Srideshikan Sargur Madabushi
Overview
Explore the profile of Srideshikan Sargur Madabushi including associated specialties, affiliations and a list of published articles.
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11
Citations
38
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Recent Articles
1.
Ghimire H, Malekzadeh M, Lim J, Madabushi S, Zampini M, Camacho A, et al.
bioRxiv
. 2025 Jan;
PMID: 39803423
Background/objectives: Bone marrow (BM) adipocytes are critical in progressing solid tumor metastases and hematological malignancies across pediatric to aging populations. Single-point biopsies remain the gold standard for monitoring BM diseases,...
2.
Ghimire H, Madabushi S, Vercellino J, Brooks J, Zuro D, Lim J, et al.
Front Oncol
. 2024 Oct;
14:1414488.
PMID: 39450249
Background: There is a need for therapies that can mitigate bone marrow dysfunction and organ toxicity that occur following myeloablative injury and reduced intensity conditioning regimens used in patients undergoing...
3.
Lim J, Madabushi S, Vishwasrao P, Song J, Abdelhamid A, Ghimire H, et al.
Front Oncol
. 2022 Nov;
12:1045016.
PMID: 36439420
Total body irradiation (TBI) is a commonly used conditioning regimen for hematopoietic stem cell transplant (HCT), but dose heterogeneity and long-term organ toxicity pose significant challenges. Total marrow irradiation (TMI),...
4.
Madabushi S, Fouda R, Ghimire H, Abdelhamid A, Lim J, Vishwasrao P, et al.
Front Oncol
. 2022 Sep;
12:969429.
PMID: 36147914
Sickle cell disease (SCD) is a serious global health problem, and currently, the only curative option is hematopoietic stem cell transplant (HCT). However, myeloablative total body irradiation (TBI)-based HCT is...
5.
Abdelhamid A, Jiang L, Zuro D, Liu A, Madabushi S, Ghimire H, et al.
Front Oncol
. 2022 Aug;
12:941814.
PMID: 35924145
Total marrow irradiation (TMI) has significantly improved radiation conditioning for hematopoietic cell transplantation in hematologic diseases by reducing conditioning-induced toxicities and improving survival outcomes in relapsed/refractory patients. Recently, preclinical three-dimensional...
6.
Brooks J, Zuro D, Song J, Madabushi S, Sanchez J, Guha C, et al.
Int J Radiat Oncol Biol Phys
. 2021 Nov;
112(4):951-963.
PMID: 34767936
Purpose: Recent initial findings suggest that radiation therapy improves blood perfusion and cellular chemotherapy uptake in mice with leukemia. However, the ability of radiation therapy to influence drug accumulation in...
7.
Zuro D, Madabushi S, Brooks J, Chen B, Goud J, Salhotra A, et al.
Int J Radiat Oncol Biol Phys
. 2021 Jun;
111(3):671-683.
PMID: 34119592
Purpose: Total marrow irradiation (TMI) has significantly advanced radiation conditioning for hematopoietic cell transplantation in hematologic malignancies by reducing conditioning-induced toxicities and improving survival outcomes in relapsed/refractory patients. However, the...
8.
Kumar B, Orellana M, Brooks J, Madabushi S, Vishwasrao P, Parra L, et al.
Haematologica
. 2020 Oct;
106(5):1484-1488.
PMID: 33054109
No abstract available.
9.
Brooks J, Kumar B, Zuro D, Raybuck J, Madabushi S, Vishwasrao P, et al.
Int J Radiat Oncol Biol Phys
. 2020 Aug;
109(1):60-72.
PMID: 32841681
Purpose: Although vascular alterations in solid tumor malignancies are known to decrease therapeutic delivery, the effects of leukemia-induced bone marrow vasculature (BMV) alterations on therapeutic delivery are not well known....
10.
Nouizi F, Brooks J, Zuro D, Madabushi S, Moreira D, Kortylewski M, et al.
IEEE Access
. 2020 Jun;
8:93663-93670.
PMID: 32542176
Hypofractionated stereotactic body radiotherapy treatments (SBRT) have demonstrated impressive results for the treatment of a variety of solid tumors. The role of tumor supporting vasculature damage in treatment outcome for...