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Dive into the research topics where Neil Watkins is active.

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Featured researches published by Neil Watkins.


Biomaterials | 2000

Production of TNF-α and bone resorbing activity by macrophages in response to different types of bone cement particles

Eileen Ingham; Tim R. Green; Martin H. Stone; Rick Kowalski; Neil Watkins; John Fisher

We have compared the capacity of clinically relevant wear debris from seven different cement types to activate macrophages to produce TNF-alpha, IL-1beta, IL-6 and bone resorbing activity in vitro. The bone cements were: CMW 1 original (PMMA only); CMW 1RO (1 microm BaSO4; 9.2%); CMW copolymer bone cement 1 (10 microm BaSO4; 10%); CMW copolymer bone cement 2 (1 microm BaSO4; 10%); Palacos R (10 microm ZrO2; 15.6%); CMW Calcium phosphate cement 20% (10 microm tri-calcium phosphate; 20%) and CMW calcium phosphate cement 30% (10 microm tri-calcium phosphate; 30%). Cement debris was produced aseptically using a simple configuration wear test. The majority of particles were in the size range 0.1-0.5 microm for each cement type. The cement particles were co-cultured with the U937 macrophage cell line at ratios of 10 and 100 microm3 particle volumes to macrophage cell numbers for 24 h. At the 10:1 ratio the particles had no effect on the cells. At the 100:1 ratio, the major cytokine produced was TNF-alpha and there were no statistical differences between the different types of cement debris. The bone resorption activity of the co-culture supernatants was significantly greater than the control (U937 cells without particles) for particles of CMW 1RO, CMW copolymer bone cement 1, CMW copolymer bone cement 2 and Palacos R (P < 0.05, ANOVA). However there were no statistical differences between the levels of bone resoprtion evoked by these four cement types. The CMW1 original and CMW calcium phosphate containing cements failed to induce the macrophages to elaborate bone resorption activity at the 100:1 ratio. These data suggest that the addition of radio-opaque additives to bone cement may increase the capacity of the debris to induce osteolysis.


Archive | 2002

Vertebroplasty injection device and bone cement therefor

John C. Voellmicke; Paul Mraz; Robert Sommerich; John Buonanno; Nolene Harris; Neil Watkins; Rick Kowalski; Francis Peterson; Todd Bjork; Mark Duffy


Archive | 2002

Vertebroplasty bone cement

Neil Watkins; Rick Kowalski; Nolene Harris


Archive | 2003

Bone cement plug

Richard Twomey; Neil Watkins; Rick Kowalski; John Jed Ewans


Archive | 2003

Ein knochenzement-pfropfen A bone cement-graft

Richard Twomey; Neil Watkins; Rick Kowalski; John Jed Ewans


Archive | 2003

A bone cement-graft

Richard Twomey; Neil Watkins; Rick Kowalski; John Jed Ewans


Archive | 2002

Injection device for back surgery

John C. Voellmicke; Paul Mraz; Robert Sommerich; John Buonanno; Nolene Harris; Neil Watkins; Rick Kowalski; Francis Peterson; Todd Bjork; Mark Duffy


Archive | 2002

Dispositivo de inyeccion para vertebroplastia.

Todd Bjork; John Buonanno; Mark Duffy; Nolene Harris; Rick Kowalski; Paul Mraz; Francis Peterson; Robert Sommerich; John C. Voellmicke; Neil Watkins


Archive | 2002

Injektionsgerät für die rückenchirurgie und knochenzement dafür

Todd Bjork; John Buonanno; Mark Duffy; Nolene Harris; Rick Kowalski; Paul Mraz; Francis Peterson; Robert Sommerich; John C. Voellmicke; Neil Watkins


Archive | 2002

Injektionsgerät für die rückenchirurgie Injection device for back surgery

John C. Voellmicke; Paul Mraz; Robert Sommerich; John Buonanno; Nolene Harris; Neil Watkins; Rick Kowalski; Francis Peterson; Todd Bjork; Mark Duffy

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John Jed Ewans

University of Southampton

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Rick Kowalski

University of Southampton

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