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Item type:Publication, Connexin46 in the nucleus of cancer cells: a possible role as transcription modulator(Springer Science and Business Media LLC, 2025-03-27) ;Ainoa Fernández-Olivares ;Viviana P Orellana ;Jesús Llanquinao; Pablo Pérez-MorenoScopus© Citations 1 10 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, New Dermoscopy Pattern in Nevus‐Associated Melanomas(Wiley, 2025-04-19) ;Nelson Lobos‐Guede ;Dan Hartmann ;Valentina Darlic ;Cristina CarreraLlucia AlosMelanomas can appear de novo or in association with a pre‐existing nevus. The association of melanomas with pre‐existing nevi and its role as a melanoma precursor is a controversial issue. Dermoscopy can increase melanoma's diagnostic accuracy and help us suspect nevus‐associated melanomas (NAM). Differentiating NAMs clinically and dermoscopically can be challenging. There are few published studies so far describing dermoscopic features of NAM that have differentiated from <jats:italic>de novo</jats:italic> melanomas, such as multi‐component pattern, multifocal pigmentation, atypical pigment network, regression structures, negative pigment network, irregular globules, and streaks. Here, we report four acquired compound NAMs showing a starburst pattern (SP) within the lesion. No publications have reported NAMs with melanoma components in the form of SP arising within the center of the lesion. Therefore, when faced with a compound or intradermal nevus with incipient central reticulated pigmentation, especially if there is no history of trauma or previous surgery, we must pay alert to the possibility of an early development of melanoma.2 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Kinin Receptors B1 and B2 Mediate Breast Cancer Cell Migration and Invasion by Activating the FAK-Src Axis(2024) ;Felipe González-Turén ;Lorena Lobos-González ;Alexander Riquelme-Herrera ;Andrés IbacacheLuis Meza UlloaKinin receptors B1 and B2 are involved in migration and invasion in gastric, glioma, and cervical cancer cells, among others. However, the role of kinin receptors in breast cancer cells has been poorly studied. We aimed to reveal the impact of B1 and B2 receptors on migration and invasion in breast cancer cells and demonstrate their capacity to modulate in vivo tumor growth. MDA-MB-231, MCF-7, and T47D cells treated with Lys-des[Arg9]bradykinin (LDBK) or bradykinin (BK) were used to evaluate migration and invasion. Des-[Arg9]-Leu8-BK and HOE-140 were used as antagonists for the B1 and B2 receptors. MDA-MB-231 cells incubated or not with antagonists were subcutaneously inoculated in BALBc NOD/SCID mice to evaluate tumor growth. LDBK and BK treatment significantly increased migration and invasion in breast cancer cells, effects that were negated when antagonists were used. The use of antagonists in vivo inhibited tumor growth. Moreover, the migration and invasion induced by kinins in breast cancer cells were inhibited when focal adhesion kinase (FAK) and Src inhibitors were used. The novelty revealed in our work is that B1 and B2 receptors activated by LDBK and BK induce migration and invasion in breast cancer cells via a mechanism that involves the FAK–Src signaling pathway, and the antagonism of both receptors in vivo impairs breast tumor growth.3Scopus© Citations 3 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Prenatal presentation of pleuropulmonary blastoma associated to DICER1 syndrome: differential diagnosis of congenital pulmonary malformation(2023) ;Valenzuela, Catalina Catán ;Paula Vargas Innocenti ;Gutierrez, Aquiles Hachim ;Pinto, Pablo JorqueraRamos, Ximena Claverie3Scopus© Citations 2 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, EV-miRNA-Mediated Intercellular Communication in the Breast Tumor Microenvironment(2023) ;Francisca Sepúlveda ;Cristina Mayorga-Lobos ;Kevin Guzmán ;Eduardo Durán-JaraLorena Lobos-González<jats:p>Cancer research has prioritized the study of the tumor microenvironment (TME) as a crucial area of investigation. Understanding the communication between tumor cells and the various cell types within the TME has become a focal point. Bidirectional communication processes between these cells support cellular transformation, as well as the survival, invasion, and metastatic dissemination of tumor cells. Extracellular vesicles are lipid bilayer structures secreted by cells that emerge as important mediators of this cell-to-cell communication. EVs transfer their molecular cargo, including proteins and nucleic acids, and particularly microRNAs, which play critical roles in intercellular communication. Tumor-derived EVs, for example, can promote angiogenesis and enhance endothelial permeability by delivering specific miRNAs. Moreover, adipocytes, a significant component of the breast stroma, exhibit high EV secretory activity, which can then modulate metabolic processes, promoting the growth, proliferation, and migration of tumor cells. Comprehensive studies investigating the involvement of EVs and their miRNA cargo in the TME, as well as their underlying mechanisms driving tumoral capacities, are necessary for a deeper understanding of these complex interactions. Such knowledge holds promise for the development of novel diagnostic and therapeutic strategies in cancer treatment.</jats:p>Scopus© Citations 17 1 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Caveolin-1-dependent tenascin C inclusion in extracellular vesicles is required to promote breast cancer cell malignancy(2023) ;America Campos ;Renato Burgos-Ravanal ;Lorena Lobos-González ;Ricardo HuilcamánMaría Fernanda González<jats:p> Background: Elevated expression of CAV1 in breast cancer increases tumor progression. Extracellular vesicles (EVs) from CAV1-expressing MDA-MB-231 breast cancer cells contain Tenascin C (TNC), but the relevance of TNC remained to be defined. Methods: EVs were characterized by nanotracking analysis, microscopy and western blotting. The uptake of EVs by cells was studied using flow cytometry. The effects of EVs on breast cancer cells were tested in migration, invasion, colony formation and in vivo assays. Results: EVs were taken up by cells; however, only those containing TNC promoted invasiveness. In vivo, EVs lacking TNC ceased to promote tumor growth. Conclusion: CAV1 and TNC contained in breast cancer cell-derived EVs were identified as proteins that favor progression of breast cancer. </jats:p>Scopus© Citations 7 1 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, ADAR1 Transcriptome editing promotes breast cancer progression through the regulation of cell cycle and DNA damage response(2020) ;Eduardo A. Sagredo ;Alfredo I. Sagredo ;Alejandro Blanco ;Pamela Rojas De SantiagoScopus© Citations 28 2 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Scopus© Citations 18 5 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Lactadherin: From a Well-Known Breast Tumor Marker to a Possible Player in Extracellular Vesicle-Mediated Cancer Progression(2022) ;Eduardo Durán-Jara ;Tamara Vera-TobarLorena De Lourdes Lobos-González<jats:p>Lactadherin is a secreted glycoprotein associated with the milk fat globule membrane, which is highly present in the blood and in the mammary tissue of lactating women. Several biological functions have been associated with this protein, mainly attributable to its immunomodulatory role promoting phagocyte-mediated clearance of apoptotic cells. It has been shown that lactadherin also plays important roles in cell adhesion, the promotion of angiogenesis, and tissue regeneration. On the other hand, this protein has been used as a marker of breast cancer and tumor progression. Recently, high levels of lactadherin has been associated with poor prognosis and decreased survival, not only in breast cancer, but also in melanoma, ovarian, colorectal, and other types of cancer. Although the mechanisms responsible for the tumor-promoting effects attributed to lactadherin have not been fully elucidated, a growing body of literature indicates that lactadherin could be a promising therapeutic target and/or biomarker for breast and other tumors. Moreover, recent studies have shown its presence in extracellular vesicles derived from cancer cell lines and cancer patients, which was associated with cancer aggressiveness and worse prognosis. Thus, this review will focus on the link between lactadherin and cancer development and progression, its possible use as a cancer biomarker and/or therapeutic target, concluding with a possible role of this protein in cellular communication mediated by extracellular vesicles</jats:p>Scopus© Citations 14 4 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Increase in ADAR1p110 activates the canonical Wnt signaling pathway associated with aggressive phenotype in triple negative breast cancer cells(2022) ;Fernanda Morales ;Paola Pérez ;Julio C. Tapia ;Lorena Lobos-GonzálezJosé Manuel Herranz2Scopus© Citations 12