{"id":283752,"date":"2024-08-19T12:22:17","date_gmt":"2024-08-19T10:22:17","guid":{"rendered":"https:\/\/dhcp205002.cbm.uam.es\/?page_id=283752"},"modified":"2026-06-24T14:06:53","modified_gmt":"2026-06-24T12:06:53","slug":"biologia-de-las-celulas-madre-en-neurociencia-traslacional","status":"publish","type":"page","link":"https:\/\/www.cbm.uam.es\/index.php\/programas-cientificos\/procesos-fisiologicos-y-patologicos\/neuropatologia-molecular\/biologia-de-las-celulas-madre-en-neurociencia-traslacional\/?lang=es","title":{"rendered":"Biolog\u00eda de las c\u00e9lulas madre en neurociencia traslacional"},"content":{"rendered":"<p>[et_pb_section fb_built=&#8221;1&#8243; _builder_version=&#8221;4.27.0&#8243; _module_preset=&#8221;default&#8221; background_color=&#8221;#34609B&#8221; background_image=&#8221;https:\/\/www.cbm.uam.es\/wp-content\/uploads\/2024\/07\/iStock-1356994685small-scaled.jpg&#8221; background_position=&#8221;bottom_center&#8221; background_vertical_offset=&#8221;32%&#8221; min_height=&#8221;352px&#8221; height=&#8221;294px&#8221; da_disable_devices=&#8221;off|off|off&#8221; global_colors_info=&#8221;{}&#8221; da_is_popup=&#8221;off&#8221; da_exit_intent=&#8221;off&#8221; da_has_close=&#8221;on&#8221; da_alt_close=&#8221;off&#8221; da_dark_close=&#8221;off&#8221; da_not_modal=&#8221;on&#8221; da_is_singular=&#8221;off&#8221; da_with_loader=&#8221;off&#8221; da_has_shadow=&#8221;on&#8221;][et_pb_row column_structure=&#8221;2_5,3_5&#8243; use_custom_gutter=&#8221;on&#8221; gutter_width=&#8221;4&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; background_color=&#8221;RGBA(255,255,255,0)&#8221; custom_margin=&#8221;61px||||false|false&#8221; custom_padding=&#8221;||0px|||&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;2_5&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; background_color=&#8221;rgba(52,96,155,0.83)&#8221; custom_padding=&#8221;50px||50px|50px|false|false&#8221; border_radii=&#8221;on|15px|15px|15px|15px&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_text _builder_version=&#8221;4.25.0&#8243; _module_preset=&#8221;default&#8221; text_text_color=&#8221;#FFFFFF&#8221; custom_margin=&#8221;0px||10px||false|false&#8221; custom_padding=&#8221;0px||0px||false|false&#8221; global_colors_info=&#8221;{}&#8221;]<\/p>\n<p>Scientific Program<\/p>\n<p>[\/et_pb_text][et_pb_heading title=&#8221;Physiological and pathological processes&#8221; _builder_version=&#8221;4.27.0&#8243; _module_preset=&#8221;default&#8221; title_font=&#8221;Montserrat||||||||&#8221; title_text_color=&#8221;#FFFFFF&#8221; title_font_size=&#8221;43px&#8221; global_colors_info=&#8221;{}&#8221;][\/et_pb_heading][\/et_pb_column][et_pb_column type=&#8221;3_5&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; custom_padding=&#8221;157px||||false|false&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_text _builder_version=&#8221;4.25.0&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;]<\/p>\n<h4 style=\"text-align: center\"><span style=\"color: #13b5bd\">UNITS IN THIS PROGRAM<br \/>\n<\/span><\/h4>\n<hr \/>\n<h6 style=\"text-align: center\"><span style=\"color: #13b5bd\"><br \/>\n<a href=\"\/index.php\/scientific-programs\/physiological-and-pathological-processes\/molecular-neuropathology\/\">Molecular neuropathology<\/a><\/span>\u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0<span style=\"color: #abb8c3\"><a href=\"\/index.php\/scientific-programs\/physiological-and-pathological-processes\/metabolic-and-signaling-networks-in-disease\/\">Metabolic and signaling networks in disease<\/a><\/span><\/h6>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][\/et_pb_section][et_pb_section fb_built=&#8221;1&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; background_enable_image=&#8221;off&#8221; background_size=&#8221;custom&#8221; background_image_height=&#8221;84%&#8221; background_position=&#8221;bottom_right&#8221; 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custom_margin=&#8221;50px||0px||false|false&#8221; global_colors_info=&#8221;{}&#8221;][\/et_pb_heading][et_pb_blurb title=&#8221;Biolog\u00eda de las c\u00e9lulas madre en neurociencia traslacional&lt;br&gt;&lt;br&gt;&#8221; use_icon=&#8221;on&#8221; font_icon=&#8221;&#xe046;||divi||400&#8243; icon_color=&#8221;#13B5BD&#8221; icon_placement=&#8221;left&#8221; image_icon_width=&#8221;26px&#8221; content_max_width=&#8221;1100px&#8221; content_max_width_tablet=&#8221;1100px&#8221; content_max_width_last_edited=&#8221;off|desktop&#8221; _builder_version=&#8221;4.27.0&#8243; header_level=&#8221;h1&#8243; header_font=&#8221;Montserrat||||||||&#8221; header_text_color=&#8221;#000000&#8243; header_font_size=&#8221;29px&#8221; header_line_height=&#8221;1.4em&#8221; body_font=&#8221;||||||||&#8221; body_font_size=&#8221;15px&#8221; body_line_height=&#8221;1.8em&#8221; image_icon_custom_margin=&#8221;6px||||false|false&#8221; background_layout=&#8221;dark&#8221; custom_margin=&#8221;|||&#8221; custom_padding=&#8221;||14px||false|false&#8221; 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link_option_url_new_window=&#8221;on&#8221; global_colors_info=&#8221;{}&#8221;]<\/p>\n<p style=\"text-align: left\"><a href=\"https:\/\/x.com\/pereiraslab?lang=bg\" target=\"blank\" rel=\"noopener\"><img decoding=\"async\" src=\"\/wp-content\/uploads\/2024\/01\/ico_twitter.png\" width=\"24\" height=\"25\" style=\"margin-top: -2px;margin-left: -2px\" alt=\"\" class=\"wp-image-277817 alignleft size-full\" \/><\/a><br \/>\n<a href=\"https:\/\/orcid.org\/0000-0002-9347-957X\" target=\"blank\" rel=\"noopener\">ORCID<\/a><\/p>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][\/et_pb_section][et_pb_section fb_built=&#8221;1&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; background_color=&#8221;#13B5BD&#8221; custom_margin=&#8221;0px||0px||false|false&#8221; custom_padding=&#8221;0px||0px||false|false&#8221; da_disable_devices=&#8221;off|off|off&#8221; global_colors_info=&#8221;{}&#8221; da_is_popup=&#8221;off&#8221; da_exit_intent=&#8221;off&#8221; da_has_close=&#8221;on&#8221; 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button_text=&#8221;Miembros del grupo&#8221; button_alignment=&#8221;center&#8221; _builder_version=&#8221;4.25.0&#8243; _module_preset=&#8221;default&#8221; custom_button=&#8221;on&#8221; button_bg_color=&#8221;#34609B&#8221; custom_padding=&#8221;|44px||44px|false|true&#8221; animation_style=&#8221;zoom&#8221; global_colors_info=&#8221;{}&#8221;][\/et_pb_button][\/et_pb_column][et_pb_column type=&#8221;1_3&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_button button_url=&#8221;#publica&#8221; button_text=&#8221;Publicaciones&#8221; button_alignment=&#8221;center&#8221; _builder_version=&#8221;4.25.0&#8243; _module_preset=&#8221;default&#8221; custom_button=&#8221;on&#8221; button_bg_color=&#8221;#34609B&#8221; animation_style=&#8221;zoom&#8221; global_colors_info=&#8221;{}&#8221;][\/et_pb_button][\/et_pb_column][\/et_pb_row][\/et_pb_section][et_pb_section fb_built=&#8221;1&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; background_enable_image=&#8221;off&#8221; background_size=&#8221;custom&#8221; background_image_height=&#8221;84%&#8221; background_position=&#8221;bottom_right&#8221; custom_margin=&#8221;0px||0px||false|false&#8221; custom_padding=&#8221;0px||15px||false|false&#8221; da_disable_devices=&#8221;off|off|off&#8221; global_colors_info=&#8221;{}&#8221; da_is_popup=&#8221;off&#8221; da_exit_intent=&#8221;off&#8221; da_has_close=&#8221;on&#8221; da_alt_close=&#8221;off&#8221; da_dark_close=&#8221;off&#8221; da_not_modal=&#8221;on&#8221; da_is_singular=&#8221;off&#8221; da_with_loader=&#8221;off&#8221; da_has_shadow=&#8221;on&#8221;][et_pb_row column_structure=&#8221;1_2,1_2&#8243; use_custom_gutter=&#8221;on&#8221; gutter_width=&#8221;2&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; custom_margin=&#8221;20px||||false|false&#8221; custom_padding=&#8221;||||false|false&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;1_2&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_text admin_label=&#8221;resumen&#8221; module_id=&#8221;resumen&#8221; module_class=&#8221;resumen&#8221; _builder_version=&#8221;4.27.0&#8243; _module_preset=&#8221;default&#8221; text_font_size=&#8221;15px&#8221; text_line_height=&#8221;1.8em&#8221; background_color=&#8221;#f1f8fe&#8221; custom_padding=&#8221;20px|20px|20px|20px|true|false&#8221; border_width_top=&#8221;1px&#8221; border_color_top=&#8221;#008C93&#8243; border_width_bottom=&#8221;1px&#8221; border_color_bottom=&#8221;#008C93&#8243; global_colors_info=&#8221;{}&#8221;]<\/p>\n<p style=\"text-align: justify\">Our research focuses on developing 3D brain organoids from human stem cells to complement animal models and 2D cultures in neuroscience. By utilizing bioengineering techniques, we enhance the features of these organoids to study cell-cell interactions, aiming to create more accurate and reproducible models for designing therapies for neurodegenerative diseases.<\/p>\n<p>[\/et_pb_text][\/et_pb_column][et_pb_column type=&#8221;1_2&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; custom_padding=&#8221;||||false|false&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_image src=&#8221;https:\/\/www.cbm.uam.es\/wp-content\/uploads\/2026\/06\/Graphical-abstract-Pereira.png&#8221; title_text=&#8221;Graphical abstract Pereira&#8221; _builder_version=&#8221;4.27.6&#8243; _module_preset=&#8221;default&#8221; animation_style=&#8221;zoom&#8221; global_colors_info=&#8221;{}&#8221;][\/et_pb_image][\/et_pb_column][\/et_pb_row][et_pb_row column_structure=&#8221;3_5,2_5&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; custom_margin=&#8221;||||false|false&#8221; custom_padding=&#8221;0px||||false|false&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;3_5&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_heading title=&#8221;Investigaci\u00f3n&#8221; module_id=&#8221;investiga&#8221; _builder_version=&#8221;4.25.0&#8243; _module_preset=&#8221;default&#8221; custom_margin=&#8221;0px|||0px|false|false&#8221; custom_padding=&#8221;3px|||8px|false|false&#8221; border_width_left=&#8221;6px&#8221; border_color_left=&#8221;#34609B&#8221; global_colors_info=&#8221;{}&#8221;][\/et_pb_heading][et_pb_text _builder_version=&#8221;4.27.0&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;]<\/p>\n<p style=\"text-align: justify\">Research in animal models of neurodegenerative diseases has demonstrated that stem cells elicit beneficial effects through mechanisms such as brain plasticity, rather than mere cell replacement. However, responses varied significantly across species, underscoring the need for human-specific studies due to the unique characteristics of the human brain.<br \/>Our group investigates the biology of stem cells as a source of human neurons and as a therapeutic tool in animal models of neurological disorders, including Parkinson&#8217;s disease. To explore human neuron responses, we focus on generating A9 dopaminergic neurons, which are critically affected in Parkinson&#8217;s disease. We have explored various culture surfaces and found that both material composition and surface topography at nano and micro scales play crucial roles in developing innovative culture systems.<\/p>\n<p>[\/et_pb_text][\/et_pb_column][et_pb_column type=&#8221;2_5&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_image src=&#8221;https:\/\/www.cbm.uam.es\/wp-content\/uploads\/2026\/06\/IMG-20251219-WA0022-scaled-e1780995929333.jpg&#8221; title_text=&#8221;IMG-20251219-WA0022&#8243; _builder_version=&#8221;4.27.6&#8243; _module_preset=&#8221;default&#8221; custom_margin=&#8221;60px||||false|false&#8221; custom_padding=&#8221;|||27px||&#8221; animation_style=&#8221;zoom&#8221; border_width_all=&#8221;3px&#8221; border_color_all=&#8221;#13B5BD&#8221; box_shadow_style=&#8221;preset3&#8243; global_colors_info=&#8221;{}&#8221;][\/et_pb_image][\/et_pb_column][\/et_pb_row][et_pb_row _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; custom_padding=&#8221;0px||||false|false&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;4_4&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_text _builder_version=&#8221;4.27.0&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;]<\/p>\n<p style=\"text-align: justify\">Building on these findings, our efforts are directed towards developing human brain organoids to better understand complex neuronal circuits and diverse neuron phenotypes. In alignment with efforts to minimize the use of laboratory animals for basic research and to expand our knowledge of human neural tissue biology, we have enhanced cerebral organoids with improved features for patterning studies, thereby enhancing their utility in preclinical research.<br \/>Current endeavors include refining scaffold designs by integrating materials and topographies validated in 2D cultures, harnessing their abilities to promote neuronal growth and support electrical conductivity. As brain organoids mature, the lack of glial cell support presents a challenge, prompting initiatives to introduce oligodendrocytes (OLs) derived from human stem cells. These OLs are intended to survive, mature, and potentially myelinate the neuronal networks within organoids, thereby enhancing their functional maturity.<br \/>In summary, our research aims to advance stem cell therapies through a nuanced understanding of human neuron responses, culminating in the development of sophisticated brain organoid models that faithfully replicate human brain complexity. These models enable detailed studies on neurological disorders and facilitate the exploration of therapeutic interventions.<\/p>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][\/et_pb_section][et_pb_section fb_built=&#8221;1&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; background_color=&#8221;rgba(0,0,0,0.04)&#8221; da_disable_devices=&#8221;off|off|off&#8221; global_colors_info=&#8221;{}&#8221; da_is_popup=&#8221;off&#8221; da_exit_intent=&#8221;off&#8221; da_has_close=&#8221;on&#8221; da_alt_close=&#8221;off&#8221; da_dark_close=&#8221;off&#8221; da_not_modal=&#8221;on&#8221; da_is_singular=&#8221;off&#8221; da_with_loader=&#8221;off&#8221; da_has_shadow=&#8221;on&#8221;][et_pb_row _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;4_4&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; 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Nelke et al.<\/p>\n<p>[\/et_pb_text][\/et_pb_column][et_pb_column type=&#8221;1_4&#8243; _builder_version=&#8221;4.23.4&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_image src=&#8221;https:\/\/www.cbm.uam.es\/wp-content\/uploads\/2024\/08\/2_figura-Marta-Perez-Pereira.jpg&#8221; title_text=&#8221; &#8221; url_new_window=&#8221;on&#8221; _builder_version=&#8221;4.27.0&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][\/et_pb_image][\/et_pb_column][et_pb_column type=&#8221;1_4&#8243; _builder_version=&#8221;4.25.0&#8243; _module_preset=&#8221;default&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_text _builder_version=&#8221;4.27.0&#8243; _module_preset=&#8221;default&#8221; link_option_url=&#8221;https:\/\/iopscience.iop.org\/article\/10.1088\/1758-5090\/abc95e\/pdf&#8221; link_option_url_new_window=&#8221;on&#8221; global_colors_info=&#8221;{}&#8221;]<\/p>\n<h3>Next generation human brain models: engineered<br 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developing 3D brain organoids from human stem cells to [&hellip;]<\/p>\n","protected":false},"author":11,"featured_media":0,"parent":283181,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_et_pb_use_builder":"on","_et_pb_old_content":"","_et_gb_content_width":"","footnotes":""},"class_list":["post-283752","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.8 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Biolog\u00eda de las c\u00e9lulas madre en neurociencia traslacional - Centro de Biolog\u00eda Molecular Severo Ochoa<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.cbm.uam.es\/index.php\/programas-cientificos\/procesos-fisiologicos-y-patologicos\/neuropatologia-molecular\/biologia-de-las-celulas-madre-en-neurociencia-traslacional\/?lang=es\" 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