟南山), TopicDto(id=63761, encryptionId=47f263e6149, topicName=气体信号分子)], attachment=null, authenticateStatus=null, createdAvatar=https://img.medsci.cn/Random/55971dc507c93968175ce7cc1e177b372a83869f.jpg, createdBy=f63e4754896, createdName=小小医者, createdTime=Thu Aug 25 13:59:12 CST 2022, time=2022-08-25, status=1, ipAttribution=)]
  4. [GetPortalCommentsPageByObjectIdResponse(id=2057715, encodeId=1ddd205e7151d, content=<a href='/topic/show?id=c02b106e29a' target=_blank style='color:#2F92EE;'>#LAM#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=51, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=10672, encryptionId=c02b106e29a, topicName=LAM)], attachment=null, authenticateStatus=null, createdAvatar=, createdBy=04ce158, createdName=lxg951, createdTime=Sun Jul 16 15:55:12 CST 2023, time=2023-07-16, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1454899, encodeId=b43d145489972, content=<a href='/topic/show?id=ca5f12e51d4' target=_blank style='color:#2F92EE;'>#NFL#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=39, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=12751, encryptionId=ca5f12e51d4, topicName=NFL)], attachment=null, authenticateStatus=null, createdAvatar=null, createdBy=90805606164, createdName=xiaoyeshuang, createdTime=Sat Aug 27 02:55:12 CST 2022, time=2022-08-27, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1509856, encodeId=b31015098561e, content=<a href='/topic/show?id=8fc053e3768' target=_blank style='color:#2F92EE;'>#慢性鼻炎#</a>, beContent=null, objectType=article, channel=null, level=null, likeNumber=34, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=53737, encryptionId=8fc053e3768, topicName=慢性鼻炎)], attachment=null, authenticateStatus=null, createdAvatar=null, createdBy=6d2a10156443, createdName=fyxzlh, createdTime=Sat Aug 27 02:55:12 CST 2022, time=2022-08-27, status=1, ipAttribution=), GetPortalCommentsPageByObjectIdResponse(id=1240922, encodeId=6b6a12409222e, content=<a href='/topic/show?id=bf921045935d' target=_blank style='color:#2F92EE;'>#富氢水#</a>,是所谓的<a href='/topic/show?id=928d63954c8' target=_blank style='color:#2F92EE;'>#氢医学#</a>,<a href='/topic/show?id=6cce9642674' target=_blank style='color:#2F92EE;'>#钟南山#</a>院士似乎也肯定过,但是本人实在想不通!H2并不是活泼的分子,进入人体,能起到什么化学反应??有些人把H2,与CO和H2S并列,作为第三个<a href='/topic/show?id=47f263e6149' target=_blank style='color:#2F92EE;'>#气体信号分子#</a>,但是并没有过多的依据,现在只能再看看吧。 而且这个研究设计还有很大的问题。, beContent=null, objectType=article, channel=null, level=null, likeNumber=83, replyNumber=0, topicName=null, topicId=null, topicList=[TopicDto(id=104593, encryptionId=bf921045935d, topicName=富氢水), TopicDto(id=63954, encryptionId=928d63954c8, topicName=氢医学), TopicDto(id=96426, encryptionId=6cce9642674, topicName=钟南山), TopicDto(id=63761, encryptionId=47f263e6149, topicName=气体信号分子)], attachment=null, authenticateStatus=null, createdAvatar=https://img.medsci.cn/Random/55971dc507c93968175ce7cc1e177b372a83869f.jpg, createdBy=f63e4754896, createdName=小小医者, createdTime=Thu Aug 25 13:59:12 CST 2022, time=2022-08-25, status=1, ipAttribution=)]
    2022-08-25 小小医者

    #富氢水#,是所谓的#氢医学##钟南山#院士似乎也肯定过,但是本人实在想不通!H2并不是活泼的分子,进入人体,能起到什么化学反应??有些人把H2,与CO和H2S并列,作为第三个#气体信号分子#,但是并没有过多的依据,现在只能再看看吧。 而且这个研究设计还有很大的问题。

    0

相关资讯

Recent Progress:中医药治疗过敏性鼻炎

过敏性鼻炎(AR)是由免疫球蛋白E介导的炎症引起的免疫系统I型过敏性疾病。在过去的 20 年里,全世界有超过 5 亿人受到鼻炎的影响,对健康、生活质量和社会关系造成负面影响。

Allergy Asthma Clin Immunol:布地奈德鼻内治疗大气污染引发鼻炎的疗效如何?

评估了自我报告的因空气污染而引发/加重鼻炎症状成人中,鼻内布地奈德治疗的有效性情况。

Environ Res:城市灰色空间与普通人群过敏的增加有关

在一个普通成年人群样本中,评估了灰色空间暴露的增加与过敏状态之间的关系。

J Allergy Clin Immunol Pract:在屋尘螨诱发的鼻炎中,慢性鼻窦炎伴鼻息肉风险如何?

调查了屋尘螨(DP)诱发的鼻炎的内型是否是CRSwNP和成人发病哮喘的风险因素,并调查了过敏性斑贴试验(DP-APT)评估的对DP超敏性的延迟是否是贡献因素。

Int Arch Allergy Immunol:曲安奈得治疗常年性变应性鼻炎的效果怎样?

在一项事后数据分析中(第三期NASANIF试验),调查了TAA治疗常年性AR(PAR)患者的每周QoL变化。

钟南山:尘螨仍是鼻炎和哮喘患者最常见过敏原

据调查,鼻炎和哮喘儿童患者的过敏原阳性率都普遍高于成人,尤其是尘螨阳性率高出成人将近一倍。