Roman Krawetz

Roman Krawetz

University of Calgary

H-index: 35

North America-Canada

About Roman Krawetz

Roman Krawetz, With an exceptional h-index of 35 and a recent h-index of 24 (since 2020), a distinguished researcher at University of Calgary, specializes in the field of Stem Cell Biology, Cartilage, Osteoarthritis.

His recent articles reflect a diverse array of research interests and contributions to the field:

Culture substrate stiffness impacts human myoblast contractility-dependent proliferation and nuclear envelope wrinkling

Dissolvable immunomodulatory microneedles for treatment of skin wounds

Cell and Transcriptomic Diversity of Infrapatellar Fat Pad during Knee Osteoarthritis

Absence of E2f1 Negates Pro-osteogenic Impacts of p21 Absence

CELL AND TRANSCRIPTOMIC ATLAS OF KNEE OA INFRAPATELLAR FAT PAD

Proteoglycan 4 (PRG4) treatment improves skin wound healing in a porcine model

Use of PRG4 as an anti-inflammatory agent

Mesenchymal progenitor cells from non-inflamed versus inflamed synovium post-ACL injury present with distinct phenotypes and cartilage regeneration capacity

Roman Krawetz Information

University

Position

___

Citations(all)

3545

Citations(since 2020)

1818

Cited By

2341

hIndex(all)

35

hIndex(since 2020)

24

i10Index(all)

77

i10Index(since 2020)

57

Email

University Profile Page

University of Calgary

Google Scholar

View Google Scholar Profile

Roman Krawetz Skills & Research Interests

Stem Cell Biology

Cartilage

Osteoarthritis

Top articles of Roman Krawetz

Title

Journal

Author(s)

Publication Date

Culture substrate stiffness impacts human myoblast contractility-dependent proliferation and nuclear envelope wrinkling

Journal of Cell Science

Jo Nguyen

Lu Wang

Wen Lei

Yechen Hu

Nitya Gulati

...

2024/2/12

Dissolvable immunomodulatory microneedles for treatment of skin wounds

Advanced Healthcare Materials

Pejman Ghelich

Mohamadmahdi Samandari

Alireza Hassani Najafabadi

Adam Tanguay

Jacob Quint

...

2024/2/1

Cell and Transcriptomic Diversity of Infrapatellar Fat Pad during Knee Osteoarthritis

bioRxiv

Hayley Peters

Pratibha Potla

Jason S Rockel

Teodora Tockovska

Chiara Pastrello

...

2024

Absence of E2f1 Negates Pro-osteogenic Impacts of p21 Absence

Calcified Tissue International

Priyatha Premnath

Theodore Lun

Humza Siddiqui

Alana Ruth Stahl

Aria Ahadzadeh Ardebili

...

2024/4/21

CELL AND TRANSCRIPTOMIC ATLAS OF KNEE OA INFRAPATELLAR FAT PAD

Osteoarthritis and Cartilage

Hayley Peters

Pratibha Potla

Jason S Rockel

Teodora Tockovska

Keemo Delos Santos

...

2024/4/1

Proteoglycan 4 (PRG4) treatment improves skin wound healing in a porcine model

The FASEB Journal

Nicoletta Ninkovic

Holly D Sparks

Dragana Ponjevic

Greg Muench

Jeff A Biernaskie

...

2024/3/31

Use of PRG4 as an anti-inflammatory agent

2023/8/8

Mesenchymal progenitor cells from non-inflamed versus inflamed synovium post-ACL injury present with distinct phenotypes and cartilage regeneration capacity

Stem Cell Research & Therapy

Roman J Krawetz

Leila Larijani

Jessica May Corpuz

Nicoletta Ninkovic

Nabangshu Das

...

2023/6/25

Exogenously delivered iPSCs disrupt the natural repair response of endogenous MPCs after bone injury

Scientific Reports

Leah Ferrie

Priyatha Premnath

Alexandra Olsen

Leila Larijani

Bryce A Besler

...

2023/6/9

Tryptase β regulation of joint lubrication and inflammation via proteoglycan-4 in osteoarthritis

Nature Communications

Nabangshu Das

Luiz GN de Almeida

Afshin Derakhshani

Daniel Young

Kobra Mehdinejadiani

...

2023/4/6

Suicide gene‐enabled cell therapy: A novel approach to scalable human pluripotent stem cell quality control

Emilie Gysel

Leila Larijani

Michael S Kallos

Roman J Krawetz

2023/11

Robust Bioprocess Design and Evaluation of Commercial Media for the Serial Expansion of Human Induced Pluripotent Stem Cell Aggregate Cultures in Vertical-Wheel Bioreactors

Breanna S Borys

Tiffany Dang

Hannah Worden

Brett D Abraham

Emilie J Gysel

...

2023/8/21

Proteoglycan 4 (PRG4) treatment enhances wound closure and tissue regeneration

NPJ Regenerative Medicine

Roman J Krawetz

Saleem Abubacker

Catherine Leonard

Anand O Masson

Sophia Shah

...

2022/6/24

Prx1+ MPCs Accumulate in the Dura Mater of Wild‐Type and p21−/− Mice Followed by a Specific Reduction in p21−/− Dural MPCs

Advanced Biology

Sophia S Shah

Paul T Salo

Frank G Lyons

Alim P Mitha

Roman J Krawetz

2022/12

Synovial mesenchymal progenitor derived aggrecan regulates cartilage homeostasis and endogenous repair capacity

Cell Death & Disease

Roman J Krawetz

Yiru Elizabeth Wu

Karri L Bertram

Anchita Shonak

Anand O Masson

...

2022/5/18

High spatial resolution analysis using automated indentation mapping differentiates biomechanical properties of normal vs. degenerated articular cartilage in mice

Elife

Anand O Masson

Bryce Besler

W Brent Edwards

Roman J Krawetz

2022/11/29

Prx1  + and Hic1+ Mesenchymal Progenitors Are Present Within the Epidural Fat and Dura Mater and Participate in Dural Injury Repair

Stem Cells Translational Medicine

Sophia Shah

Sathvika Mudigonda

Tully Michael Underhill

Paul T Salo

Alim P Mitha

...

2022/2/1

Synovial fluid mesenchymal progenitor cells from patients with juvenile idiopathic arthritis demonstrate limited self-renewal and chondrogenesis

Scientific Reports

Roman J Krawetz

Asmaa Affan

Catherine Leonard

Dwaraka Natha Veeramreddy

Akash Fichadiya

...

2022/10/3

Production of mesenchymal progenitor cell-derived extracellular vesicles in suspension bioreactors for use in articular cartilage repair

Stem Cells Translational Medicine

Jolene Phelps

Catherine Leonard

Sophia Shah

Roman Krawetz

David A Hart

...

2022/1/1

Truncated lubricin glycans in osteoarthritis stimulate the synoviocyte secretion of VEGFA, IL-8, and MIP-1α: Interplay between O-linked glycosylation and inflammatory cytokines

Frontiers in Molecular Biosciences

Shan Huang

Kristina A Thomsson

Chunsheng Jin

Henrik Ryberg

Nabangshu Das

...

2022/9/21

See List of Professors in Roman Krawetz University(University of Calgary)