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  • دکتری (1397)

    دکتری پیوسته بیوتکنولوژی، گرایش پزشکی

    دانشگاه تهران، تهران، ایران

  • کاربرد سلول‌های بنیادی و مشتقات آن‌ها در مدل‌سازی بیماری‌ها (به طور ویژه بیماری‌های قلبی‌عروقی و خونی)
  • تولید ساختارهای سه‌بعدی شبه‌بافتی برای مدل‌سازی بیماری‌ها (به طور ویژه بیماری‌های قلبی‌عروقی و خونی)
  • کاربرد سلول‌های بنیادی و مشتقات آن‌ها در پزشکی بازساختی و یافتن روش درمان بیماری‌ها (به طور ویژه بیماری‌های قلبی‌عروقی و خونی)
  • پيش‌بيني و آناليز كامپيوتري داده‌های مولکولی زیستی با روش‌هاي بيوانفورماتيك

    صدف وحدت حائز رتبه 22 کشوری (12 منطقه یک) در کنکور ورودی دانشگاه‌ها در رشته علوم تجربی سال 1385 است که برای تحصیل رشته دکتری پیوسته بیوتکنولوژی در دانشگاه تهران را انتخاب نمود. در سال 1386 به عنوان پژوهشگر به گروه قلب و عروق پژوهشگاه رویان پیوست و تا سال 1397 در چندین مطالعه تحقیقاتی و بالینی در حوزه بیماری‌های قلب و عروق با هدایت دکتر حسین بهاروند و دکتر ناصر اقدمی، مشارکت نمود. او در سال 1397 از رشته دکتری پیوسته بیوتکنولوژی، گرایش پزشکی فارغ‌التحصیل شد و رساله دکتری او در نوزدهمین جشنواره ملی پایان‌نامه سال دانشجویی به عنوان اثر شایسته تقدیر انتخاب گردید. از سال 1398 به عنوان عضو هیات علمی تمام وقت در رشته علوم سلول کاربردی در گروه خون‌شناسی دانشکده علوم پزشکی دانشگاه تربیت مدرس مشغول به فعالیت است. صدف وحدت در نگارش و ترجمه کتب متعدد همکاری داشته است و دارای یک ثبت اختراع ملی است. او موفق به دریافت جایزه دکتر کاظمی آشتیانی بنیاد ملی نخبگان در سال 1401 شد.

    ارتباط

    رزومه

    Concurrent application of conductive biopolymeric chitosan/polyvinyl alcohol/MWCNTs nanofibers, intracellular signaling manipulating molecules and electrical stimulation for …

    A Abedi, B Bakhshandeh, A Babaie, J Mohammadnejad, S Vahdat, ...
    Journal Papers , , {Pages }

    Abstract

    VEGF Sustained Delivery AugmentedCell Therapy Outcomes of Cardiac Progenitor Cells for Myocardial Infarction

    Leila Montazeri, Motahareh Sobat, Reza Kowsari‐Esfahan, Shahram Rabbani, Hassan Ansari, Maryam Barekat, Saman Firoozi, Sarah Rajabi, Sadaf Vahdat, Hossein Baharvand, Sara Pahlavan
    Journal PapersJournal of Tissue Engineering and Regenerative Medicine , 2020 September 4, {Pages }

    Abstract

    Cell therapy has become a novel promising approach for improvement of cardiac functional capacity in the instances of ventricular remodeling and fibrosis caused by episodes of coronary artery occlusion and hypoxia. The challenge toward enhancing cell engraftment as well as formation of functional tissue, however, necessitated combinatorial approaches. Here, we complemented human embryonic stem cells‐derived cardiac progenitor cells (hESC‐CPC) therapy by heparin‐conjugated, VEGF‐loaded fibrin hydrogel as VEGF delivery system. Transplantation of this cardiac committed cells along with sustained VEGF release could surpass the cardiac repair effects of each constituent alone in a rat model of acute myocardial infarction. The histologic

    Multifunctional Conductive Biomaterials as Promising Platforms for Cardiac Tissue Engineering

    Ali Mousavi, Sadaf Vahdat, Nafiseh Baheiraei, Mehdi Razavi, Mohammad Hadi Norahan, Hossein Baharvand
    Journal Papers , 2020 December 14, {Pages }

    Abstract

    Adult cardiomyocytes are terminally differentiated cells that result in minimal intrinsic potential for the heart to self-regenerate. The introduction of novel approaches in cardiac tissue engineering aims to repair damages from cardiovascular diseases. Recently, conductive biomaterials such as carbon- and gold-based nanomaterials, conductive polymers, and ceramics that have outstanding electrical conductivity, acceptable mechanical properties, and promoted cell–cell signaling transduction have attracted attention for use in cardiac tissue engineering. Nevertheless, comprehensive classification of conductive biomaterials from the perspective of cardiac cell function is a subject for discussion. In the present review, we classify and summa

    Vascular endothelial growth factor sustained delivery‐augmented cell therapy outcomes of cardiac progenitor cells for myocardial infarction

    Leila Montazeri, Motahareh Sobat, Reza Kowsari‐Esfahan, Shahram Rabbani, Hassan Ansari, Maryam Barekat, Saman Firoozi, Sarah Rajabi, Sadaf Vahdat, Hossein Baharvand, Sara Pahlavan
    Journal PapersJournal of Tissue Engineering and Regenerative Medicine , 2020 November 8, {Pages }

    Abstract

    Cell therapy has become a novel promising approach for improvement of cardiac functional capacity in the instances of ventricular remodeling and fibrosis caused by episodes of coronary artery occlusion and hypoxia. The challenge toward enhancing cell engraftment as well as formation of functional tissue, however, necessitated combinatorial approaches. Here, we complemented human embryonic stem cell‐derived cardiac progenitor cell (hESC‐CPC) therapy by heparin‐conjugated, vascular endothelial growth factor (VEGF)‐loaded fibrin hydrogel as VEGF delivery system. Transplantation of these cardiac committed cells along with sustained VEGF release could surpass the cardiac repair effects of each constituent alone in a rat model of acute m

    Vascular endothelial growth factor sustained delivery augmented cell therapy outcomes of cardiac progenitor cells for myocardial infarction

    L Montazeri, M Sobat, R Kowsari‐Esfahan, S Rabbani, H Ansari, ...
    Journal Papers , , {Pages }

    Abstract

    VEGF Sustained Delivery AugmentedCell Therapy Outcomes of Cardiac Progenitor Cells for Myocardial Infarction.

    L Montazeri, M Sobat, R Kowsari‐Esfahan, S Rabbani, H Ansari, ...
    Journal Papers , , {Pages }

    Abstract

    Chitosan-PVA-CNT nanofibers as electrically conductive scaffolds for cardiovascular tissue engineering

    Shabnam Mombini, Javad Mohammadnejad, Behnaz Bakhshandeh, Asghar Narmani, Jhamak Nourmohammadi, Sadaf Vahdat, Shahrzad Zirak
    Journal PapersInternational journal of biological macromolecules , Volume 140 , 2019 November 1, {Pages 278-287 }

    Abstract

    Conductive scaffolds are suitable candidates for cardiovascular tissue engineering (CTE) due to their similarity to the extracellular matrix of native tissue. Here, nanofiber scaffolds based on polyvinyl alcohol (PVA), chitosan (CS), and different concentrations of carbon nanotube (CNT) were produced using electrospinning. Scanning electron microscopy (SEM) image, mechanical test (elastic modulus: 130 ? 3.605 MPa), electrical conductivity (3.4 ? 10−6 S/Cm), water uptake, cell adhesion, and cell viability (>80%) results of the PVA-CS-CNT1 scaffold revealed that the nanofiber containing 1% of CNT has optimal properties for cardiac differentiation. Afterwards, the differentiation of rat mesenchymal stem cells (MSCs) to cardiomyoc

    Establishment of a protocol for in vitro culture of cardiogenic mesodermal cells derived from human embryonic stem cells

    Sadaf Vahdat, Sara Pahlavan, Nasser Aghdami, Behnaz Bakhshandeh, Hossein Baharvand
    Journal PapersCell Journal (Yakhteh) , Volume 20 , Issue 4, 2019 January , {Pages 496 }

    Abstract

    ObjectiveCardiovascular progenitor cells (CPCs) are introduced as one of the promising cell sources for preclinical studies and regenerative medicine. One of the earliest type of CPCs is cardiogenic mesoderm cells (CMCs), which have the capability to generate all types of cardiac lineage derivatives. In order to benefit from CMCs, development of an efficient culture strategy is required. We aim to explore an optimized culture condition that uses human embryonic stem cell (hESC)-derived CMCs.Materials and MethodsIn this experimental study, hESCs were expanded and induced toward cardiac lineage in a suspension culture. Mesoderm posterior 1-positive (MESP1+) CMCs were subjected to four different culture conditions: i. Suspension culture of CMC

    expansion of Human pluripotent Stem cell-derived early cardiovascular progenitor cells by a cocktail of Signaling factors

    Sadaf Vahdat, Sara Pahlavan, Elena Mahmoudi, Maryam Barekat, Hassan Ansari, Behnaz Bakhshandeh, Nasser Aghdami, Hossein Baharvand
    Journal PapersScientific reports , Volume 9 , Issue 1, 2019 November 5, {Pages 14-Jan }

    Abstract

    Cardiovascular progenitor cells (CPCs) derived from human pluripotent stem cells (hPSCs) are proposed to be invaluable cell sources for experimental and clinical studies. This wide range of applications necessitates large-scale production of CPCs in an in vitro culture system, which enables both expansion and maintenance of these cells. In this study, we aimed to develop a defined and efficient culture medium that uses signaling factors for large-scale expansion of early CPCs, called cardiogenic mesodermal cells (CMCs), which were derived from hPSCs. Chemical screening resulted in a medium that contained a reproducible combination of three factors (A83-01, bFGF, and CHIR99021) that generated 10 14 CMCs after 10 passages without the propensi

    Cardioprotective effects of omega‐3 fatty acids and ascorbic acid improve regenerative capacity of embryonic stem cell‐derived cardiac lineage cells

    Parisa Shabani, Zaniar Ghazizadeh, Sattar Gorgani‐Firuzjaee, Mohammad Molazem, Sarah Rajabi, Sadaf Vahdat, Yaser Azizi, Mahmood Doosti, Nasser Aghdami, Hossein Baharvand
    Journal PapersBioFactors , Volume 45 , Issue 3, 2019 May , {Pages 427-438 }

    Abstract

    One of the major issues in cell therapy of myocardial infarction (MI) is early death of engrafted cells in a harsh oxidative stress environment, which limits the potential therapeutic utility of this strategy in the clinical setting. Increasing evidence implicates beneficial effects of omega‐3 fatty acids including eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) and ascorbic acid (AA) in cardiovascular diseases, in particular their role in ameliorating fibrosis. In the current study, we aim to assess the cytoprotective role of EPA + DHA and AA in protecting embryonic stem cell (ESC)‐derived cardiac lineage cells and amelioration of fibrosis. Herein, we have shown that preincubation of the cells with EPA + DHA + A

    Prediction of putative small molecules for manipulation of enriched signalling pathways in hESC-derived early cardiovascular progenitors by bioinformatics analysis

    Sadaf Vahdat, Behnaz Bakhshandeh
    Journal PapersIET Systems Biology , Volume 13 , Issue 2, 2018 September 25, {Pages 77-83 }

    Abstract

    Human pluripotent stem cell-derived cardiovascular progenitor cells (CPCs) are considered as powerful tools for cardiac regenerative medicine and developmental study. Mesoderm posterior1+ (MESP1+) cells are identified as the earliest CPCs from which almost all cardiac cell types are generated. Molecular insights to the transcriptional regulatory factors of early CPCs are required to control cell fate decisions. Herein, the microarray data set of human embryonic stem cells (hESCs)-derived MESP1+ cells was analysed and differentially expressed genes (DEGs) were identified in comparison to undifferentiated hESCs and MESP1-negative cells. Then, gene ontology and pathway enrichment analysis of DEGs were carried out with the subsequent prediction

    A Review on Inner Ear Tissue Engineering

    Ameneh Mehri, Ali Shojaeian, Leila Rezakhani
    Journal Papers , Volume 5 , Issue 3, 2018 January , {Pages 09-Jan }

    Abstract

    Ear defects and hearing loss are still one of the challenging problems in medicine. Tissue engineering approaches are considered as promising and efficient tools for such problems. Tissue engineering is considered a newly appearing biomedical technology, which could repair and regenerate inadequate or injured tissues. It utilizes the principles from the areas of cell biology and transplantation, materials science and engineering to treat or replace injured tissues. Different types of cell sources, growth factors or signals, materials or scaffolds and different methods have been studied to repair or replace different parts of ear and restore its function and hearing. In this review we present recent such elements studied or proposed for inne

    Optimization of Animal Sera-Free Culture Condition for Generation and Expansion of Human Cardiosphere-Derived Cells

    S Vahdat, F Abbasi, V Azimian, T Bolurieh, N Jaroughi, S Mardpour, ...
    Journal Papers , , {Pages }

    Abstract

    Preparation of a porous conductive scaffold from aniline pentamer‐modified polyurethane/PCL blend for cardiac tissue engineering

    Nafiseh Baheiraei, Hamid Yeganeh, Jafar Ai, Reza Gharibi, Somayeh Ebrahimi‐Barough, Mahmoud Azami, Sadaf Vahdat, Hossein Baharvand
    Journal PapersJournal of biomedical materials research Part A , Volume 103 , Issue 10, 2015 October , {Pages 3179-3187 }

    Abstract

    A novel biodegradable electroactive polyurethane containing aniline pentamer (AP) was blended with polycaprolactone (PCL). The prepared blend (PB) and PCL were further fabricated in to scaffolds using a mixture of poly(ethylene glycol) and salt particles in a double porogen particulate leaching and compression molding methodology. Scaffolds held open and interconnected pores having pore size ranging from several μm to 150 ?m. PB scaffolds had compression modulus and strength of 4.1 and 1.3 MPa, respectively. The conductivity of the scaffold was measured as 10−5 ? 0.09 S?.cm−1 and preserved for at least 100 h post fabrication. Scaffolds supported neonatal cardiomyocytes adhesion and growth with PB showing more extensive effect on the e

    Cellular and molecular characterization of human cardiac stem cells reveals key features essential for their function and safety

    Sadaf Vahdat, Seyed Ahmad Mousavi, Gholamreza Omrani, Maziar Gholampour, Fattah Sotoodehnejadnematalahi, Zaniar Ghazizadeh, Javad Gharechahi, Hossein Baharvand, Ghasem Hosseini Salekdeh, Nasser Aghdami
    Journal PapersStem cells and development , Volume 24 , Issue 12, 2015 June 15, {Pages 1390-1404 }

    Abstract

    Cell therapy of heart diseases is emerging as one of the most promising known treatments in recent years. Transplantation of cardiac stem cells (CSCs) may be one of the best strategies to cure adult or pediatric heart diseases. As these patient-derived stem cells need to be isolated from small heart biopsies, it is important to select the best isolation method and CSC subpopulation with the best cardiogenic functionality. We employed three different protocols including c-KIT+ cell sorting, clonogenic expansion, and explants culture to isolate c-KIT+ cells, clonogenic expansion-derived cells (CEDCs), and cardiosphere-derived cells (CDCs), respectively. Evaluation of isolated CSC characteristics in vitro and after rat myocardial infarction (M

    Isolation and characterization of cardiogenic, stem-like cardiac precursors from heart samples of patients with congenital heart disease

    Zaniar Ghazizadeh, Sadaf Vahdat, Faranak Fattahi, Hananeh Fonoudi, Gholamreza Omrani, Maziar Gholampour, Nasser Aghdami
    Journal PapersLife sciences , Volume 137 , 2015 September 15, {Pages 105-115 }

    Abstract

    AimsRegenerative therapies based on resident human cardiac progenitor cells (hCPCs) are a promising alternative to medical treatments for patients with myocardial infarction. However, hCPCs are rare in human heart and finding efficient source and proper surface marker for isolation of these cells would make them a good candidate for therapy.Main methodsWe have isolated 5.34?∗?106???2.04?∗?105/g viable cells from 35 heart tissue samples of 23 patients with congenital heart disease obtained during their heart surgery along with 6 samples from 3 normal subjects during cardiac biopsy.Key findingsAccording to FACS analysis, younger ages, atrial specimen and disease with increased pulmonary vascular resistance were associated with higher perc

    The behavior of cardiac progenitor cells on macroporous pericardium-derived scaffolds

    Sareh Rajabi-Zeleti, Sasan Jalili-Firoozinezhad, Mahnaz Azarnia, Fahimeh Khayyatan, Sadaf Vahdat, Saman Nikeghbalian, Ali Khademhosseini, Hossein Baharvand, Nasser Aghdami
    Journal PapersBiomaterials , Volume 35 , Issue 3, 2014 January 1, {Pages 970-982 }

    Abstract

    Cardiovascular diseases hold the highest mortality rate among other illnesses which reveals the significance of current limitations in common therapies. Three-dimensional (3D) scaffolds have been utilized as potential therapies for treating heart failure following myocardial infarction (MI). In particular, native tissues have numerous properties that make them potentially useful scaffolding materials for recreating the native cardiac extracellular matrix (ECM). Here, we have developed a pericardium-derived scaffold that mimics the natural myocardial extracellular environment and investigated its properties for cardiac tissue engineering. Human pericardium membranes (PMs) were decellularized to yield 3D macroporous pericardium scaffolds (PSs

    Three-Dimensional Pericardium Sponge Improves Proliferation and Differentiation of Sca-1+ Cells.

    S Rajabi Zeleti, S Jalili Firoozinezhad, M Azarnia, F Khayyatan, S Vahdat, S Nikeghbalian, H Baharvand, N Aghdami
    Journal PapersCell Journal (Yakhteh) , Volume 15 , 2013 June 2, {Pages }

    Abstract

    Objective: Cardiovascular diseases hold the highest mortality rate among other illnesses which reveals the significance of current limitations in common therapies. So recently, the role of three-dimensional (3D) scaffolds has been highlighted for heart failure post-myocardial infarction treatment. Natural-based scaffolds which resemble more to the damaged tissue of interest seem to be more suitable for necrotic cardiomyocytes replacement and restoring the damaged extracellular matrix (ECM). Here, we have evaluated the properties and potentials of a novel pericardium-derived scaffold for replacing the myocardium ECM. Materials and Methods: Following the decellularization of human pericardium membrane (PM), a 3D sponge pericardium scaffold (P

    RNA Microarray Analysis Showed Significantly Changed Gene Expression after In Vitro Human Cardiac Stem Cells and Satellite Cells Passages.

    S Vahdat, SA Moosavi, M Abrari, V Hajhosseini, J Gharechahi, Gh Hosseini Salekdeh, N Aghdami
    Journal PapersCell Journal (Yakhteh) , Volume 15 , 2013 June 2, {Pages }

    Abstract

    Objective: Increasing rate of morbidity and mortality by heart diseases all over the world attracted scientists' attention to this important medical case. In recent years regenerative medicine has been introduced as an alternative tool for heart repair; and cardiac stem cells (CSCs), precursor cells resident in heart tissue have been investigated as novel sources of heart cell therapy. Such patient derived stem cells need to be isolated from small heart biopsies and expanded in culture to reach the quantity which is required for cell therapy. Although various aspects of adult stem cell transplantation have been well studied, the effects of extensive sub-culturing on the characteristics and phenotype of these cells have remained elusive. Mat

    PERICARDIUM MEMBRANE: WELL SUITED FOR MYOCARDIAL TISSUE ENGINEERING; POSTER PRESENTATION

    ZELETI S RAJABI, M AZARNIA, N AGHDAMI, H BAHARVAND, S VAHDAT, F KHAYATAN
    Journal Papers , Volume 14 , Issue 1, 2012 January 1, {Pages 61-61 }

    Abstract

    Objective: Cardiovascular disease hold the highest mortality rate among other diseases and this fact reveals current limitations of common therapies. In recent decade, role of 3-dimentional scaffolds has been highlighted by their principal contribution in treatment of heart failure postmyocardial infarction. Scaffolds of natural origin which resemble more to the damaged tissue of interest, seems to be more suitable for replacement of necrotic cardiomyocytes and restore of the damaged extracellular matrix. In this study we investigated human pericardium membrane as an appropriate scaffold for myocardial tissue engineering.Materials and Methods: Human pericardium (HP) was treated with standard decellularization solution consist of hypotonic l

    /pro/academic_staff/s_vahdat/publication

    دروس نیمسال جاری

    • دكتري
      بانك سلول و سلول درماني ( واحد)
      دانشکده علوم پزشکی، گروه خون شناسي
    • دكتري
      تكنيك هاي پيشرفته سلولي و مولكولي ( واحد)
    • دكتري
      ترميم زخم ( واحد)
    • كارشناسي ارشد
      اصول و مباني آزمايشهاي مولكولي خونشناسي ( واحد)
    • كارشناسي ارشد
      سلول هاي بنيادي بالغ و هموستازي بافتهاي بدن ( واحد)

    دروس نیمسال قبل

    • كارشناسي ارشد
      بيولوژي سلولي و ملكولي پايه ( واحد)
      دانشکده علوم پزشکی، گروه خون شناسي
    • دكتري
      اصول سلول هاي بنيادي ( واحد)
    • كارشناسي ارشد
      سلولهاي بنيادي و تكوين ( واحد)
    • كارشناسي ارشد
      مهندسي سلولهاي بنيادي ( واحد)
    • 1402
      فهيمي اسكوئي, علي
      بررسي شيوع جهش در ژن TET2 در بيماران لوسمي ميلوئيد حاد و ارتباط احتمالي جهش با پاسخ به درمان بيماران
    • 1403
      يونس, سكينه
    • 1403
      اعرابي, انيتا
    • دبیر علمی مجله Pathobiology Research، فروردین 1400 تاکنون
    • عضو کمیته علمی المپیاد دانش‌آموزی "سلول‌های بنیادی و پزشکی بازساختی"، وزارت آموزش و پرورش با همکاری ستاد توسعه علوم و فناوری‌های سلول‌های بنیادی، 1397-1399
    • طراح سوال المپیاد دانشجویی "سلول‌های بنیادی و مهندسی بافت"، سازمان سنجش با همکاری ستاد توسعه علوم و فناوری‌های سلول‌های بنیادی، 1397 تاکنون
    • داور طرح‌های ارسالی برای جشنواره جوان خوارزمی، بخش دانش‌آموزی، حوزه "سلول‌های بنیادی"، با همکاری ستاد توسعه علوم و فناوری‌های سلول‌های بنیادی، 1398 و 1399
    • داور طرح‌های ارسالی برای جشنواره جوان خوارزمی، بخش دانش‌آموزی، حوزه "علوم زیستی"، با همکاری ستاد توسعه علوم و فناوری‌های سلول‌های بنیادی، 1398 و 1399
    • عضو هیات تحریریه مجله "Applied Tissue Engineering"، از 1396 تا 1398
    • انتخاب رساله دکتری در "نوزدهمین جشنواره ملی پایان‌نامه سال دانشجویی" به عنوان اثر شایسته تقدیر، 1400
    • برگزیده طرح دکتر کاظمی آشتیانی بنیاد ملی نخبگان (استادیاران جوان)، 1401
    • دانش‌آموخته برتر در مقطع کارشناسی ارشد
    • دریافت جایزه بهترین پوستر در نهمین همایش بین‌المللی رویان، 1392
    • دریافت گرنت برای فرصت مطالعاتی بین‌المللی از دانشگاه تهران، 1395
    • رتبه برتر کنکور سراسری (22 کشوری)، رشته علوم تجربی، 1385

    مهم

    جدید

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