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Dive into the research topics where Sudershan K. Bhatia is active.

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Featured researches published by Sudershan K. Bhatia.


American Journal of Reproductive Immunology | 1996

Estrogen Blocks Early T Cell Development in the Thymus

Asha Rijhsinghani; Kristin Thompson; Sudershan K. Bhatia; Thomas J. Waldschmidt

PROBLEM: Pregnancy and estrogen are known to suppress B lymphopoiesis as well as lead to thymic involution in the mouse. Additionally, estrogen deficiency by oophorectomy reportedly causes a selective increase in the B220+ B cells in the murine bone marrow. The purpose of this study was to determine if estrogens played a regulatory role in T cell development.


International Journal of Radiation Oncology Biology Physics | 2001

CURATIVE RADIOTHERAPY FOR PRIMARY ORBITAL LYMPHOMA

Sudershan K. Bhatia; Arnold C. Paulino; John M. Buatti; Nina A. Mayr; B.-Chen Wen

PURPOSE To review our institutional experience with primary orbital lymphoma and determine the prognostic factors for survival, local control, and distant metastases. In addition, we also analyzed the risk factors for complications in the radiotherapeutic management of this tumor. METHODS AND MATERIALS Between 1973 and 1998, 47 patients (29 women [62%] and 18 men [38%], median age 69 years, range 32-89) with Stage IAE orbital lymphoma were treated with curative intent at one department. Five had bilateral orbital involvement. The tumor was located in the eyelid and extraocular muscles in 23 (44%), conjunctiva in 17 (33%), and lacrimal apparatus in 12 (23%). The histologic features according to the World Heath Organization classification of lymphoid neoplasms was follicular lymphoma in 25, extranodal marginal zone B-cell lymphoma of mucosa-associated lymphoid tissue type in 8, diffuse large B-cell lymphoma in 12, mantle cell lymphoma in 6, and peripheral T-cell lymphoma in 1. For the purposes of comparison with the existing literature on orbital lymphomas, the grading system according to the Working Formulation was also recorded. The histologic grade was low in 33 (63%), intermediate in 18 (35%), and high in 1 (2%). All patients were treated with primary radiotherapy alone. The median dose for low-grade tumors was 3000 cGy (range 2000-4020); the median dose for intermediate and high-grade tumors was 4000 cGy (range 3000-5100). A lens-sparing approach was used in 19 patients (37%). Late complications for the lens and cornea were scored according to the subjective, objective, management, and analytic (SOMA) scale of the Late Effects of Normal Tissue (LENT) scoring system. The median follow-up was 55 months (range 6-232). RESULTS The local control rate was 100% in the 52 orbits treated. The 5-year overall survival and relapse-free survival rate was 73.6% and 65.5%, respectively. Tumor grade and location did not predict for overall survival or relapse-free survival. Seven patients (15%) developed distant recurrence (brain 2, extremity 2, mediastinum 1, liver 1, and retroperitoneum 1). One patient (2%) developed cervical node metastasis. The 5- and 10-year cataract-free survival rate was 56.7% and 32.9%, respectively. Of the 12 lens complications, 8 were LENT Grade 1 and 4 were Grade 3 toxicity. Only male gender predicted for an increased risk of cataract formation. Radiotherapy dose and technique did not predict for cataract formation; however, none of the patients who underwent the lens-sparing technique developed Grade 3 lens toxicity or required surgical correction. Of the nine corneal events, two were Grade 1, four Grade 2, and three were Grade 3 toxicity. Ten dry eyes were recorded; all were mild, and no patient had severe dry eye syndrome. Neovascular glaucoma was seen in 1 patient. No injury to the retina or optic nerve was reported. CONCLUSION Radiotherapy alone is a highly effective modality in the curative management of primary orbital lymphoma. Most complications were minimal and did not require medical or surgical intervention. Although the use of the lens-sparing technique did not influence the incidence of cataractogenesis, we continue to recommend this approach whenever possible, because our experience indicates a higher grade of toxicity occurs and a higher incidence of corrective surgery is needed in patients treated without lens protection.


Clinical Cancer Research | 2013

Ketogenic Diets Enhance Oxidative Stress and Radio-Chemo-Therapy Responses in Lung Cancer Xenografts

Bryan G. Allen; Sudershan K. Bhatia; John M. Buatti; Kristin E. Brandt; Kaleigh E. Lindholm; Anna Button; Luke I. Szweda; Brian J. Smith; Douglas R. Spitz; Melissa A. Fath

Purpose: Ketogenic diets are high in fat and low in carbohydrates as well as protein which forces cells to rely on lipid oxidation and mitochondrial respiration rather than glycolysis for energy metabolism. Cancer cells (relative to normal cells) are believed to exist in a state of chronic oxidative stress mediated by mitochondrial metabolism. The current study tests the hypothesis that ketogenic diets enhance radio-chemo-therapy responses in lung cancer xenografts by enhancing oxidative stress. Experimental Design: Mice bearing NCI-H292 and A549 lung cancer xenografts were fed a ketogenic diet (KetoCal 4:1 fats: proteins+carbohydrates) and treated with either conventionally fractionated (1.8–2 Gy) or hypofractionated (6 Gy) radiation as well as conventionally fractionated radiation combined with carboplatin. Mice weights and tumor size were monitored. Tumors were assessed for immunoreactive 4-hydroxy-2-nonenal-(4HNE)–modified proteins as a marker of oxidative stress as well as proliferating cell nuclear antigen (PCNA) and γH2AX as indices of proliferation and DNA damage, respectively. Results: The ketogenic diets combined with radiation resulted in slower tumor growth in both NCI-H292 and A549 xenografts (P < 0.05), relative to radiation alone. The ketogenic diet also slowed tumor growth when combined with carboplatin and radiation, relative to control. Tumors from animals fed a ketogenic diet in combination with radiation showed increases in oxidative damage mediated by lipid peroxidation as determined by 4HNE-modified proteins as well as decreased proliferation as assessed by decreased immunoreactive PCNA. Conclusions: These results show that a ketogenic diet enhances radio-chemo-therapy responses in lung cancer xenografts by a mechanism that may involve increased oxidative stress. Clin Cancer Res; 19(14); 3905–13. ©2013 AACR.


International Journal of Radiation Oncology Biology Physics | 2008

Analysis of Interfraction Prostate Motion Using Megavoltage Cone Beam Computed Tomography

Kevin Bylund; John E. Bayouth; Mark C. Smith; A. Curtis Hass; Sudershan K. Bhatia; John M. Buatti

PURPOSE Determine the degree of interfraction prostate motion and its components measured by using daily megavoltage (MV) cone beam computed tomography (CBCT) imaging. METHODS AND MATERIALS A total of 984 daily MV CBCT images from 24 patients undergoing definitive intensity-modulated radiotherapy for localized prostate cancer were analyzed retrospectively. Pretreatment couch shifts, based on physician registration of MV CBCT to planning CT data sets, were used as a measure of daily interfraction motion. Off-line bony registration was performed to separate bony misalignment from internal organ motion. Interobserver and intraobserver variation studies were performed on 20 MV CBCT images. RESULTS Mean interfraction prostate motion was 6.7 mm, with the greatest single-axis deviation in the anterior-posterior (AP) direction. The largest positional inaccuracy was accounted for by systematic deviations in bony misalignment, whereas random deviations occurred from bony misalignment and internal prostate motion. In the aggregate, AP motion did not correlate with days elapsed since beginning therapy or on average with rectal size at treatment planning. Interobserver variation was greatest in the AP direction, decreased in experienced observers, and further decreased in intraobserver studies. Mean interfraction motion during the first 6 days of therapy, when used as a subsequent offset, reduced acceptable AP planning target volume margins by 50%. CONCLUSION The MV CBCT is a practical direct method of daily localization that shows significant interfraction motion with respect to conventional three-dimensional conformal and intensity-modulated radiotherapy margins, similar to that measured in other modalities.


Redox biology | 2014

Ketogenic diets as an adjuvant cancer therapy: History and potential mechanism

Bryan G. Allen; Sudershan K. Bhatia; Carryn M. Anderson; Julie M. Eichenberger-Gilmore; Zita A. Sibenaller; Kranti A. Mapuskar; Joshua D. Schoenfeld; John M. Buatti; Douglas R. Spitz; Melissa A. Fath

Cancer cells, relative to normal cells, demonstrate significant alterations in metabolism that are proposed to result in increased steady-state levels of mitochondrial-derived reactive oxygen species (ROS) such as O2•−and H2O2. It has also been proposed that cancer cells increase glucose and hydroperoxide metabolism to compensate for increased levels of ROS. Given this theoretical construct, it is reasonable to propose that forcing cancer cells to use mitochondrial oxidative metabolism by feeding ketogenic diets that are high in fats and low in glucose and other carbohydrates, would selectively cause metabolic oxidative stress in cancer versus normal cells. Increased metabolic oxidative stress in cancer cells would in turn be predicted to selectively sensitize cancer cells to conventional radiation and chemotherapies. This review summarizes the evidence supporting the hypothesis that ketogenic diets may be safely used as an adjuvant therapy to conventional radiation and chemotherapies and discusses the proposed mechanisms by which ketogenic diets may enhance cancer cell therapeutic responses.


International Journal of Radiation Oncology Biology Physics | 2014

Comparison and consensus guidelines for delineation of clinical target volume for CT- and MR-based brachytherapy in locally advanced cervical cancer

Akila N. Viswanathan; Beth Erickson; David K. Gaffney; Sushil Beriwal; Sudershan K. Bhatia; O. Burnett; David D'Souza; Nikhilesh Patil; Michael G. Haddock; Anuja Jhingran; Ellen L. Jones; Charles A. Kunos; Larissa J. Lee; Lilie L. Lin; Nina A. Mayr; Ivy A. Petersen; Primoz Petric; L. Portelance; William Small; Jonathan B. Strauss; Kanokpis Townamchai; Aaron H. Wolfson; Catheryn M. Yashar; Walter R. Bosch

OBJECTIVE To create and compare consensus clinical target volume (CTV) contours for computed tomography (CT) and 3-Tesla (3-T) magnetic resonance (MR) image-based cervical-cancer brachytherapy. METHODS AND MATERIALS Twenty-three experts in gynecologic radiation oncology contoured the same 3 cervical cancer brachytherapy cases: 1 stage IIB near-complete response (CR) case with a tandem and ovoid, 1 stage IIB partial response (PR) case with tandem and ovoid with needles, and 1 stage IB2 CR case with a tandem and ring applicator. The CT contours were completed before the MRI contours. These were analyzed for consistency and clarity of target delineation using an expectation maximization algorithm for simultaneous truth and performance level estimation (STAPLE), with κ statistics as a measure of agreement between participants. The conformity index was calculated for each of the 6 data sets. Dice coefficients were generated to compare the CT and MR contours of the same case. RESULTS For all 3 cases, the mean tumor volume was smaller on MR than on CT (P<.001). The κ and conformity index estimates were slightly higher for CT, indicating a higher level of agreement on CT. The Dice coefficients were 89% for the stage IB2 case with a CR, 74% for the stage IIB case with a PR, and 57% for the stage IIB case with a CR. CONCLUSION In a comparison of MR-contoured with CT-contoured CTV volumes, the higher level of agreement on CT may be due to the more distinct contrast medium visible on the images at the time of brachytherapy. MR at the time of brachytherapy may be of greatest benefit in patients with large tumors with parametrial extension that have a partial or complete response to external beam. On the basis of these results, a 95% consensus volume was generated for CT and for MR. Online contouring atlases are available for instruction at http://www.nrgoncology.org/Resources/ContouringAtlases/GYNCervicalBrachytherapy.aspx.


IEEE Transactions on Medical Imaging | 2013

Optimal Co-Segmentation of Tumor in PET-CT Images With Context Information

Qi Song; Junjie Bai; Dongfeng Han; Sudershan K. Bhatia; Wenqing Sun; William M. Rockey; John E. Bayouth; John M. Buatti; Xiaodong Wu

Positron emission tomography (PET)-computed tomography (CT) images have been widely used in clinical practice for radiotherapy treatment planning of the radiotherapy. Many existing segmentation approaches only work for a single imaging modality, which suffer from the low spatial resolution in PET or low contrast in CT. In this work, we propose a novel method for the co-segmentation of the tumor in both PET and CT images, which makes use of advantages from each modality: the functionality information from PET and the anatomical structure information from CT. The approach formulates the segmentation problem as a minimization problem of a Markov random field model, which encodes the information from both modalities. The optimization is solved using a graph-cut based method. Two sub-graphs are constructed for the segmentation of the PET and the CT images, respectively. To achieve consistent results in two modalities, an adaptive context cost is enforced by adding context arcs between the two sub-graphs. An optimal solution can be obtained by solving a single maximum flow problem, which leads to simultaneous segmentation of the tumor volumes in both modalities. The proposed algorithm was validated in robust delineation of lung tumors on 23 PET-CT datasets and two head-and-neck cancer subjects. Both qualitative and quantitative results show significant improvement compared to the graph cut methods solely using PET or CT.


Cancer Cell | 2017

O2⋅− and H2O2-Mediated Disruption of Fe Metabolism Causes the Differential Susceptibility of NSCLC and GBM Cancer Cells to Pharmacological Ascorbate

Joshua D. Schoenfeld; Zita A. Sibenaller; Kranti A. Mapuskar; Brett A. Wagner; Kimberly Cramer-Morales; Muhammad Furqan; Sonia Sandhu; Thomas L. Carlisle; Mark C. Smith; Taher Abu Hejleh; Daniel J. Berg; Jun Zhang; John Keech; Kalpaj R. Parekh; Sudershan K. Bhatia; Varun Monga; Kellie L. Bodeker; Logan Ahmann; Sandy Vollstedt; Heather Brown; Erin P.Shanahan Kauffman; Mary E. Schall; Raymond J. Hohl; Gerald H. Clamon; Jeremy D. W. Greenlee; Matthew A. Howard; Michael K. Schultz; Brian J. Smith; Dennis Riley; Frederick E. Domann

Pharmacological ascorbate has been proposed as a potential anti-cancer agent when combined with radiation and chemotherapy. The anti-cancer effects of ascorbate are hypothesized to involve the autoxidation of ascorbate leading to increased steady-state levels of H2O2; however, the mechanism(s) for cancer cell-selective toxicity remain unknown. The current study shows that alterations in cancer cell mitochondrial oxidative metabolism resulting in increased levels of O2⋅- and H2O2 are capable of disrupting intracellular iron metabolism, thereby selectively sensitizing non-small-cell lung cancer (NSCLC) and glioblastoma (GBM) cells to ascorbate through pro-oxidant chemistry involving redox-active labile iron and H2O2. In addition, preclinical studies and clinical trials demonstrate the feasibility, selective toxicity, tolerability, and potential efficacy of pharmacological ascorbate in GBM and NSCLC therapy.


International Journal of Radiation Oncology Biology Physics | 2013

Randomized Trial of Pentoxifylline and Vitamin E vs Standard Follow-up After Breast Irradiation to Prevent Breast Fibrosis, Evaluated by Tissue Compliance Meter

Geraldine M. Jacobson; Sudershan K. Bhatia; Brian J. Smith; Anna Button; Kellie Bodeker; John M. Buatti

PURPOSE To conduct a randomized clinical trial to determine whether the combination of pentoxifylline (PTX) and vitamin E given for 6 months after breast/chest wall irradiation effectively prevents radiation-induced fibrosis (RIF). METHODS AND MATERIALS Fifty-three breast cancer patients with localized disease were enrolled and randomized to treatment with oral PTX 400 mg 3 times daily and oral vitamin E 400 IU daily for 6 months after radiation (n=26), or standard follow up (n=27). Tissue compliance meter (TCM) measurements were obtained at 18 months to compare tissue compliance in the irradiated and untreated breast/chest wall in treated subjects and controls. Measurements were obtained at 2 mirror image sites on each breast/chest wall, and the average difference in tissue compliance was scored. Differences in TCM measurements were compared using a t test. Subjects were followed a minimum of 2 years for local recurrence, disease-free survival, and overall survival. RESULTS The mean difference in TCM measurements in the 2 groups was 0.88 mm, median of 1.00 mm (treated) and 2.10 mm, median of 2.4 mm (untreated). The difference between the 2 groups was significant (P=.0478). Overall survival (100% treated, 90.6% controls at 5 years) and disease-free survival (96.2% treated, 86.8% controls at 5 years) were not significantly different in the 2 groups. CONCLUSIONS This study of postirradiation breast cancer patients treated with PTX/vitamin E or standard follow-up indicated a significant difference in radiation-induced fibrosis as measured by TCM. There was no observed impact on local control or survival within the first 2 years of follow-up. The treatment was safe and well tolerated. Pentoxifylline/vitamin E may be clinically useful in preventing fibrosis after radiation in high-risk patients.


American Journal of Reproductive Immunology | 1996

Effect of pregnancy on thymic T cell development

Asha Rijhsinghani; Sudershan K. Bhatia; Lorraine T. Tygrett; Thomas J. Waldschmidt

PROBLEM: The thymus gland decreases in size during pregnancy. The significance of this alteration is not known.

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Wenqing Sun

University of Texas at El Paso

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John E. Bayouth

University of Wisconsin-Madison

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B. Gross

University of Iowa Hospitals and Clinics

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