1.Key points of the International consensus guidelines on the implementation and monitoring of vosoritide therapy in individuals with Achondroplasia.
Hangyu PING ; Ran DING ; Cheng HUANG ; Yue PENG ; Zikang ZHONG ; Weiguo WANG
Chinese Journal of Medical Genetics 2026;43(1):5-12
Achondroplasia (ACH) is a common inherited skeletal dysplasia (inherited dwarfism) that compromises quality of life across the lifespan. In 2021, vosoritide became the first approved precision therapy for ACH and is now available in more than 40 countries. Compared with prior symptomatic measures, vosoritide has demonstrated favorable efficacy and a reassuring safety profile. Nevertheless, existing international ACH guidelines largely emphasize complication management and symptomatic care, and there is no unified consensus on pharmacologic therapy. To address this gap, an international expert group developed the International Consensus Guidelines for the Implementation and Monitoring of Vosoritide Therapy in Patients with Achondroplasia providing systematic recommendations that span the continuum of care - from initial patient contact and pre-treatment assessment to medication counseling, injection training, and long-term outcome monitoring. These recommendations complement and refine current management and nursing protocols for individuals with ACH and offer practical guidance for clinicians across diverse regions. This article highlights key elements of the guideline to provide evidence-based support and clinical direction for healthcare professionals in China treating children with ACH using vosoritide.
Humans
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Achondroplasia/drug therapy*
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Consensus
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Practice Guidelines as Topic
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Child
2.Performance Investigation of Ion Trap with Various Collision gas and Pressures
Fuxing XU ; Qiankun DANG ; Hangyu DING ; Zhengxu HUANG ; Yuanyuan WANG ; Zhen ZHOU ; Chuanfan DING
Chinese Journal of Analytical Chemistry 2017;45(4):587-592
Ion trap performances are investigated based on digital ion trap technique with different collision gases at different pressures. Collision gases of helium (4 amu), nitrogen (28 amu) and argon (40 amu) with various pressures are adopted in ion excitation and dissociation stages to investigate the ion trap performances, including mass resolution, signal intensity, tandem mass spectrometric analysis ability and low-mass cut off (LMCO) effect. It is found that when heavy gas of argon is used, energy can be efficiently transferred and LMCO effect is decreased with higher ion capture and dissociation efficiencies but with low mass resolution. Higher mass resolution is realized with helium as collision gas. Furthermore, at the same gas pressure, heavy gas is beneficial to abundant fragment ions and structural information of precursor ion.

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