Antibody-Drug Conjugates (ADCs) are composed of a drug (payload) and antibody (mAbs) that are bound using linkages that are specifically designed to deliver the payload to the intended target environment. ADCs are designed to sparing healthy cells by targeting specific cancer types.
This article expands upon the linker information in the ADC Linker Technology in 2021 article. Specifically, the cleavable and non-cleavable categories of ADC linkers. Cleavable linkers use inherent properties of tumor cells for selective release of payloads from the ADCs. There are three commonly used mechanisms for cleavable linkers; protease-sensitive peptide linkers, acid sensitive hydrazone linkers, and glutathione-sensitive disulfide linkers.
Protease-sensitive cleavable linkers use the dominant proteases found in tumor cell lysosomes for recognition and cleavage of a specific peptide sequence in the linker. A commonly used ADC linker makes use of a valine-citrulline (vc) dipeptide, first discovered by Dubowchik et al., as an intracellular cleavage mechanism by cathepsin B.

Acid-sensitive linkers use a lower pH in the endosomal (pH = 5-6) and lysosomal (pH = 4.8) compartments, in contrast to cytosol (pH = 7.4) to trigger hydrolysis of acid labile groups within a linker such as hydrazone.
Glutathione-sensitive linkers use higher concentrations of intracellular glutathione that in the plasma. This causes disulfide bridges to release the payload upon reduction by glutathione.
Cleavable linkers may also help with destroying cancer cell adjacent to their targets through a process referred to as "bystander effect". The bystander effect occurs when the payload is released near the targeted cancer cell, or a payload diffuses out of one cancer cell and then is absorbed by a second cancer cell.
Non-cleavable linkers only degrade when the anti-body degrades. Release of the payload occurs mainly in the lysosome after internalization of the ADC and degradation of both the antibody and linker. This may be an advantage since it could lead to a lower risk of systemic toxicity. Figure 2 shows an example of Kadcyla, which uses SMCC crosslinker as the non-cleavable linker.

BroadPharm offers a wide array of different ADC Linkers, PEG Linkers to empower our customer's advanced research worldwide. These compounds feature great aqueous solubility, smart choice of PEG length, and a broad selection of functional groups to choose from.
Journal Reference:
1.Editorial Team, "FDA Grants Accelerated Approval for Sacituzumab Govitecan in Metastatic Triple-negative Breast Cancer", ADC Review (2020)
2.FDA Press Release, "FDA grants accelerated approval to loncastuximab tesirine-lpyl for large B-cell lymphoma", (2021)
3.Staudacher, Brown, "Antibody drug conjugates and bystander killing: is antigen-dependent internalisation required?", Br J Cancer 117, (2017): 1736-1742
訂購咨詢
靶點科技(北京)有限公司
相關(guān)產(chǎn)品
免責(zé)聲明
- 凡本網(wǎng)注明“來源:化工儀器網(wǎng)”的所有作品,均為浙江興旺寶明通網(wǎng)絡(luò)有限公司-化工儀器網(wǎng)合法擁有版權(quán)或有權(quán)使用的作品,未經(jīng)本網(wǎng)授權(quán)不得轉(zhuǎn)載、摘編或利用其它方式使用上述作品。已經(jīng)本網(wǎng)授權(quán)使用作品的,應(yīng)在授權(quán)范圍內(nèi)使用,并注明“來源:化工儀器網(wǎng)”。違反上述聲明者,本網(wǎng)將追究其相關(guān)法律責(zé)任。
- 本網(wǎng)轉(zhuǎn)載并注明自其他來源(非化工儀器網(wǎng))的作品,目的在于傳遞更多信息,并不代表本網(wǎng)贊同其觀點和對其真實性負(fù)責(zé),不承擔(dān)此類作品侵權(quán)行為的直接責(zé)任及連帶責(zé)任。其他媒體、網(wǎng)站或個人從本網(wǎng)轉(zhuǎn)載時,必須保留本網(wǎng)注明的作品第一來源,并自負(fù)版權(quán)等法律責(zé)任。
- 如涉及作品內(nèi)容、版權(quán)等問題,請在作品發(fā)表之日起一周內(nèi)與本網(wǎng)聯(lián)系,否則視為放棄相關(guān)權(quán)利。