Short intense electrical pulses transiently increase the permeability of the cell membrane, an effect known as electroporation. This can be combined with antiblastic drugs for ablation of tumours of the skin and subcutaneous tissue. The aim of this study was to test the efficacy of electroporation when applied to bone and to understand whether the presence of mineralised trabeculae would affect the capability of the electric field to porate the membrane of bone cells. Different levels of electrical field were applied to the femoral bone of rabbits. The field distribution and modelling were simulated by computer. Specimens of bone from treated and control rabbits were obtained for histology, histomorphometry and biomechanical testing. After seven days, the area of ablation had increased in line with the number of pulses and/or with the amplitude of the electrical field applied. The osteogenic activity in the ablated area had recovered by 30 days. Biomechanical testing showed structural integrity of the bone at both times. Electroporation using the appropriate combination of voltage and pulses induced ablation of bone cells without affecting the recovery of osteogenic activity. It can be an effective treatment in bone and when used in combination with drugs, an option for the treatment of metastases.
Treatment strategies for osteoarthritis most commonly involve the removal or replacement of damaged joint tissue. Relatively few treatments attempt to arrest, slow down or reverse the disease process. Such options include peri-articular osteotomy around the hip or knee, and treatment of femoro-acetabular impingement, where early intervention may potentially alter the natural history of the disease. A relatively small proportion of patients with osteoarthritis have a clear predisposing factor that is both suitable for modification and who present early enough for intervention to be deemed worthwhile. This paper reviews recent advances in our understanding of the pathology, imaging and progression of early osteoarthritis.
Human articular cartilage samples were retrieved from the resected material of patients undergoing total knee replacement. Samples underwent automated controlled freezing at various stages of preparation: as intact articular cartilage discs, as minced articular cartilage, and as chondrocytes immediately after enzymatic isolation from fresh articular cartilage. Cell viability was examined using a LIVE/DEAD assay which provided fluorescent staining. Isolated chondrocytes were then cultured and Alamar blue assay was used for estimation of cell proliferation at days zero, four, seven, 14, 21 and 28 after seeding. The mean percentage viabilities of chondrocytes isolated from group A (fresh, intact articular cartilage disc samples), group B (following cryopreservation and then thawing, after initial isolation from articular cartilage), group C (from minced cryopreserved articular cartilage samples), and group D (from cryopreserved intact articular cartilage disc samples) were 74.7% (95% confidence interval (CI) 73.1 to 76.3), 47.0% (95% CI 43 to 51), 32.0% (95% CI 30.3 to 33.7) and 23.3% (95% CI 22.1 to 24.5), respectively. Isolated chondrocytes from all groups were expanded by the following mean proportions after 28 days of culturing: group A ten times, group B 18 times, group C 106 times, and group D 154 times. This experiment demonstrated that it is possible to isolate viable chondrocytes from cryopreserved intact human articular cartilage which can then be successfully cultured.
The February 2013 Children’s orthopaedics Roundup360 looks at: the human genome; new RNA; cells, matrix and gene enhancement; the histology of x-rays; THR and VTE in the Danish population; potential therapeutic targets for GCT; optimising vancomycin elution from cement; and how much sleep is enough.
Rotator cuff tears are among the most common and debilitating
upper extremity injuries. Chronic cuff tears result in atrophy and
an infiltration of fat into the muscle, a condition commonly referred
to as ‘fatty degeneration’. While stem cell therapies hold promise
for the treatment of cuff tears, a suitable immunodeficient animal
model that could be used to study human or other xenograft-based
therapies for the treatment of rotator cuff injuries had not previously
been identified. A full-thickness, massive supraspinatus and infraspinatus tear
was induced in adult T-cell deficient rats. We hypothesised that,
compared with controls, 28 days after inducing a tear we would observe
a decrease in muscle force production, an accumulation of type IIB
fibres, and an upregulation in the expression of genes involved
with muscle atrophy, fibrosis and inflammation.Objectives
Methods
Orthopaedic surgery is in an exciting transitional period as modern surgical interventions, implants and scientific developments are providing new therapeutic options. As advances in basic science and technology improve our understanding of the pathology and repair of musculoskeletal tissue, traditional operations may be replaced by newer, less invasive procedures which are more appropriately targeted at the underlying pathophysiology. However, evidence-based practice will remain a basic requirement of care. Orthopaedic surgeons can and should remain at the forefront of the development of novel therapeutic interventions and their application. Progression of the potential of bench research into an improved array of orthopaedic treatments in an effective yet safe manner will require the development of a subgroup of specialists with extended training in research to play an important role in bridging the gap between laboratory science and clinical practice. International regulations regarding the introduction of new biological treatments will place an additional burden on the mechanisms of this translational process, and orthopaedic surgeons who are trained in science, surgery and the regulatory environment will be essential. Training and supporting individuals with these skills requires special consideration and discussion by the orthopaedic community. In this paper we review some traditional approaches to the integration of orthopaedic science and surgery, the therapeutic potential of current regenerative biomedical science for cartilage repair and ways in which we may develop surgeons with the skills required to translate scientific discovery into effective and properly assessed orthopaedic treatments.
We present the ten- to 15-year follow-up of 31
patients (34 knees), who underwent an Elmslie-Trillat tibial tubercle osteotomy
for chronic, severe patellar instability, unresponsive to non-operative
treatment. The mean age of the patients at the time of surgery was
31 years (18 to 46) and they were reviewed post-operatively, at
four years (2 to 8) and then at 12 years (10 to 15). All patients
had pre-operative knee radiographs and Cox and Insall knee scores. Superolateral
portal arthroscopy was performed per-operatively to document chondral
damage and after the osteotomy to assess the stability of the patellofemoral
joint. A total of 28 knees (82%) had a varying degree of damage
to the articular surface. At final follow-up 25 patients (28 knees)
were available for review and underwent clinical examination, radiographs
of the knee, and Cox and Insall scoring. Six patients who had no
arthroscopic chondral abnormality showed no or only early signs
of osteoarthritis on final radiographs; while 12 patients with lower
grade chondral damage (grade 1 to 2) showed early to moderate signs
of osteoarthritis and six out of ten knees with higher grade chondral
damage (grade 3 to 4) showed marked evidence of osteoarthritis;
four of these had undergone a knee replacement. In the 22 patients
(24 knees) with complete follow-up, 19 knees (79.2%) were reported
to have a good or excellent outcome at four years, while 15 knees
(62.5%) were reported to have the same at long-term follow-up. The
functional and radiological results show that the extent of pre-operatively
sustained chondral damage is directly related to the subsequent
development of patellofemoral osteoarthritis. Cite this article:
The purpose of this study was to evaluate the
long-term functional and radiological outcomes of arthroscopic removal
of unstable osteochondral lesions with subchondral drilling in the
lateral femoral condyle. We reviewed the outcome of 23 patients
(28 knees) with stage III or IV osteochondritis dissecans lesions
of the lateral femoral condyle at a mean follow-up of 14 years (10
to 19). The functional clinical outcomes were assessed using the Lysholm
score, which improved from a mean of 38.1 ( We found radiological evidence of degenerative changes in the
third or fourth decade of life at a mean of 14 years after arthroscopic
excision of the loose body and subchondral drilling for an unstable
osteochondral lesion of the lateral femoral condyle. Clinical and
functional results were more satisfactory.
The April 2014 Foot &
Ankle Roundup360 looks at: Hawkins fractures revisited; arthrodesis compared with ankle replacement in osteoarthritis; mobile bearing ankle replacement successful in the longer-term; osteolysis is an increasing worry in ankle replacement; ankle synostosis post-fracture is not important; radiofrequency ablation for plantar fasciitis; and the right approach for tibiotalocalcaneal fusion.
We report the incidence of and risk factors for
complications after scoliosis surgery in patients with Duchenne muscular
dystrophy (DMD) and compare them with those of other neuromuscular
conditions. We identified 110 (64 males, 46 females) consecutive patients
with a neuromuscular disorder who underwent correction of the scoliosis
at a mean age of 14 years (7 to 19) and had a minimum two-year follow-up.
We recorded demographic and peri-operative data, including complications
and re-operations. There were 60 patients with cerebral palsy (54.5%) and 26 with
DMD (23.6%). The overall complication rate was 22% (24 patients),
the most common of which were deep wound infection (9, 8.1%), gastrointestinal
complications (5, 4.5%) and hepatotoxicity (4, 3.6%). The complication
rate was higher in patients with DMD (10/26, 38.5%) than in those
with other neuromuscular conditions (14/84, 16.7% (p = 0.019). All
hepatotoxicity occurred in patients with DMD (p = 0.003), who also
had an increased rate of deep wound infection (19% In our series, correction of a neuromuscular scoliosis had an
acceptable rate of complications: patients with DMD had an increased
overall rate compared with those with other neuromuscular conditions.
These included deep wound infection and hepatotoxicity. Hepatotoxicity
was unique to DMD patients, and we recommend peri-operative vigilance
after correction of a scoliosis in this group. Cite this article:
In the absence of patellar resurfacing, we have
previously shown that the use of electrocautery around the margin of
the patella improved the one-year clinical outcome of total knee
replacement (TKR). In this prospective randomised study we compared
the mean 3.7 year (1.1 to 4.2) clinical outcomes of 300 TKRs performed
with and without electrocautery of the patellar rim: this is an
update of a previous report. The overall prevalence of anterior knee
pain was 32% (95% confidence intervals [CI] 26 to 39), and 26% (95%
CI 18 to 35) in the intervention group compared with 38% (95% CI
29 to 48) in the control group (chi-squared test; p = 0.06). The
overall prevalence of anterior knee pain remained unchanged between
the one-year and 3.7 year follow-up (chi-squared test; p = 0.12). The
mean total Western Ontario McMasters Universities Osteoarthritis
Indices and the American Knee Society knee and function scores at
3.7 years’ follow-up were similar in the intervention and control
groups (repeated measures analysis of variance p = 0.43, p = 0.09
and p = 0.59, respectively). There were no complications. A total
of ten patients (intervention group three, control group seven)
required secondary patellar resurfacing after the first year. Our study suggests that the improved clinical outcome with electrocautery
denervation compared with no electrocautery is not maintained at
a mean of 3.7 years’ follow-up. Cite this article:
Post-traumatic arthritis is a frequent consequence of articular fracture. The mechanisms leading to its development after such injuries have not been clearly delineated. A potential contributing factor is decreased viability of the articular chondrocytes. The object of this study was to characterise the regional variation in the viability of chondrocytes following joint trauma. A total of 29 osteochondral fragments from traumatic injuries to joints that could not be used in articular reconstruction were analysed for cell viability using the fluorescence live/dead assay and for apoptosis employing the TUNEL assay, and compared with cadaver control fragments. Chondrocyte death and apoptosis were significantly greater along the edge of the fracture and in the superficial zone of the osteochondral fragments. The middle and deep zones demonstrated significantly higher viability of the chondrocytes. These findings indicate the presence of both necrotic and apoptotic chondrocytes after joint injury and may provide further insight into the role of chondrocyte death in post-traumatic arthritis.
The gelatin-based haemostyptic compound Spongostan was tested as a three-dimensional (3D) chondrocyte matrix in an in vitro model for autologous chondrocyte transplantation using cells harvested from bovine knees. In a control experiment of monolayer cultures, the proliferation or de-differentiation of bovine chondrocytes was either not or only marginally influenced by the presence of Spongostan (0.3 mg/ml). In monolayers and 3-D Minusheet culture chambers, the cartilage-specific differentiation markers aggrecan and type-II collagen were ubiquitously present in a cell-associated fashion and in the pericellular matrix. The Minusheet cultures usually showed a markedly higher mRNA expression than monolayer cultures irrespective of whether Spongostan had been present or not during culture. Although the de-differentiation marker type-I collagen was also present, the ratio of type-I to type-II collagen or aggrecan to type-I collagen remained higher in Minusheet 3-D cultures than in monolayer cultures irrespective of whether Spongostan had been included in or excluded from the monolayer cultures. The concentration of GAG in Minusheet cultures reached its maximum after 14 days with a mean of 0.83 ± 0.8 μg/106 cells; mean ±, Our results suggest that Spongostan is in principle suitable as a 3-D chondrocyte matrix, as demonstrated in Minusheet chambers, in particular for a culture period of 14 days. Clinically, differentiating effects on chondrocytes, simple handling and optimal formability may render Spongostan an attractive 3-D scaffold for autologous chondrocyte transplantation.
Diastematomyelia is a rare congenital abnormality
of the spinal cord. This paper summarises more than 30 years’ experience
of treating this condition. Data were collected retrospectively
on 138 patients with diastematomyelia (34 males, 104 females) who
were treated at our hospital from May 1978 to April 2010. A total
of 106 patients had double dural
This prospective study describes the outcome of the first 1000 phase 3 Oxford medial unicompartmental knee replacements (UKRs) implanted using a minimally invasive surgical approach for the recommended indications by two surgeons and followed up independently. The mean follow-up was 5.6 years (1 to 11) with 547 knees having a minimum follow-up of five years. At five years their mean Oxford knee score was 41.3 ( The incidence of implant-related re-operations was 2.9%; of these 29 re-operations two were revisions requiring revision knee replacement components with stems and wedges, 17 were conversions to a primary total knee replacement, six were open reductions for dislocation of the bearing, three were secondary lateral UKRs and one was revision of a tibial component. The most common reason for further surgical intervention was progression of arthritis in the lateral compartment (0.9%), followed by dislocation of the bearing (0.6%) and revision for unexplained pain (0.6%). If all implant-related re-operations are considered failures, the ten-year survival rate was 96% (95% confidence interval, 92.5 to 99.5). If only revisions requiring revision components are considered failures the ten-year survival rate is 99.8% (confidence interval 99 to 100). This is the largest published series of UKRs implanted through a minimally invasive surgical approach and with ten-year survival data. The survival rates are similar to those obtained with a standard open approach whereas the function is better. This demonstrates the effectiveness and safety of a minimally invasive surgical approach for implanting the Oxford UKR.
The establishment of a suitable animal model of repair of the rotator cuff is difficult since the presence of a true rotator cuff anatomically appears to be restricted almost exclusively to advanced primates. Our observational study describes the healing process after repair of the cuff in a primate model. Lesions were prepared and repaired in eight ‘middle-aged’ baboons. Two each were killed at four, eight, 12 and 15 weeks post-operatively. The bone-tendon repair zones were assessed macroscopically and histologically. Healing of the baboon supraspinatus involved a sequence of stages resulting in the reestablishment of the bone-tendon junction. It was not uniform and occurred more rapidly at the sites of suture fixation than between them. Four weeks after repair the bone-tendon healing was immature. Whereas macroscopically the repair appeared to be healed at eight weeks, the Sharpey fibres holding the repair together did not appear in any considerable number before 12 weeks. By 15 weeks, the bone-tendon junction was almost, but not quite mature. Our results support the use of a post-operative rehabilitation programme in man which protects the surgical repair for at least 12 to 15 weeks in order to allow maturation of tendon-to-bone healing.
We retrospectively compared the outcome after
the treatment of giant cell tumours of bone either with curettage alone
or with adjuvant cementation. Between 1975 and 2008, 330 patients
with a giant cell tumour were treated primarily by intralesional
curettage, with 84 (25%) receiving adjuvant bone cement in the cavity.
The local recurrence rate for curettage alone was 29.7% (73 of 246)
compared with 14.3% (12 of 84) for curettage and cementation (p
= 0.001). On multivariate analysis both the stage of disease and
use of cement were independent significant factors associated with
local recurrence. The use of cement was associated with a higher
risk of the subsequent need for joint replacement. In patients without
local recurrence, 18.1% (13 of 72) of those with cement needed a
subsequent joint replacement compared to 2.3% (4 of 173) of those
without cement (p = 0.001). In patients who developed local recurrence,
75.0% (9 of 12) of those with previous cementation required a joint
replacement, compared with 45.2% (33 of 73) of those without cement
(p = 0.044).
A comprehensive study of osteology remains a cornerstone of current orthopaedic and traumatological education. Osteology was already established as an important part of surgical education by the 16th century. In order to teach anatomy and osteology, the corpses of executed criminals were dissected by the