Editorial Board

Dr Rajender Boddula

Dr Rajender Boddula (PhD)

Professor

Department of Research Development Cell and School of Sciences, Woxsen University

India

(Editor-in-Chief)
Say Sreypich
Say Sreypich (Ph.D.)

Professor

Department of Biomedical Science and Engineering, University of Puthisastra

Cambodia

(Editor-Member)
Dr Maryam Farokhi
Dr Maryam Farokhi (PhD)

Professor

Department of Biomedical Engineering, Amir Kabir University of Technology (Tehran Polytechnic)

Iran

(Editor-Member)
Dr Joy Kong
Dr Joy Kong (MD)

Faculty Member

Department of Integrative Cell Therapy, University of California

United States of America

(Editor-Member)
Dr Pradeep Venkatrao Mahajan
Dr Pradeep Venkatrao Mahajan (Diplomat, MBBS)

Professor

Department of Regenerative Medicine and Cell-Based Therapy, Indiana University School of Medicine

India

(Editor-Member)
Dr Rajesh Selvaraj
Dr Rajesh Selvaraj (PhD)

Post Doctoral Researcher

Department of Clinical and Translational Sciences, Marshall University

India

(Editor-Member)

Submit Manuscript

Submit manuscript at Online Submission System or send as an e-mail attachment to the Editorial Office at
support@confmeets.com

About the Journal

The Journal of Stem Cells and Tissue Engineering is a peer-reviewed, international, open-access journal devoted to publishing groundbreaking research and translational advancements in the rapidly evolving areas of regenerative medicine, cellular therapies, and engineered tissues. With the convergence of stem cell biology, biomaterials science, and tissue regeneration, Journal of Stem Cells and Tissue Engineering offers a global platform for scientists, clinicians, engineers, and industry leaders to collaborate, share novel discoveries, and accelerate the development of next-generation therapies that repair, replace, or regenerate damaged tissues and organs.Journal of Stem Cells and Tissue Engineering  welcomes high-quality original research articles, systematic reviews, clinical case reports, technical innovations, and short communications that span a wide array of topics including pluripotent and adult stem cells, mesenchymal stem cells (MSCs), induced pluripotent stem cells (iPSCs), organoids, 3D bioprinting, scaffold design, biofabrication, tissue regeneration, cell signaling pathways, immunomodulation, stem cell-derived exosomes, and clinical translation of regenerative technologies. The journal also emphasizes interdisciplinary approaches that integrate bioengineering, nanotechnology, gene editing (e.g., CRISPR/Cas9), and advanced imaging to unlock new frontiers in personalized regenerative medicine.All submitted manuscripts undergo a stringent single-blind peer-review process to ensure scientific rigor, reproducibility, and relevance to both academic and clinical audiences. Our open-access publishing model allows immediate and unrestricted access to published content, enabling global collaboration, knowledge dissemination, and equitable access to research findings   especially in low-resource and emerging scientific communities. Journal of Stem Cells and Tissue Engineering actively promotes translational studies, first-in-human trials, and ethical perspectives on cell-based therapies, regulatory compliance, and biomanufacturing standards.In an era where science is pushing the limits of what’s biologically possible, the Journal of Stem Cells and Tissue Engineering provides a trusted and visionary platform to turn scientific potential into therapeutic reality. Whether you're engineering functional tissues, exploring stem cell-based treatments for neurodegeneration, advancing wound healing technologies, or scaling up regenerative biomanufacturing   Journal of Stem Cells and Tissue Engineering is your space to lead, influence, and transform the future of medicine and human health.

Aim and Scope

The Journal of Stem Cells and Tissue Engineering publishes original research articles, reviews, short communications, case studies, and technical notes covering all major areas of stem cell science, regenerative medicine, and tissue engineering. Submissions are welcome across the following thematic domains (but not limited to):

Stem Cell Biology & Fundamental Stem Cell Science

  • Stem cell identity, potency, and lineage specification
  • Self-renewal, differentiation mechanisms, and cell fate regulation
  • Genomic, epigenomic, and transcriptomic control of stem cells
  • Stem cell niches, microenvironment, and signaling pathways
  • Cellular reprogramming, pluripotency, and induced pluripotent stem cells (iPSCs)

Embryonic, Adult & Induced Pluripotent Stem Cells

  • Embryonic stem cell (ESC) maintenance and differentiation
  • Adult stem cells: mesenchymal, hematopoietic, neural, epithelial, and cardiac
  • iPSC technology, disease modeling, and personalized cell therapies
  • Comparative stem cell biology across species
  • Ethical, regulatory, and safety issues in stem cell research

Regenerative Medicine & Translational Stem Cell Therapy

  • Stem cell–based regenerative strategies for tissue and organ repair
  • Clinical-grade stem cell processing, GMP manufacturing, and transplantation
  • Stem cell therapy for degenerative, metabolic, neurological, and cardiovascular diseases
  • Immunomodulation, immune compatibility, and host–graft interactions
  • Preclinical models, translational protocols, and clinical trial developments

Tissue Engineering & Biomaterial Science

  • Scaffold design, biomaterials, and nanomaterials for tissue regeneration
  • Hydrogels, biopolymers, and bioactive matrices
  • Tissue scaffolds for bone, cartilage, skin, nerve, liver, and cardiac repair
  • Biodegradable materials, biofabrication, and smart biomaterials
  • Material–cell interactions, mechanical signaling, and matrix engineering

3D Bioprinting, Biofabrication & Organoids

  • 3D bioprinting technologies, bioinks, and custom tissue constructs
  • Organ-on-a-chip, microphysiological systems, and lab-grown tissues
  • Organoids and spheroids for modeling development, disease, and drug response
  • Multi-material bioprinting and vascularized tissue design
  • Automation, robotics, and high-throughput tissue fabrication

Cellular Engineering, Gene Editing & Synthetic Biology

  • Gene editing using CRISPR/Cas, base editing, prime editing
  • Gene-modified stem cells and engineered tissue constructs
  • Synthetic biology circuits for controlled cell behavior
  • Genome manipulation, reprogramming, and lineage conversion
  • Safety, off-target effects, and engineered-cell therapeutics

Tissue Development, Repair & Regeneration Biology

  • Molecular mechanisms of tissue formation, patterning, and homeostasis
  • Wound healing, fibrosis, and tissue repair pathways
  • Angiogenesis, neurogenesis, osteogenesis, and chondrogenesis
  • Mechanical forces, mechanobiology, and biophysical regulation
  • Regeneration in model organisms and comparative regenerative biology

Stem Cell–Disease Interactions & Disease Modeling

  • Stem cell models for cancer, genetic disorders, metabolic disease, and infection
  • Cancer stem cells, tumor microenvironment, and metastasis mechanisms
  • iPSC-derived disease models and precision medicine approaches
  • Drug screening, toxicity testing, and functional assays
  • Patient-specific and organ-specific disease modeling

Biomedical Engineering & Bioinstrumentation

  • Microfluidics, biosensors, and lab-on-chip platforms
  • Biomechanics of tissues and engineered constructs
  • Real-time imaging, advanced microscopy, and molecular tracking
  • Integrative engineering approaches for regenerative systems
  • Computational modeling, simulation, and digital twin biology

Stem Cell Immunology & Cellular Interactions

  • Immune regulation of stem cells and engineered tissues
  • Host–graft interactions, rejection, and tolerance mechanisms
  • Inflammatory microenvironments and regeneration failure
  • Immune-based regenerative therapies
  • Crosstalk between stem cells, stromal cells, and immune cells

Clinical Applications, Biotechnology & Industry

  • Stem cell–based therapeutic development and commercialization
  • Bioprocess engineering, cell expansion, and biomanufacturing
  • Regulatory frameworks, biosafety, and ethical considerations
  • Cryopreservation, cell banking, and quality control systems
  • Industrial-scale tissue engineering and regenerative products

Emerging & Interdisciplinary Technologies

  • AI/ML integration for stem cell analysis, fate prediction, and tissue design
  • Spatial omics, single-cell sequencing, and multi-omics integration
  • Nanotechnology for targeted delivery, sensing, and nanoscale tissue repair
  • Wearable and implantable bioengineered systems
  • Next-generation regenerative strategies and future innovations

Editorial and Peer-Review Policy

Journal of Stem Cells and Tissue Engineering employs a single-blind peer-review process to maintain fairness, scientific integrity, and the quality of published work.

Key Features:

  • Every manuscript is assessed by at least two independent subject experts, along with editorial oversight.
  • Reviewers can see author details, but the identities of the authors remain hidden from them.
  • The review criteria focus on originality, technical strength, methodological accuracy, ethical compliance, clarity, and relevance to the field of nanoscience.
  • All submissions go through plagiarism checks and ethical evaluations before the peer-review process.
  • Final decisions on publication are made by the handling editor, based on the reviewers' evaluations and the overall quality of the manuscript.

Publication Frequency & Format

This journal comes out three times a year. Once articles are accepted, they're quickly made available online in both HTML and PDF formats, ensuring fast and easy access to research findings.

Open Access Policy

Journal of Stem Cells and Tissue Engineering embraces a gold open access model, meaning all published articles are freely accessible to everyone. Authors retain the copyright to their work, shared under a suitable open-access license to promote transparency, collaboration, and global knowledge-sharing.

Indexing & Archiving

The journal aims to be included in well-known scientific indexing and abstracting databases. All content is preserved through trusted archiving systems to ensure long-term accessibility and discoverability.

For Manuscript Submission

Authors can submit their manuscripts through the journal's Online Submission System (Submit Manuscript) or by emailing the Editorial Office at support@globalmeetx.com.

Submitted manuscripts must adhere to the Journal of Stem Cells and Tissue Engineering Author Guidelines, which cover structure, formatting, ethical approvals, and conflict-of-interest disclosures.

Publication Ethics & Integrity

Journal of Stem Cells and Tissue Engineering is committed to maintaining the highest publication ethics standards in accordance with COPE principles. Authors must ensure proper ethical approvals for studies involving humans, animals, or sensitive materials, and follow informed consent and confidentiality practices. They must also disclose conflicts of interest and funding support, report data accurately, and acknowledge contributor roles.

All submissions undergo plagiarism checks, and the journal has a strict policy for corrections, retractions, and post-publication updates.

JOURNAL PARTICULARS

Title Journal of Stem Cells and Tissue Engineering
Frequency Tri-Annual (Three issues per year)
ISSN Coming Soon
Publisher Name Confmeets Publishing
Publisher Address Radha Residency, 4th Floor, Sai Priya Gardens,Madhurawada,Visakhapatnam, 530041, Andhra Pradesh, India
Starting Year 2025
Subject Biotechnology
Language English
Publication Format Online
Email ID support@confmeets.com
Mobile No. (+91) 9177731784

Current Issue Highlights

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Journals Indexed In

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Article Processing Timeline

2-5 Days Initial Quality & Plagiarism Check
15
Days
Peer Review Feedback
85% Acceptance Rate (after peer review)
30-45 Days Total article processing time

Indexed In

Google Scholar
ResearchBib
Sindexs
OAJI
DOAJ
CrossRef
PubMed
MEDLINE
EBSCO A-Z / Host
OCLC - WorldCat

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