Andrea Tuettenberg
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Explore the profile of Andrea Tuettenberg including associated specialties, affiliations and a list of published articles.
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49
Citations
801
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Recent Articles
1.
Stiller H, Perumal N, Manicam C, Trzeciak E, Todt J, Jurk K, et al.
Bioengineering (Basel)
. 2024 Nov;
11(11).
PMID: 39593831
Differences in cell count and growth factor expression between first- and second-generation autologous platelet concentrates (APCs) have been well described. The debate over which formula best supports wound healing in...
2.
Gleue L, Graefen B, Voigt M, Schupp J, Schneider D, Fichter M, et al.
ChemMedChem
. 2024 Sep;
20(1):e202400648.
PMID: 39328087
In liposomal drug delivery development, the delicate balance of membrane stability is a major challenge to prevent leakage (during shelf-life and blood circulation), and to ensure efficient payload release at...
3.
Damara A, Wegner J, Trzeciak E, Kolb A, Nastaranpour M, Khatri R, et al.
Clin Immunol
. 2024 Jun;
265:110287.
PMID: 38909973
LL37 alone and in complex with self-DNA triggers inflammatory responses in myeloid cells and plays a crucial role in the development of systemic autoimmune diseases, like psoriasis and systemic lupus...
4.
Zimmer N, Trzeciak E, Muller A, Licht P, Sprang B, Leukel P, et al.
Cancers (Basel)
. 2023 Dec;
15(24).
PMID: 38136258
Glioblastoma (GB) is notoriously resistant to therapy. GB genesis and progression are driven by glioblastoma stem-like cells (GSCs). One goal for improving treatment efficacy and patient outcomes is targeting GSCs....
5.
Trzeciak E, Zimmer N, Kammerer P, Thiem D, Al-Nawas B, Tuettenberg A, et al.
Biomedicines
. 2022 Dec;
10(12).
PMID: 36551892
Autologous platelet concentrates, like liquid platelet rich fibrin (iPRF), optimize wound healing; however, the underlying immunological mechanisms are poorly understood. Platelets, the main cellular component of iPRF, highly express the...
6.
Zimmer N, Trzeciak E, Graefen B, Satoh K, Tuettenberg A
Front Immunol
. 2022 Jul;
13:928450.
PMID: 35898500
Regulatory T cells (Treg) play a critical role in immune homeostasis by suppressing several aspects of the immune response. Herein, Glycoprotein A repetitions predominant (GARP), the docking receptor for latent...
7.
Trzeciak E, Zimmer N, Gehringer I, Stein L, Graefen B, Schupp J, et al.
Cells
. 2022 Mar;
11(6).
PMID: 35326381
The cellular composition of the tumor microenvironment, including tumor, immune, stromal, and endothelial cells, significantly influences responses to cancer therapies. In this study, we analyzed the impact of oxidative stress,...
8.
Satoh K, Kobayashi Y, Fujimaki K, Hayashi S, Ishida S, Sugiyama D, et al.
Int Immunol
. 2021 Jul;
33(8):435-446.
PMID: 34235533
Regulatory T (Treg) cells, which are essential for maintaining self-tolerance, inhibit anti-tumor immunity, consequently hindering protective cancer immunosurveillance, and hampering effective anti-tumor immune responses in tumor-bearing hosts. Here, we show...
9.
Rahimi-Nedjat R, Tuettenberg A, Sagheb K, Loquai C, Rybczynski B, Grabbe S, et al.
J Craniomaxillofac Surg
. 2021 Feb;
49(4):317-322.
PMID: 33608200
To investigate factors that affect and also decrease the duration for recurrences and secondary tumors in cSCC. A retrospective study was conducted for all patients who were treated for a...
10.
Schupp J, Christians A, Zimmer N, Gleue L, Jonuleit H, Helm M, et al.
Int J Mol Sci
. 2021 Jan;
22(3).
PMID: 33498319
The presence and interaction of immune cells in the tumor microenvironment is of significant importance and has a great impact on disease progression and response to therapy. Hence, their identification...