Grodsky Jacob D, Schehlein Emily M, Chang David F, Patel Nimesh A, Scott Nathan L, Cole Emily D, Berrocal Audina M, Kim Judy E, Emerson Geoffrey G
Ochsner Health, New Orleans, LA, USA.
Brighton Vision Center, Brighton, MI, USA.
J Vitreoretin Dis. 2024 Dec 25:24741264241308496. doi: 10.1177/24741264241308496.
To understand the environmental burden associated with intravitreal injections (IVIs) and propose actionable solutions to mitigate this impact. An analysis of current IVI practices was conducted, focusing on packaging waste, energy consumption, the carbon footprint, and disposal processes. Data on the environmental footprint of IVIs were collected from the literature and industry reports. Sustainable practices were evaluated for their feasibility and impact on reducing waste and emissions. Industry efforts to address these environmental concerns were also surveyed. This study found that the packaging of IVI medications, especially brand-name drugs, generates considerable waste. In addition, transportation and storage of these medications substantially contribute to carbon emissions. Implementing take-back programs, reducing packaging size, and using reusable or biodegradable coolers could significantly decrease waste. Adopting multidose packaging and streamlining injection practices can reduce both waste and costs. Sustainable practices have the potential for considerable environmental and economic benefits without compromising patient care. Addressing the environmental burden of IVIs requires a multifaceted approach involving many different parties. Collaboration among retina specialists, industry partners, and stakeholders is essential to foster sustainable practices, reduce waste, and minimize carbon emissions. This effort will ensure that our commitment to patient care matches our commitment to environmental stewardship.
了解与玻璃体内注射(IVI)相关的环境负担,并提出可行的解决方案以减轻这种影响。对当前的IVI操作进行了分析,重点关注包装废弃物、能源消耗、碳足迹和处置过程。从文献和行业报告中收集了有关IVI环境足迹的数据。评估了可持续做法的可行性及其对减少废物和排放的影响。还调查了行业为解决这些环境问题所做的努力。本研究发现,IVI药物的包装,尤其是品牌药的包装,会产生大量废弃物。此外,这些药物的运输和储存对碳排放有很大贡献。实施回收计划、减小包装尺寸以及使用可重复使用或可生物降解的冷藏箱可显著减少废弃物。采用多剂量包装并简化注射操作可减少废物和成本。可持续做法在不影响患者护理的情况下具有显著的环境和经济效益。解决IVI的环境负担需要多方参与的多方面方法。视网膜专家、行业合作伙伴和利益相关者之间的合作对于促进可持续做法、减少废物和将碳排放降至最低至关重要。这项工作将确保我们对患者护理的承诺与我们对环境管理的承诺相匹配。