网易首页 > 网易号 > 正文 申请入驻

老药结构立新功!药明康德如何用这项技术为新型分子“撞开”一扇新门?| Bilingual

0
分享至

从20世纪40年代可的松(cortisone)在类风湿性关节炎治疗中惊艳亮相,到口服避孕药的诞生改变无数人的生活——被《经济学人》(The Economist)杂志评为20世纪科学与技术伟大的进步之一,再到如今广泛应用于抗肿瘤、免疫调节及代谢疾病等领域,甾体化合物在现代药物研发中始终占据着不可替代的地位。

然而,随着新药靶点发现难度的增加、甾体分子结构日趋复杂,其研发与生产面临多重挑战。一方面,商业化可及的甾体药物中间体多集中于经典母核,新型结构适配的定制化中间体供给不足,提高了合成路线设计与工艺放大的门槛;另一方面,甾体骨架含多个连续手性中心,部分位点的反应选择性难以精准调控,不仅增加早期纯化成本,也易在规模放大过程中引发更多副反应,延长杂质研究周期。


图片来源:123RF

深耕甾体化学:系统性构筑经验证的平台能力

面对甾体化学的研发挑战,药明康德研发化学服务部(Research Chemistry Services,RCS)在十多年前便开始布局甾体化学能力,在攻克关键难题的过程中积累了丰富经验。依托长期的能力与经验沉淀,RCS近年来进一步构建了覆盖药物发现、分子优化到工艺开发与规模化生产的甾体化学综合技术平台。如今,平台累计合成超过1万种甾体类化合物。

在复杂多手性中心构建与结构精准修饰方面,平台建立了20余种甾体手性中心构建方法,并配套丰富的甾体高级中间体与定制化路线设计能力,可高效支持从苗头化合物到先导化合物的优化、新结构开发到聚焦化合物库构建等早期研究需求。

针对甾体分子的结构特点,RCS能够通过路线开发、杂质与代谢物合成、同位素标记及绝对构型解析等能力,实现对候选分子的系统性研究与优化。同时,平台支持毫克级至公斤级的化合物合成与交付,并通过早期工艺开发与放大研究,有效缩短开发周期。平台的能力已经在诸多项目中得到验证。

曾有客户因棘手的工艺开发难题找到药明康德RCS团队:其目标甾体分子的原始合成路线步骤冗长,且存在区域选择性差、工艺放大难等问题。面对困局,RCS团队依托甾体合成经验与技术能力,重新审视并成功开发出一条全新路线——总路线从7步缩短至3步,总收率也提升了两倍以上。

此次超预期的交付赢得了客户认可,也为双方建立了坚实的信任基础。随后,该客户在新业务开展时毫不犹豫地再次选择与RCS开展项目合作,共同推进更具挑战性的甾体分子项目。

在另一个案例中,依托公司甾体化学综合技术平台及某关键中间体的成功应用,RCS团队仅用23天便完成客户目标甾体化合物的合成,相较行业常规约2个月的周期,时间大幅缩短。

这些实践,既是药明康德甾体化学综合技术平台赋能能力的具体体现,也印证了平台能力与行业需求的深度契合。


图片来源:123RF

持续精进:赋能新分子研发

甾体药物的价值远不止于传统治疗领域,凭借独特的刚性多环骨架结构与生物学特性,甾体结构正成为突破新型分子成药瓶颈的关键功能单元。

近年来,靶向蛋白降解剂、抗体偶联药物(ADCs)、寡核苷酸等新分子类型不断拓展可干预靶点的范围。在部分新分子设计中,甾体片段可作为关键结构单元,用于调节稳定性、靶向特异性或递送性能。这对甾体化学的高选择性衍生化改造能力提出了更高要求。

为响应这类前沿新分子的研发需求,药明康德RCS甾体化学综合技术平台持续迭代其技术能力。目前,平台能够对ADCs和蛋白降解嵌合体等新型分子中的甾体片段进行高效且高选择性的衍生化改造。以某款基于甾体骨架的ADC载荷工艺开发项目为例,平台不仅快速完成了百毫克级合成验证,更通过路线优化大幅提升了总收率,充分验证了平台支持含甾体结构的新分子从早期设计到可放大合成的能力。

目前,药明康德RCS已将甾体化学与新分子类型开发深度结合,可支持包含甾体骨架的抗体偶联药物、靶向蛋白降解剂、前药及氮芥类分子设计与合成,并与分析服务、反应条件筛选、重结晶平台、流动化学、光氧化还原及电化学等技术协同运行,实现从分子创新到可放大生产的无缝衔接。通过整合长期经验、模块化技术能力与跨平台协同,甾体化学平台能够为客户提供稳定、高效且可扩展的化学赋能,助力复杂甾体分子及新型偶联分子的研发与转化。

甾体化学综合技术平台的演进,是药明康德一体化、端到端的CRDMO能力不断精进的缩影——通过在甾体化学领域的持续积累与迭代,助力合作伙伴提升研发效率、缩短项目周期,并提供从分子设计和优化到工艺开发与规模化生产的全流程解决方案。(如需了解药明康德研发化学服务或业务咨询,请点击文末“阅读原文”)

未来,随着更多复杂甾体分子及新型分子模式的涌现,药明康德将持续通过一体化、端到端的CRDMO赋能平台,助力全球合作伙伴推动创新疗法更快惠及患者。

How WuXi AppTec Addresses the Challenges of Steroid Drug Discovery and Development

Steroid compounds hold an important position in modern drug discovery and development, from the introduction of cortisone in the 1940s for rheumatoid arthritis, to the advent of the oral contraceptive pill, which transformed reproductive health and the lives of millions of people. Today, steroids remain widely used in the treatment of cancer, immune disorders, and metabolic diseases.

However,the development and manufacturing of steroid compounds present distinct challenges as molecular structures become increasingly complex.First, commercially available steroid intermediates are largely limited to conventional core scaffolds, while customized intermediates suitable for novel structures remain scarce, complicating synthetic route design and process scale-up. Second, steroid scaffolds often contain multiple contiguous stereocenters, making it difficult to achieve precise regioselectivity and stereoselectivity at specific positions. These challenges can increase purification requirements during early development, promote side reactions during scale-up, and extend the time needed for impurity identification and control.


Image source: 123RF

Developing Proven Capabilities in Steroid Chemistry

More than a decade ago, WuXi AppTec's Research Chemistry Services (RCS) began developing specialized capabilities in steroid chemistry to address the synthetic and process challenges associated with structurally complex steroid molecules. Building on this experience, RCS has established a comprehensive steroid chemistry platform covering discovery, optimization, process development, and large-scale production. Today, the platform has synthesized over 10,000 steroid molecules.

To enable the construction and modification of complex steroid scaffolds, RCS has established over 20 methods for controlling stereochemistry at specific positions. These capabilities are complemented by customized route design and access to a diverse range of advanced steroid intermediates, supporting activities such as hit-to-lead optimization, novel scaffold development, and focused library generation. RCS also provides capabilities in synthetic route development, impurity and metabolite synthesis, isotope labeling, and absolute-configuration determination. Together, these capabilities enable the systematic characterization and optimization of steroid candidates based on their structural and physicochemical properties. The platform supports compound synthesis and delivery at scales ranging from milligrams to kilograms, as well as early process development and scale-up, helping clients advance programs efficiently through successive stages of development.

In one project, a client sought support for a steroid molecule whose original synthetic route involved numerous steps, poor regioselectivity, and limited reproducibility during scale-up.RCS redesigned the route, reducing the total number of steps from 7 to 3 and more than doubling the overall yield.The team exceeded expectations and earned positive feedback from the client. Following completion of the project, the client engaged RCS for an additional and more technically challenging steroid synthesis program.

In another project,RCS combined its steroid chemistry platform with the use of a key steroid intermediate to complete the synthesis of a target compound in 23 days.Given that the industry-standard timeline is approximately two months, the synthesis timeline was significantly shortened.

These examples demonstrate how WuXi AppTec’s comprehensive steroid chemistry platform supports steroid drug development and how its integrated development capabilities align with industry needs.


Image source: 123RF

Extending Steroid Chemistry Capabilities to Emerging Therapeutic Modalities

The value of steroid chemistry extends beyond the development of conventional steroid-based therapeutics. With their rigid polycyclic structures and distinctive physicochemical and biological properties, steroid scaffolds can serve as functional components in the design of emerging therapeutic modalities, helping researchers modulate molecular properties that may otherwise limit drug development.

New modalities, including targeted protein degraders, antibody-drug conjugates (ADCs), and oligonucleotide therapeutics, are expanding the range of addressable targets and therapeutic design strategies. In some of these molecules, steroid-derived fragments can be incorporated as structural or functional components to modulate stability, targeting, or delivery. The development of such molecules requires steroid chemistry capabilities that enable precise, highly selective derivatization at specific positions on structurally complex steroid scaffolds.

RCS's comprehensive steroid chemistry platform has evolved in response to the growing demands of these new modalities. It now supports the efficient and highly selective derivatization of steroid fragments used in ADCs and targeted protein degraders.In one case involving the development of an ADC payload based on a steroid scaffold, the platform delivered hundred‑milligram-scale compounds for validation and improved the overall yield through route optimization, demonstrating its ability to support steroid-containing new modalities from early design through scalable synthesis.

WuXi AppTec’s RCS integrates steroid chemistry with the development of innovative therapeutic modalities, supporting the design and synthesis of ADCs, targeted protein degraders, prodrugs, and nitrogen mustard derivatives that incorporate steroid-derived structural or functional components. The platform also draws on complementary capabilities in analytical services, reaction-condition screening, recrystallization, flow chemistry, photoredox chemistry, and electrochemistry to support progression from molecular design to scalable synthesis. By integrating long-term experience, modular technical capabilities, and cross-platform synergy, the steroid chemistry platform provides clients with stable, efficient, and scalable synthetic solutions, accelerating the R&D of complex steroids and novel conjugate molecules.

The continued development of RCS’s steroid chemistry capabilities reflects the broader evolution of WuXi AppTec’s integrated, end-to-end CRDMO model. Through ongoing technical refinement and cross-functional collaboration, RCS helps clients improve discovery and development efficiency, shorten project timelines, and obtain one-stop solutions covering molecular design, process development, and scale-up.

As increasingly complex steroid molecules and emerging therapeutic modalities create new development demands, WuXi AppTec will continue to leverage its integrated CRDMO platform to help clients advance innovative therapies for patients worldwide.

Key Takeaways:

1. WuXi AppTec’s Research Chemistry Services (RCS) has built an integrated steroid chemistry platform covering early discovery, molecular optimization, process development, and large-scale manufacturing.

2. With more than a decade of experience and over 10,000 steroid compounds synthesized, RCS has developed extensive expertise in addressing the stereochemical and synthetic challenges associated with complex steroid molecules.

3. Capabilities in route development, impurity and metabolite synthesis, isotope labeling, and absolute-configuration determination support the systematic characterization and optimization of steroid candidates.

4. RCS combines specialized steroid chemistry expertise with modular technical capabilities and cross-platform collaboration to support the design, synthesis, optimization, and scale-up of complex steroid compounds and novel conjugates.

5. The platform applies steroid chemistry to emerging therapeutic modalities, supporting ADCs, targeted protein degraders, prodrugs, and nitrogen mustard derivatives that incorporate steroid-derived components, while drawing on complementary capabilities in analytical services, reaction-condition screening, recrystallization, flow chemistry, photoredox chemistry, and electrochemistry.

For more information about WuXi AppTec’s Research Chemistry Services or business collaboration inquiries, please click“Read More”at the end of this article.

参考资料:

[1] FDA's Approval of the First Oral Contraceptive, Enovid. Retrieved June 10, 2026, from https://www.fda.gov/media/110456/download

[2] Project W – The Power of the Pill. Retrieved June 10, from https://www.dwt.com/insights/2022/03/project-w-the-power-of-the-pill

[3] Zhu, Jiacheng, Guoshun Luo and Hua Xiang. “Approved Steroidal Drugs (2000-2025): A Medicinal Chemistry Perspective.” Journal of medicinal chemistry (2026): n. pag.

[4] 从避孕药到抗癌、抗抑郁:这个经典分子骨架,为何还能不断诞生新药?Retrieved June 10, 2026, from https://mp.weixin.qq.com/s?__biz=MzAwMDA5NTIxNQ==&mid=2650126164&idx=1&sn=6c9316570c22455fdcae5d9c898fc2a4&chksm=83e5a03d0cb826d7c9416f2eb3bc398ba63478001278832723a62b224c41fbc24871c342f09f

[5] PENG H D, WANG Y Y, JIANG K, et al. A dual role reductase from phytosterols catabolism enables the efficient production of valuable steroid precursors. Angewandte Chemie International Edition, 2021, 60(10): 5414-5420.

[6] DONOVA M V, EGOROVA O V. Microbial steroid transformations: current state and prospects[J]. Applied Microbiology and Biotechnology, 2012, 94(6): 1423-1447.

免责声明:本文仅作信息交流之目的,文中观点不代表药明康德立场,亦不代表药明康德支持或反对文中观点。本文也不是治疗方案推荐。如需获得治疗方案指导,请前往正规医院就诊。

版权说明:欢迎个人转发至朋友圈,谢绝媒体或机构未经授权以任何形式转载至其他平台。转载授权请在「药明康德」微信公众号回复“转载”,获取转载须知。

特别声明:以上内容(如有图片或视频亦包括在内)为自媒体平台“网易号”用户上传并发布,本平台仅提供信息存储服务。

Notice: The content above (including the pictures and videos if any) is uploaded and posted by a user of NetEase Hao, which is a social media platform and only provides information storage services.

相关推荐
热点推荐
舆论反转!尊界踏板支架断裂事件,余承东淡定反应获网友力挺,直言“余总这波,输没输产品另说,至少没输人”

舆论反转!尊界踏板支架断裂事件,余承东淡定反应获网友力挺,直言“余总这波,输没输产品另说,至少没输人”

火山詩话
2026-10-09 14:57:30
出轨9人的女局长,大概率不仅有作风问题!

出轨9人的女局长,大概率不仅有作风问题!

仕道
2026-10-10 08:58:14
飞天奖获奖:宋佳成首位一串三大满贯视后!王仁君爆冷夺视帝,赵丽颖恭喜

飞天奖获奖:宋佳成首位一串三大满贯视后!王仁君爆冷夺视帝,赵丽颖恭喜

露珠聊影视
2026-10-09 23:29:01
曝光后,上海这些"男神房""女神房"纷纷被下架

曝光后,上海这些"男神房""女神房"纷纷被下架

看看新闻Knews
2026-10-09 23:05:11
人社部发布的养老金最新调整方案!

人社部发布的养老金最新调整方案!

逍遥论经
2026-10-10 14:04:10
懂车帝全网下架,事情彻底闹大了!

懂车帝全网下架,事情彻底闹大了!

财经三分钟pro
2026-10-10 10:18:34
湖南永州通报“商务局周某某相关举报”:成立调查组

湖南永州通报“商务局周某某相关举报”:成立调查组

界面新闻
2026-10-09 18:52:06
特朗普新任白宫新闻秘书:曾在北京工作3年,任职中国知名律所,会讲普通话

特朗普新任白宫新闻秘书:曾在北京工作3年,任职中国知名律所,会讲普通话

红星新闻
2026-10-10 12:19:33
秘鲁一位名叫希特勒·墨索里尼的男子当选市长,该国数千人名叫“希特勒”;2018年也曾产生“希特勒”市长,竞选口号是“我是好希特勒”

秘鲁一位名叫希特勒·墨索里尼的男子当选市长,该国数千人名叫“希特勒”;2018年也曾产生“希特勒”市长,竞选口号是“我是好希特勒”

极目新闻
2026-10-10 14:46:03
买用户可以自由批评的车

买用户可以自由批评的车

吐槽青年
2026-10-09 21:54:10
随着莫雷加德0-4,WTT中国大满贯男单4强全部诞生:3大前十悍将在列

随着莫雷加德0-4,WTT中国大满贯男单4强全部诞生:3大前十悍将在列

侧身凌空斩
2026-10-10 14:48:13
懂车帝被立案调查?最新回应来了!华为客服回应“华为手机上懂车帝App相关视频无法播放”

懂车帝被立案调查?最新回应来了!华为客服回应“华为手机上懂车帝App相关视频无法播放”

兰亭墨未干
2026-10-10 11:19:22
海南一男子电梯中用脚猛踹9岁自闭症男童被行拘10日,男童家属:因担心遭打击报复,同时不想让家中老人担忧,决定不再继续追究对方责任

海南一男子电梯中用脚猛踹9岁自闭症男童被行拘10日,男童家属:因担心遭打击报复,同时不想让家中老人担忧,决定不再继续追究对方责任

潇湘晨报
2026-10-10 16:06:28
美国向俄罗斯紧急“求供”柴油,泽连斯基:感觉被背叛了

美国向俄罗斯紧急“求供”柴油,泽连斯基:感觉被背叛了

界面新闻
2026-10-10 10:04:51
央视曝光!20余省100多家A级景区被摘牌,昔日金字招牌割不动了

央视曝光!20余省100多家A级景区被摘牌,昔日金字招牌割不动了

财经八卦
2026-10-09 18:17:58
62岁马云现身NBA中国赛!猛拍成龙大腿 与贝克汉姆蔡崇信热聊

62岁马云现身NBA中国赛!猛拍成龙大腿 与贝克汉姆蔡崇信热聊

念洲
2026-10-10 08:06:17
金价大降后又涨,金店导购称国庆期间生意火爆:浙江女子花99000元买100多克黄金送父母,有顾客给准儿媳买十金

金价大降后又涨,金店导购称国庆期间生意火爆:浙江女子花99000元买100多克黄金送父母,有顾客给准儿媳买十金

大风新闻
2026-10-10 15:41:07
国内市占率登顶之后,WPS又在重新定义组织级AI的交付标准

国内市占率登顶之后,WPS又在重新定义组织级AI的交付标准

豹变
2026-10-09 08:00:14
塔利班在莫斯科当众掀桌,拒签联合声明!对华对俄的态度判若两人

塔利班在莫斯科当众掀桌,拒签联合声明!对华对俄的态度判若两人

麓谷隐士
2026-10-10 00:10:04
官媒下场后,仅隔一天联合调查组便光速介入,这一次,湖南永州那位女干部怕是要遭殃了

官媒下场后,仅隔一天联合调查组便光速介入,这一次,湖南永州那位女干部怕是要遭殃了

子非鱼人
2026-10-10 13:34:21
2026-10-10 17:28:49
药明康德 incentive-icons
药明康德
创建赋能平台,承载医药梦想
8511文章数 17550关注度
往期回顾 全部

科技要闻

上世纪成熟的踏板,为何今天还会断裂?

头条要闻

女局长被指出轨多人 同意给前夫500万考虑影响写330万

头条要闻

女局长被指出轨多人 同意给前夫500万考虑影响写330万

体育要闻

十年回首:湖人三榜眼的夏天,与NBA无关

娱乐要闻

宋佳一串三大满贯 争议随之而来

财经要闻

蹭尊界流量?岚图汽车在“玩火”

汽车要闻

二十载再越巅峰 第五代全新别克君越今日正式上市

态度原创

健康
旅游
亲子
公开课
军事航空

痘坑留下后,还能填平吗?

旅游要闻

1546.2万人次!国庆假期中外游客“双向奔赴”活力涌动

亲子要闻

马上评|食用银鳕鱼致汞中毒,“儿童装”为何没能更安全

公开课

李玫瑾:为什么性格比能力更重要?

军事要闻

美乌将举行新一轮会谈

无障碍浏览 进入关怀版