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Dive into the research topics where Meirigeng Qi is active.

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Featured researches published by Meirigeng Qi.


Diabetes Care | 2011

Long-Term Metabolic and Immunological Follow-Up of Nonimmunosuppressed Patients With Type 1 Diabetes Treated With Microencapsulated Islet Allografts Four cases

Giuseppe Basta; Pia Montanucci; Giovanni Luca; Carlo Boselli; Giuseppe Noya; Barbara Barbaro; Meirigeng Qi; Katie Kinzer; Jose Oberholzer; Riccardo Calafiore

OBJECTIVE To assess long-term metabolic and immunological follow-up of microencapsulated human islet allografts in nonimmunosuppressed patients with type 1 diabetes (T1DM). RESEARCH DESIGN AND METHODS Four nonimmunosuppressed patients, with long-standing T1DM, received intraperitoneal transplant (TX) of microencapsulated human islets. Anti-major histocompatibility complex (MHC) class I–II, GAD65, and islet cell antibodies were measured before and long term after TX. RESULTS All patients turned positive for serum C-peptide response, both in basal and after stimulation, throughout 3 years of posttransplant follow-up. Daily mean blood glucose, as well as HbA1c levels, significantly improved after TX, with daily exogenous insulin consumption declining in all cases and being discontinued, just transiently, only in patient 4. Anti-MHC class I–II and GAD65 antibodies all tested negative at 3 years after TX. CONCLUSIONS The grafts did not elicit any immune response, even in the cases where more than one preparation was transplanted, as a unique finding, compatible with encapsulation-driven “bioinvisibility” of the grafted islets. This result had never been achieved with the recipient’s general immunosuppression.


Nature Biotechnology | 2016

Combinatorial hydrogel library enables identification of materials that mitigate the foreign body response in primates

Arturo Vegas; Omid Veiseh; Joshua C. Doloff; Minglin Ma; Hok Hei Tam; Kaitlin M. Bratlie; Jie Li; Andrew Bader; Erin Langan; Karsten Olejnik; Patrick Fenton; Jeon Woong Kang; Jennifer Hollister-Locke; Matthew A. Bochenek; Alan Chiu; Sean Siebert; Katherine Tang; Siddharth Jhunjhunwala; Stephanie Aresta-Dasilva; Nimit Dholakia; Raj Thakrar; Thema Vietti; Michael Chen; Josh Cohen; Karolina Siniakowicz; Meirigeng Qi; James J. McGarrigle; Stephen Lyle; David M. Harlan; Dale L. Greiner

The foreign body response is an immune-mediated reaction that can lead to the failure of implanted medical devices and discomfort for the recipient. There is a critical need for biomaterials that overcome this key challenge in the development of medical devices. Here we use a combinatorial approach for covalent chemical modification to generate a large library of variants of one of the most widely used hydrogel biomaterials, alginate. We evaluated the materials in vivo and identified three triazole-containing analogs that substantially reduce foreign body reactions in both rodents and, for at least 6 months, in non-human primates. The distribution of the triazole modification creates a unique hydrogel surface that inhibits recognition by macrophages and fibrous deposition. In addition to the utility of the compounds reported here, our approach may enable the discovery of other materials that mitigate the foreign body response.


Artificial Cells, Blood Substitutes, and Biotechnology | 2008

Encapsulation of Human Islets in Novel Inhomogeneous Alginate-Ca2+/Ba2+ Microbeads : In Vitro and In Vivo Function

Meirigeng Qi; Berit Løkensgard Strand; Yrr A. Mørch; Igor Lacík; Yong Wang; Payam Salehi; Barbara Barbaro; Antonio Gangemi; Joseph Kuechle; Travis Romagnoli; Michael A. Hansen; Lisette Rodriguez; Enrico Benedetti; David Hunkeler; Gudmund Skjåk-Bræk; José Oberholzer

Microencapsulation may allow for immunosuppression-free islet transplantation. Herein we investigated whether human islets can be shipped safely to a remote encapsulation core facility and maintain in vitro and in vivo functionality. In non-encapsulated islets before and encapsulated islets after shipment, viability was 88.3±2.5 and 87.5±2.7% (n=6, p=0.30). Stimulation index after static glucose incubation was 5.4±0.5 and 6.3±0.4 (n=6, p=0.18), respectively. After intraperitoneal transplantation, long-term normoglycemia was consistently achieved with 3,000, 5,000, and 10,000 IEQ encapsulated human islets. When transplanting 1,000 IEQ, mice returned to hyperglycemia after 30-55 (n=4/7) and 160 days (n=3/7). Transplanted mice showed human oral glucose tolerance with lower glucose levels than non-diabetic control mice. Capsules retrieved after transplantation were intact, with only minimal overgrowth. This study shows that human islets maintained the viability and in vitro function after encapsulation and the inhomogeneous alginate-Ca2+/Ba2+ microbeads allow for long-term in vivo human islet graft function, despite long-distance shipment.


Journal of Biomedical Materials Research Part A | 2012

Binding and Leakage of Barium in Alginate Microbeads

Yrr A. Mørch; Meirigeng Qi; Per Ole M. Gundersen; Kjetil Formo; Igor Lacík; Gudmund Skjåk-Bræk; Jose Oberholzer; Berit L. Strand

Microbeads of alginate crosslinked with Ca(2+) and/or Ba(2+) are popular matrices in cell-based therapy. The aim of this study was to quantify the binding of barium in alginate microbeads and its leakage under in vitro and accumulation under in vivo conditions. Low concentrations of barium (1 mM) in combination with calcium (50 mM) and high concentrations of barium (20 mM) in gelling solutions were used for preparation of microbeads made of high-G and high-M alginates. High-G microbeads accumulated barium from gelling solution and contained higher concentrations of divalent ions for both low- and high-Ba exposure compared with high-G microbeads exposed to calcium solely and to high-M microbeads for all gelling conditions. Although most of the unbound divalent ions were removed during the wash and culture steps, leakage of barium was still detected during storage. Barium accumulation in blood and femur bone of mice implanted with high-G beads was found to be dose-dependent. Estimated barium leakage relevant to transplantation to diabetic patients with islets in alginate microbeads showed that the leakage was 2.5 times lower than the tolerable intake value given by WHO for high-G microbeads made using low barium concentration. The similar estimate gave 1.5 times higher than is the tolerable intake value for the high-G microbeads made using high barium concentration. To reduce the risk of barium accumulation that may be of safety concern, the microbeads made of high-G alginate gelled with a combination of calcium and low concentration of barium ions is recommended for islet transplantation.


Journal of Microencapsulation | 2011

Effect of prolonged gelling time on the intrinsic properties of barium alginate microcapsules and its biocompatibility

Vijayaganapathy Vaithilingam; Gabriella Kollarikova; Meirigeng Qi; Igor Lacík; Jose Oberholzer; Gilles J. Guillemin; Bernard E. Tuch

Pericapsular fibrotic overgrowth (PFO) may be attributed to an immune response against microcapsules themselves or to antigen shedding through microcapsule pores from encapsulated islet tissue. Modification of microcapsules aimed at reducing pore size should prevent PFO and improve graft survival. This study investigated the effect of increased gelling time (20 vs. 2 min) in barium chloride on intrinsic properties of alginate microcapsules and tested their biocompatibility in vivo. Prolonged gelling time affected neither permeability nor size of the microcapsules. However, prolonged gelling time for 20 min produced brittle microcapsules compared to 2 min during compression test. Encapsulation of human islets in both types of microcapsules affected neither islet viability nor function. The presence of PFO when transplanted into a large animal model such as baboon and its absence in small animal models such as rodents suggest that the host immune response towards alginate microcapsules is species rather than alginate specific.


Nature Materials | 2017

Colony stimulating factor-1 receptor is a central component of the foreign body response to biomaterial implants in rodents and non-human primates

Joshua C. Doloff; Omid Veiseh; Arturo Vegas; Hok Hei Tam; Shady Farah; Minglin Ma; Jie Li; Andrew Bader; Alan Chiu; Atieh Sadraei; Stephanie Aresta-Dasilva; Marissa Griffin; Siddharth Jhunjhunwala; Matthew J. Webber; Sean Siebert; Katherine Tang; Michael Chen; Erin Langan; Nimit Dholokia; Raj Thakrar; Meirigeng Qi; Jose Oberholzer; Dale L. Greiner; Robert Langer; Daniel G. Anderson

Host recognition and immune-mediated foreign body response (FBR) to biomaterials can compromise the performance of implanted medical devices. To identify key cell and cytokine targets, here we perform in-depth systems analysis of innate and adaptive immune system responses to implanted biomaterials in rodents and non-human primates. While macrophages are indispensable to the fibrotic cascade, surprisingly neutrophils and complement are not. Macrophages, via CXCL13, lead to downstream B cell recruitment, which further potentiated fibrosis, as confirmed by B cell knock out and CXCL13 neutralization. Interestingly, Colony Stimulating Factor-1 Receptor (CSF1R) is significantly increased following implantation of multiple biomaterial classes: ceramic, polymer, and hydrogel. Its inhibition, like macrophage depletion, leads to complete loss of fibrosis, but spares other macrophage functions such as wound healing, ROS production, and phagocytosis. Our results indicate targeting CSF1R may allow for a more selective method of fibrosis inhibition, and improve biomaterial biocompatibility without the need for broad immunosuppression.


Xenotransplantation | 2012

Survival of human islets in microbeads containing high guluronic acid alginate crosslinked with Ca2+ and Ba2+

Meirigeng Qi; Yrr A. Mørch; Igor Lacík; Kjetil Formo; Enza Marchese; Yong Wang; Kirstie K. Danielson; Katie Kinzer; Shusen Wang; Barbara Barbaro; Gabriela Kolláriková; Dusan Chorvat; David Hunkeler; Gudmund Skjåk-Bræk; Jose Oberholzer; Berit L. Strand

Qi M, Mørch Y, Lacík I, Formo K, Marchese E, Wang Y, Danielson KK, Kinzer K, Wang S, Barbaro B, Kolláriková G, Chorvát D Jr, Hunkeler D, Skjåk‐Bræk G, Oberholzer J, Strand BL. Survival of human islets in microbeads containing high guluronic acid alginate crosslinked with Ca2+ and Ba2+. Xenotransplantation 2012; 19: 355–364.


Diabetes Care | 2013

Reduction in Carotid Intima-Media Thickness After Pancreatic Islet Transplantation in Patients With Type 1 Diabetes

Kirstie K. Danielson; Betul Hatipoglu; Katie Kinzer; Bruce Kaplan; Joan Martellotto; Meirigeng Qi; Alessandra Mele; Enrico Benedetti; Jose Oberholzer

OBJECTIVE Determine the impact of islet transplantation on carotid intima-media thickness (CIMT), a marker for atherosclerosis, in type 1 diabetes without kidney disease. RESEARCH DESIGN AND METHODS Consecutive case series of 15 adults (mean age [SD], 49 years [10 years]; 87% female) with type 1 diabetes for ≥5 years (mean duration [SD], 30 years [12 years]; mean HbA1c [SD], 7.2% [0.9%]), without kidney disease, presenting with severe hypoglycemic unawareness to undergo allogeneic pancreatic islet transplant(s) (one to three each) in a phase 1/2 and 3 clinical trial. Current follow-up ranges from 1 to 5 years (2005–2011). CIMT of the common and internal carotid arteries was measured before and every 12–16 months after the first transplant (two to six CIMTs each) by one ultrasonographer and one blinded reader. CIMT was analyzed as change from baseline to 12- and 50-month follow-up; a combined CIMT score was calculated as the sum of the standardized IMT scores (SD units [SDs]) of both arteries. RESULTS All patients achieved insulin independence after one to three transplants. CIMT decreased at 12 months (n = 15) for the common carotid (−0.058 mm; P = 0.006) and combined score (−1.28 SDs; P = 0.004). In those with 50-month follow-up (n = 7), the decrease in the combined score continued from 12 (−1.59 SDs; P = 0.04) to 50 months (−0.77 SDs; P = 0.04). During follow-up, the decreasing slope of change in CIMT was associated with decreasing slopes of change in HbA1c, lipoproteins, and cardiovascular/inflammatory markers. CONCLUSIONS Islet transplantation may ameliorate diabetes-related atherosclerosis through improved glycemic control consequent to restoring endogenous insulin secretion, and optimal lipid management posttransplant also contributes.


Journal of Surgical Research | 2011

A Recommended Laparoscopic Procedure for Implantation of Microcapsules in the Peritoneal Cavity of Non-human Primates

Meirigeng Qi; Igor Lacík; Gabriela Kolláriková; Berit Løkensgard Strand; Kjetil Formo; Yong Wang; Enza Marchese; Joshua E. Mendoza-Elias; Katie Kinzer; Francesca Gatti; Daniel H. Paushter; Sonny Patel; Jose Oberholzer

BACKGROUND The anatomical spatial distribution of microencapsulated islets transplanted into the peritoneal cavity of large animals remains a relatively unexplored area of study. In this study, we developed a new implantation approach using laparoscopy in order to avoid microcapsule amalgamation. This approach constitutes a clinically relevant method, which can be used to evaluate the distribution and in vivo biocompatibility of various types of transplanted microcapsules in the future. MATERIALS AND METHODS Two healthy baboons were implanted intraperitoneally with microencapsulated islets through mini-laparotomy and observed at 76 d after implantation. Nine baboons underwent laparoscopic implantation of approximately 80,000 empty microcapsules. Microcapsule distribution was observed by laparoscopic camera during and after implantation at 1, 2, and 4 wk. At each time point, microcapsules were retrieved and evaluated with brightfield microscopy and histologic analysis. RESULTS Mini-laparotomic implantation resulted in microcapusle aggregation in both baboons. In contrast, laparoscopic implantation resulted in even distribution of microcapsules throughout the peritoneum without sedimentation to the Douglas space in all animals. In eight out of nine animals, retrieved microcapsules were evenly distributed in the peritoneal cavity and presented with no pericapsular overgrowth and easily washed out during laparoscopic procedure. The one exception was attributed to microcapsule contamination with blood from the abdominal wall following trocar insertion. CONCLUSIONS Laparoscopic implantation of microcapsules in non-human primates can be successfully performed and prevents microcapsule aggregation. Given the current widespread clinical application of laparoscopy, we propose that this presented laparoscopy technique could be applied in future clinical trials of microencapsulated islet transplantation.


Biomedical Microdevices | 2012

Dual microfluidic perifusion networks for concurrent islet perifusion and optical imaging

Dongyoung Lee; Yong Wang; Joshua E. Mendoza-Elias; Adeola F. Adewola; Tricia A. Harvat; Katie Kinzer; Diana Gutierrez; Meirigeng Qi; David T. Eddington; Jose Oberholzer

This study explores a new class of duplex microfluidic device which utilizes a dual perifusion network to simultaneously perform live-cell optical imaging of physiological activities and study insulin release kinetics on two islet populations. This device also incorporates on-chip staggered herringbone mixers (SHMs) to increase mixing efficiency and facilitate the generation of user-defined chemical gradients. Mouse islets are used to simultaneously measure dynamic insulin release, changes in mitochondrial potentials, and calcium influx in response to insulin secretagogues (glucose and tolbutamide), and show a high signal-to-noise ratio and spatiotemporal resolution of all measured parameters for both perifusion chambers. This system has many potential applications for studying β-cell physiology and pathophysiology, as well as for therapeutic drug screening. This dual perifusion device is not limited to islet studies and could easily be applied to other tissues and cells without major modifications.

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Jose Oberholzer

University of Illinois at Chicago

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Yong Wang

University of Illinois at Chicago

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Barbara Barbaro

University of Illinois at Chicago

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Katie Kinzer

University of Illinois at Chicago

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Enrico Benedetti

University of Illinois at Chicago

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James J. McGarrigle

University of Illinois at Chicago

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Igor Lacík

Slovak Academy of Sciences

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Enza Marchese

University of Illinois at Chicago

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Joshua E. Mendoza-Elias

University of Illinois at Chicago

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Kirstie K. Danielson

University of Illinois at Chicago

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