Breaking the Mucin Barrier: A New Affinity Chromatography-Mass Spectrometry Approach to Unveil Potential Cell Markers and Pathways Altered in Pseudomyxoma Peritonei.

IF 3.7 3区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Antonio Romero-Ruiz, Melissa Granados-Rodríguez, Florina I Bura, Francisca Valenzuela-Molina, Blanca Rufián-Andújar, Ana Martínez-López, Lidia Rodríguez-Ortiz, Rosa Ortega-Salas, María Torres-Martínez, Ana Moreno-Serrano, Justo Castaño, Carmen Michán, José Alhama, Mari C Vázquez-Borrego, Álvaro Arjona-Sánchez
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引用次数: 0

Abstract

Background: Pseudomyxoma peritonei (PMP) is a rare peritoneal mucinous carcinomatosis with largely unknown underlying molecular mechanisms. Cytoreductive surgery combined with hyperthermic intraperitoneal chemotherapy is the only therapeutic option; however, despite its use, recurrence with a fatal outcome is common. The lack of molecular characterisation of PMP and other mucinous tumours is mainly due to the physicochemical properties of mucin.

Results: This manuscript describes the first protocol capable of breaking the mucin barrier and isolating proteins from mucinous tumours. Briefly, mucinous tumour samples were homogenised and subjected to liquid chromatography using two specific columns to reduce mainly glycoproteins, albumins and immunoglobulin G. The protein fractions were then subjected to mass spectrometry analysis and the proteomic profile obtained was analysed using various bioinformatic tools. Thus, we present here the first proteome analysed in PMP and identified a distinct mucin isoform profile in soft compared to hard mucin tumour tissues as well as key biological processes/pathways altered in mucinous tumours. Importantly, this protocol also allowed us to identify MUC13 as a potential tumour cell marker in PMP.

Conclusions: In sum, our results demonstrate that this protein isolation protocol from mucin will have a high impact, allowing the oncology research community to more rapidly advance in the knowledge of PMP and other mucinous neoplasms, as well as develop new and effective therapeutic strategies.

打破粘蛋白屏障:一种新的亲和层析-质谱法揭示假性肌瘤腹膜的潜在细胞标记和改变途径
背景:腹膜假性粘液瘤(PMP)是一种罕见的腹膜粘液癌,其分子机制尚不清楚。细胞切除手术联合腹腔内热化疗是唯一的治疗方案;然而,尽管使用了这种治疗方法,但复发并导致死亡的情况仍很常见。PMP和其他粘液性肿瘤之所以缺乏分子特征,主要是由于粘蛋白的理化特性:本手稿描述了首个能够打破粘蛋白屏障并从粘液瘤中分离蛋白质的方案。简而言之,将粘液性肿瘤样本匀浆后,使用两种特定色谱柱进行液相色谱分析,主要还原糖蛋白、白蛋白和免疫球蛋白 G。因此,我们在此展示了首个在 PMP 中分析的蛋白质组,并确定了软粘液肿瘤组织与硬粘液肿瘤组织中不同的粘蛋白同工酶谱,以及粘液性肿瘤中发生改变的关键生物过程/途径。重要的是,该方案还使我们能够将 MUC13 鉴定为 PMP 中潜在的肿瘤细胞标记物:总之,我们的研究结果表明,这种从粘液蛋白中分离蛋白质的方案将产生重大影响,使肿瘤研究界能够更快地增进对 PMP 和其他粘液性肿瘤的了解,并开发出新的有效治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biological Procedures Online
Biological Procedures Online 生物-生化研究方法
CiteScore
10.50
自引率
0.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: iological Procedures Online publishes articles that improve access to techniques and methods in the medical and biological sciences. We are also interested in short but important research discoveries, such as new animal disease models. Topics of interest include, but are not limited to: Reports of new research techniques and applications of existing techniques Technical analyses of research techniques and published reports Validity analyses of research methods and approaches to judging the validity of research reports Application of common research methods Reviews of existing techniques Novel/important product information Biological Procedures Online places emphasis on multidisciplinary approaches that integrate methodologies from medicine, biology, chemistry, imaging, engineering, bioinformatics, computer science, and systems analysis.
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